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The Effects of Explorative and Exploitative Abilities on the Firm's Network Position, Network Competence and Resource-advantage: Intellectual Capital as a Moderator.
陳昱仁; Chen, Yu-Jen
來源 中文部分 方世榮、張文賢(2010)。網絡中心性、網絡能耐與競爭優勢。商略學報,2(4),217-230。 張瀞方、黃同圳(2009),第十五屆企業人力資源管理實務專題研究成果發表會議。桃園縣:國立中央大學人力資源管理研究所。 英文部分 Adler, P. S., Goldoftas, B., & Levine, D. I. (1999). Flexibility Versus Efficiency? A Case Study of Model Changeovers in the Toyota Production System. Organization Science, 10(1), 43-68. Adler, P. S., & Kwon, S.-W. (2002). Social Capital Prospects for a New Concept. Academy of Management Review, 27(1), 17-40. Afuah, A. (2000). How Much Do Your Co-opetitors'' Capabilities Matter in the Face of Technological Change? Strategic Management Journal, 21(3), 387-404. Allee, V. (2000). Reconfiguration the Value Network. The Jorunal of Business Strategy, 21(4), 36-39. Anand, B. N., & Khanna, T. (2000). Do Firms Learn to Create Value? The Case of Alliances. Strategic Management Journal, 21(3), 295-315. Andrews, K. R. (1971). The Concept of Corporate of Strategy. Homewood, IL: Dow Jone Irwin. Andriopoulos, C., & Lewis, M. W. (2009). Exploitation-Exploration Tensions and Organizational Ambidexterity: Managing Paradoxes of Innovation. Organization Science, 20(4), 696-717. Auh, S., & Menguc, B. (2005). Balancing Exploration and Exploitation: The Moderating Role of Competitive Intensity. Journal of Business Research, 58(12), 1652-1661. Bain, J. S. (1951). Relation of Profit Rate to Industry Concentration: American Manufacturing. Quarterly Journal of Economics, 65, 293-324. Barney, J. (1991). Firm Resources and Sustained Competitive Advantage. Journal of Management, 17(1), 99-120. Bavelas, A. (1948). A mathematical model for group structures. Human Organization, 7(3), 16-30. Becker, B. E., & Huselid, M. A. (2006). Strategic Human Resources Management: Where Do We Go From Here? Journal of Management, 32(6), 898-925. Beckman, C. M. (2006). The Influence of Founding Team Company Affiliations on Firm Behavior. Academy of Management Journal, 49(4), 741-758. Benner, M. J., & Tushman, M. L. (2002). Process Management and Technological Innovation: A Longitudinal Study of the Photography and Paint Industries. Administrative Science Quarterly, 47(4), 676-706. Benner, M. J., & Tushman, M. L. (2003). Exploitation, Exploration, and Process Management: The Productivity Dilemma Revisited. Academy of Management Review, 28(2), 238-256. Blankenburg, D., & Johanson, J. (1992). Managing Network Connections in International Business. Scandinavian International Business Review, 1(1), 5-19. Bontis, N. (1998). Intellectual Capital: An Exploratory Study That Develops Measures and Models. Management Decision, 36(2), 63-76. Bontis, N. (2001). Assessing Kowledge Asets: A Review of the Models Used to Measure Intellectual Capital. International Journal of Management Reviews, 3(1), 41-60. Bradach, J. (1997). Using the Plural Form in The Management of Restaurant Chains. Administrative Science Quarterly, 42, 276-303. Brass, D. J., & Burkhardt, M. E. (1993). Potential Power and Power Use: An Investigation of Structure and Behavior. Academy of Management Journal, 36(3), 441-470. Burgelman, R. A. (1991). Intraorganizational Ecology of Strategy Making and Organizational Adaptation: Theory and Field Research. Organization Science, 2(3), 239-262. Burgelman, R. A. (2002). Strategy as Vector and the Inertia of Coevolutionary Lock-in. Administrative Science Quarterly, 47, 325-357. Burt, R. S. (1992). Structural Holes: The Social Structure of Conpetition. Cambrige, MA: Harvard University Press. Burt, R. S. (2004). Structural Holes and Good Ideas. American Journal of Sociology, 110(2), 349-399. Cao, Q., Gedajlovic, E., & Zhang, H. (2009). Unpacking Organizational Ambidexterity: Dimensions, Contingencies, and Synergistic Effects. Organization Science, 20(4), 781-796. doi: 10.1287/orsc.1090.0426 Capaldo, A. (2007). Network structure and innovation: The leveraging of a dual network as a distinctive relational capability. Strategic Management Journal, 28(6), 585-608. doi: 10.1002/smj.621 Chandler, A. D., Jr. (1962). Strategy and Structure: Chapters in the History of the American Industrial Enterprise. Cambridge: MA: MIT Press. Christensen, C. M. (2008). Disrupting Class: How Disruptive Innovation Will Change the Way the World Learns. New York: McGraw-Hill. Collins, C. J., & Smith, K. G. (2006). Knowledge Exchange and Combination:The Role of Human Resource Practices in the Performance of High-technology Firms. Academy of Management Journal, 49(3), 544-560. Combs, J. G., & Ketchen, D. J. (1999). Explaining interfirm cooperation and performance toward a reconciliation of predictions from the resource-based view and organizational economics. Strategic Management Journal, 20(9), 867-888. Daft, R. (1983). Organization Theory and Design. New York: West. Danneels, E. (2002). The Dynamics of Product Innovation and Firm Competences. Strategic Management Journal, 23(12), 1095-1121. Dyer, J. H., & Singh, H. (1998). The Relational View: Cooperative Strategy and Sources of Interorganizational Competitive Advantage. Academy of Management Review, 23(4), 660-679. Ebben, J. J., & Johnson, A. C. (2005). Efficiency, Flexibility, or Both? Evidence Linking Strategy to Performance in Small Firms. Strategic Management Journal, 26(13), 1249-1259. Edvinsson, L., & Sullivan, P. (1996). Developing a Model for Managing Intellectual Capital. European Management Journal, 14(4), 356-364. Eisenhardt, K., & Martin, J. (2000). Dynamic Capabilities: What Are They? Strategic Management Journal, 21(10-11), 1105-1121. Foss, N. J. (1999). Networks, Capabilities, and Competitive Advantage. Scandinavian Journal of Management, 15(1), 1-15. Freeman , L. C. (1979). Centrality in Social Networks: Conceptual Clarification. Social Networks, 1(3), 215-239. Gibson, C. B., & Birkinshaw, J. (2004). The Antecedents, Consequences, and Mediating Role of Organizational Ambidexterity. Academy of Management Journal, 47(2), 209-266. Gnyawali, D. R., & Madhavan, R. (2001). Cooperative Networks and Competitive Dynamics: Structural Embeddedness Perspective. Academy of Management Review, 26(3), 431-445. Granovetter, M. S. (1973). The Strength of Weak Ties. American Journal of Sociology, 78(6), 1360-1380. Granovetter, M. S. (1985). Economic Action and Social Structure: The Problem of Embeddedness. American Journal of Sociology, 91(3), 481-510. Gulati, R. (1998). Alliances and Networks. Strategic Management Journal, 19(4), 293-317. Gulati, R. (1999). Network Location and Learning: The Influence of Network Resources and Firm Capabilities on Alliance Formation. Strategic Management Journal, 20(5), 397-420. Gulati, R., Nohria, N., & Zaheer, A. (2000). Strategy Networks. Strategic Management Journal, 21(3), 203-215. Gupta, A. K., Smith, K., G., & Shalley, C. E. (2006). The Interplay between Exploration and Exploitation. Academy of Management Journal, 49(4), 693-706. Hakansson, H. (1987). Industrial Technological Development: A Network Approach. London: Croom Helm. Hakansson, H. (1989). Corporate Technological Development: Cooperation and Networks. London: Routledge. Hall, D. J., & Saias, M. A. (1980). Strategy Follow Structure! Strategic Management Journal, 1(2), 149-163. Hamel, G., & Prahalad, C. K. (1993). Strategy as Stretch and Leverage. Harvard Business Review, 71(2), 75-84. Hansen, M. T. (1999). The Search-Transfer Problem: The Role of Weak Ties in Sharing Knowledge across Organization Subunits. Administrative Science Quarterly, 44(1), 82-111. He, Z. L., & Wong, P. K. (2004). Exploration vs. Exploitation: An Empirical Test of the Ambidexterity Hypothesis. Organization Science, 15(4), 481-494. Helfat, C. E., & Peteraf, M. A. (2003). The Dynamic Resource-based View: Capability Lifecycles. Strategic Management Journal, 24(10), 997-1010. Hunt, S. D. (1997). Resource-advantage Theory: An Evolutionary Theory of Competitive Firm Behavior? Journal of Economic Issues, 31(1), 59-77. Hunt, S. D., & Morgan, R. M. (1995). The Comparative Advantage Theory of Competition. Journal of Marketing, 59(2), 1-15. Ibarra, H. (1993). Network Centrality, Power, and Innovation Involvement: Determinants of Technical and Administrative Roles. Academy of Management Journal, 36(3), 471-501. Jansen, J. J. P., Van Den Bosch, F. A. J., & Volberda, H. W. (2005). Exploration Innovation, Exploitation Innovation, and Ambidexterity: The Impact of Environmental and Organizational Antecedents. Schmalenbach Business Review, 57, 351-363. Jansen, J. J. P., Van Den Bosch, F. A. J., & Volberda, H. W. (2006). Exploratory Innovation, Exploitative Innovation, and Performance: Effects of Organizational Antecedents and Environmental Moderators. Marketing Science, 52(11), 1661-1674. Kale, P., Dyer, J. H., & Singh, H. (2002). Alliance Capability, Stock Market Response, and Long-term Alliance Success: The Role of the Alliance Function. Strategic Management Journal, 23(8), 747-767. Kale, P., Singh, H., & Perlmutter, H. (2000). Learning and Protection of Proprietary Assets in Strategic Alliances:Building Relational Capital. Strategic Management Journal, 21(3), 217-237. Kaleka, A. (2002). Resources and Capabilities Driving Competitive Advantage in Export Markets: Guidelines for Industrial Exporters. Industrial Marketing Management, 31(3), 273-283. Kenis, P., & Knoke, D. (2002). How Organizational Field Networks Shape Interorganizational Tie-Formation Rates. Academy of Management Review, 27(2), 275-293. Kyriakopoulos, K., & Moorman, C. (2004). Tradeoffs in marketing exploitation and exploration strategies: The overlooked role of market orientation. International Journal of Research in Marketing, 21(3), 219-240. Laere, K. V., & Heene, A. (2003). Social Networks as a Source of Competitive Advantage for the Firm. Journal of Workplace Learning, 15(6), 248-258. Lavie, D. (2006). 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類型 Thesis and Dissertation
來源 中文部分 方世榮、張文賢(2010)。網絡中心性、網絡能耐與競爭優勢。商略學報,2(4),217-230。 張瀞方、黃同圳(2009),第十五屆企業人力資源管理實務專題研究成果發表會議。桃園縣:國立中央大學人力資源管理研究所。 英文部分 Adler, P. S., Goldoftas, B., & Levine, D. I. (1999). Flexibility Versus Efficiency? A Case Study of Model Changeovers in the Toyota Production System. Organization Science, 10(1), 43-68. Adler, P. S., & Kwon, S.-W. (2002). Social Capital Prospects for a New Concept. Academy of Management Review, 27(1), 17-40. Afuah, A. (2000). How Much Do Your Co-opetitors'' Capabilities Matter in the Face of Technological Change? Strategic Management Journal, 21(3), 387-404. Allee, V. (2000). Reconfiguration the Value Network. The Jorunal of Business Strategy, 21(4), 36-39. Anand, B. N., & Khanna, T. (2000). Do Firms Learn to Create Value? The Case of Alliances. Strategic Management Journal, 21(3), 295-315. Andrews, K. R. (1971). The Concept of Corporate of Strategy. Homewood, IL: Dow Jone Irwin. Andriopoulos, C., & Lewis, M. W. (2009). Exploitation-Exploration Tensions and Organizational Ambidexterity: Managing Paradoxes of Innovation. Organization Science, 20(4), 696-717. Auh, S., & Menguc, B. (2005). Balancing Exploration and Exploitation: The Moderating Role of Competitive Intensity. Journal of Business Research, 58(12), 1652-1661. Bain, J. S. (1951). Relation of Profit Rate to Industry Concentration: American Manufacturing. Quarterly Journal of Economics, 65, 293-324. Barney, J. (1991). Firm Resources and Sustained Competitive Advantage. Journal of Management, 17(1), 99-120. Bavelas, A. (1948). A mathematical model for group structures. Human Organization, 7(3), 16-30. Becker, B. E., & Huselid, M. A. (2006). Strategic Human Resources Management: Where Do We Go From Here? Journal of Management, 32(6), 898-925. Beckman, C. M. (2006). The Influence of Founding Team Company Affiliations on Firm Behavior. Academy of Management Journal, 49(4), 741-758. Benner, M. J., & Tushman, M. L. (2002). Process Management and Technological Innovation: A Longitudinal Study of the Photography and Paint Industries. Administrative Science Quarterly, 47(4), 676-706. Benner, M. J., & Tushman, M. L. (2003). Exploitation, Exploration, and Process Management: The Productivity Dilemma Revisited. Academy of Management Review, 28(2), 238-256. Blankenburg, D., & Johanson, J. (1992). Managing Network Connections in International Business. Scandinavian International Business Review, 1(1), 5-19. Bontis, N. (1998). Intellectual Capital: An Exploratory Study That Develops Measures and Models. Management Decision, 36(2), 63-76. Bontis, N. (2001). Assessing Kowledge Asets: A Review of the Models Used to Measure Intellectual Capital. International Journal of Management Reviews, 3(1), 41-60. Bradach, J. (1997). Using the Plural Form in The Management of Restaurant Chains. Administrative Science Quarterly, 42, 276-303. Brass, D. J., & Burkhardt, M. E. (1993). Potential Power and Power Use: An Investigation of Structure and Behavior. Academy of Management Journal, 36(3), 441-470. Burgelman, R. A. (1991). Intraorganizational Ecology of Strategy Making and Organizational Adaptation: Theory and Field Research. Organization Science, 2(3), 239-262. Burgelman, R. A. (2002). Strategy as Vector and the Inertia of Coevolutionary Lock-in. Administrative Science Quarterly, 47, 325-357. Burt, R. S. (1992). Structural Holes: The Social Structure of Conpetition. Cambrige, MA: Harvard University Press. Burt, R. S. (2004). Structural Holes and Good Ideas. American Journal of Sociology, 110(2), 349-399. Cao, Q., Gedajlovic, E., & Zhang, H. (2009). Unpacking Organizational Ambidexterity: Dimensions, Contingencies, and Synergistic Effects. Organization Science, 20(4), 781-796. doi: 10.1287/orsc.1090.0426 Capaldo, A. (2007). Network structure and innovation: The leveraging of a dual network as a distinctive relational capability. Strategic Management Journal, 28(6), 585-608. doi: 10.1002/smj.621 Chandler, A. D., Jr. (1962). Strategy and Structure: Chapters in the History of the American Industrial Enterprise. Cambridge: MA: MIT Press. Christensen, C. M. (2008). Disrupting Class: How Disruptive Innovation Will Change the Way the World Learns. New York: McGraw-Hill. Collins, C. J., & Smith, K. G. (2006). Knowledge Exchange and Combination:The Role of Human Resource Practices in the Performance of High-technology Firms. Academy of Management Journal, 49(3), 544-560. Combs, J. G., & Ketchen, D. J. (1999). Explaining interfirm cooperation and performance toward a reconciliation of predictions from the resource-based view and organizational economics. Strategic Management Journal, 20(9), 867-888. Daft, R. (1983). Organization Theory and Design. New York: West. Danneels, E. (2002). The Dynamics of Product Innovation and Firm Competences. Strategic Management Journal, 23(12), 1095-1121. Dyer, J. H., & Singh, H. (1998). The Relational View: Cooperative Strategy and Sources of Interorganizational Competitive Advantage. Academy of Management Review, 23(4), 660-679. Ebben, J. J., & Johnson, A. C. (2005). Efficiency, Flexibility, or Both? Evidence Linking Strategy to Performance in Small Firms. Strategic Management Journal, 26(13), 1249-1259. Edvinsson, L., & Sullivan, P. (1996). Developing a Model for Managing Intellectual Capital. European Management Journal, 14(4), 356-364. Eisenhardt, K., & Martin, J. (2000). Dynamic Capabilities: What Are They? Strategic Management Journal, 21(10-11), 1105-1121. Foss, N. J. (1999). Networks, Capabilities, and Competitive Advantage. Scandinavian Journal of Management, 15(1), 1-15. Freeman , L. C. (1979). Centrality in Social Networks: Conceptual Clarification. Social Networks, 1(3), 215-239. Gibson, C. B., & Birkinshaw, J. (2004). The Antecedents, Consequences, and Mediating Role of Organizational Ambidexterity. Academy of Management Journal, 47(2), 209-266. Gnyawali, D. R., & Madhavan, R. (2001). Cooperative Networks and Competitive Dynamics: Structural Embeddedness Perspective. Academy of Management Review, 26(3), 431-445. Granovetter, M. S. (1973). The Strength of Weak Ties. American Journal of Sociology, 78(6), 1360-1380. Granovetter, M. S. (1985). Economic Action and Social Structure: The Problem of Embeddedness. American Journal of Sociology, 91(3), 481-510. Gulati, R. (1998). Alliances and Networks. Strategic Management Journal, 19(4), 293-317. Gulati, R. (1999). Network Location and Learning: The Influence of Network Resources and Firm Capabilities on Alliance Formation. Strategic Management Journal, 20(5), 397-420. Gulati, R., Nohria, N., & Zaheer, A. (2000). Strategy Networks. Strategic Management Journal, 21(3), 203-215. Gupta, A. K., Smith, K., G., & Shalley, C. E. (2006). The Interplay between Exploration and Exploitation. Academy of Management Journal, 49(4), 693-706. Hakansson, H. (1987). Industrial Technological Development: A Network Approach. London: Croom Helm. Hakansson, H. (1989). Corporate Technological Development: Cooperation and Networks. London: Routledge. Hall, D. J., & Saias, M. A. (1980). Strategy Follow Structure! Strategic Management Journal, 1(2), 149-163. Hamel, G., & Prahalad, C. K. (1993). Strategy as Stretch and Leverage. Harvard Business Review, 71(2), 75-84. Hansen, M. T. (1999). The Search-Transfer Problem: The Role of Weak Ties in Sharing Knowledge across Organization Subunits. Administrative Science Quarterly, 44(1), 82-111. He, Z. L., & Wong, P. K. (2004). Exploration vs. Exploitation: An Empirical Test of the Ambidexterity Hypothesis. Organization Science, 15(4), 481-494. Helfat, C. E., & Peteraf, M. A. (2003). The Dynamic Resource-based View: Capability Lifecycles. Strategic Management Journal, 24(10), 997-1010. Hunt, S. D. (1997). Resource-advantage Theory: An Evolutionary Theory of Competitive Firm Behavior? Journal of Economic Issues, 31(1), 59-77. Hunt, S. D., & Morgan, R. M. (1995). The Comparative Advantage Theory of Competition. Journal of Marketing, 59(2), 1-15. Ibarra, H. (1993). Network Centrality, Power, and Innovation Involvement: Determinants of Technical and Administrative Roles. Academy of Management Journal, 36(3), 471-501. Jansen, J. J. P., Van Den Bosch, F. A. J., & Volberda, H. W. (2005). Exploration Innovation, Exploitation Innovation, and Ambidexterity: The Impact of Environmental and Organizational Antecedents. Schmalenbach Business Review, 57, 351-363. Jansen, J. J. P., Van Den Bosch, F. A. J., & Volberda, H. W. (2006). Exploratory Innovation, Exploitative Innovation, and Performance: Effects of Organizational Antecedents and Environmental Moderators. Marketing Science, 52(11), 1661-1674. Kale, P., Dyer, J. H., & Singh, H. (2002). Alliance Capability, Stock Market Response, and Long-term Alliance Success: The Role of the Alliance Function. Strategic Management Journal, 23(8), 747-767. Kale, P., Singh, H., & Perlmutter, H. (2000). Learning and Protection of Proprietary Assets in Strategic Alliances:Building Relational Capital. Strategic Management Journal, 21(3), 217-237. Kaleka, A. (2002). Resources and Capabilities Driving Competitive Advantage in Export Markets: Guidelines for Industrial Exporters. Industrial Marketing Management, 31(3), 273-283. Kenis, P., & Knoke, D. (2002). How Organizational Field Networks Shape Interorganizational Tie-Formation Rates. Academy of Management Review, 27(2), 275-293. Kyriakopoulos, K., & Moorman, C. (2004). Tradeoffs in marketing exploitation and exploration strategies: The overlooked role of market orientation. International Journal of Research in Marketing, 21(3), 219-240. Laere, K. V., & Heene, A. (2003). Social Networks as a Source of Competitive Advantage for the Firm. Journal of Workplace Learning, 15(6), 248-258. Lavie, D. (2006). The Conpetitive Advantage of Interconnected Firms: An Extension of the Resource-based View. Academy of Management Review, 31(3), 638-658. Leana, C. R., & Van Buren, H. J. I. (1999). Organizational Social Capital and Employment Practices. Academy of Management Review, 24(3), 538-555. Levinthal, D. A., & March, J. G. (1993). The Myopia of Learning. Strategic Management Journal, 14(S2), 95-112. Levitt, B., & March, J. G. (1988). Organization Learning. Annual Review of Sociology, 14, 319-340. Lorenzoni, G., & Lapparini, A. (1999). The Leveraging of Interfirm Relationships as a Distinctive Organizational Capability: A Longitudinal Study. Strategic Management Journal, 20(4), 317-338. Lubatkin, M. H., Ling, Y., & Veiga, J. F. (2006). Ambidexterity and Performance in Small-to Medium-Sized Firms: The Pivotal Role of Top Management Team Behavioral Integration. Journal of Management, 32(5), 646-672. March, J. G. (1991). Exploration and Exploitation in Organizational Learning. 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類型 Thesis and Dissertation
0
影響大豆農桿菌媒介基因轉殖因子之探討
蘇柏昀; Su, Po-Yun
來源 黃巧宜。2008。利用農桿菌媒介轉殖法改造大豆種子組成份。國立中興大學農藝系碩士學位論文。 Attikum H.V., Bundock P., Hooykaas P.J.J. (2001) Non-homologous end-joining proteins are required for Agrobacterium T-DNA integration. EMBO J. 20:6550-6558. Beilinson V., Chen Z., Shoemaker R.C., Fischer R.L., Goldberg R.B., Nielsen N.C. (2002) Genomic organization of glycinin genes in soybean. Theor. Appl. Genet. 104:1132-1140. Bradford M.M. (1976) A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem. 72:248-254. Byrne M.C., Mcdonnell R.E., Wright M.S., Carnes M.G. (1987) Strain and cultivar specificity in the Agrobacterium-soybean interaction. Plant Cell Tissue and Organ Cult. 8:3-15. Cheng T.-Y., Saka H., Voqui-Dinha T.H. (1980) Plant regeneration from soybean cotyledonary node segments in culture. Plant Sci. Lett. 19:91-99. Christianson M.L., Wamick D.A., Carlson P.S. (1983) A morphogenetically competent soybean suspension culture. Science 222:632-634. Citovsky V., Kozlovsky S.V., Lacroix B., Zaltsman A., Yelin M.D., Vyas S., Tovkach A., Tzfira T. (2007) Biological systems of the host cell involved in Agrobacterium infection. Cell. Microbiol. 9:9-20. Clemente T.E., LaVallee B.J., Howe A.R., Ward D.C., Rozman R.J., Hunter P.E., Broyles D.L., Kasten D.S., Hinchee M.A. (2000) Progeny analysis of glyphosate selected transgenic soybeans derived from Agrobacterium-mediated transformation. Crop Sci. 40:797-803. Coates J.B., Medeiros J.S., Thanh V.H., Nielsen N.C. (1985) Characterization of the subunits of beta-conglycinin. Arch. Biochem. Biophys. 1:184-194. D''Halluin K., Bossut M., Bonne E., Mazur B., Leemans J., Botterman J. (1992) Transformation of sugarbeet (Beta vulgaris L.) and evaluation of herbicide resistance in transgenic plants. Nat. Biotechnol. 10:309-314 Dang W., Wei Z.M. (2007) Efficient Agrobacterium-mediated transformation of soybean. Fen Zi Xi Bao Sheng Wu Xue Bao 40:185-195. Dickinson S.D., Hussein E.H.A., Nielsen N.C. (1989) Role of posttranslational cleavage in glycinin assembly. Plant Cell 1:459-469. El-Shemy H.A., Khalafalla M.M., Fujita K., Ishimoto M. (2007) Improvement of protein quality in transgenic soybean plants. Biol. Plant 51:277-284. Finer J.J., Nagasawa A. (1988) Development of an embryogenic suspension culture of soybean (Glycine max Merrill.). Plant Cell Tissue Organ Cult. 15:125-136. Friesner J., Britt A.B. (2003) Ku80 and DNA ligase IV deficient plants are sensitive to ionizing radiation and defective in T-DNA integratio. Plant J. 34:427-440. Fullner K.J., Nester E.W. (1996) Temperature affects the T-DNA transfer machinery of Agrobacterium tumefaciens. J. Bacteriol. 206:1498-1504. Hinchee M.A.W., Connor-Ward D.V., Newell C.A., McDonnell R.E., Sato S.J., Gasser C.S., Fischhoff D.A., Re D.B., Fraley R.T., Horsch R.B. (1988) Production of transgenic soybean plants using Agrobacterium-mediated DNA transfer. Bio. Technology 6:915-922. Hwang H.H., Gelvin S.B. (2004) Plant proteins that interact with VirB2, the agrobacterium tumefaciens pilin protein, mediate plant transformation. Plant Cell 16:3148-3167. Jefferson R.A. (1987) Assaying chimeric genes in plants: The GUS gene fusion system. Plant Mol Biol Rep 5:387-405. Kagawa K., Matsutaka H., Fukuhama C., Watanabe Y., Fujino H. (1996) Globin digest acidic protease hydrolysate inhibits dietary hypertriglyceridemia and val-val-tyr-pro, one of its constituents possesses most superioreffect. Life Sciences 58:1745-1755. Kim W.S., Krishnan H.B. (2004) Expression of an 11 kDa methionine-rich delta-zein in transgenic soybean results in the formation of two types of novel protein bodies in transitional cells situated between the vascular tissue and storage parenchyma cells. Plant Biotechnol. J. 2:199-210. Kita Y., Hanafy M.S., Deguchi M., Hasegawa H., Terakawa T., Kitamura K., Ishimoto M. (2009) Generation and characterization of herbicide-resistant soybean plants expressing novel phosphinothricin N acetyltransferase genes. Breed. Sci. 59:245-251. Laemmli U.K. (1970) Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227:680-685. Lau O.S., Sun S.S.M. (2009) Plant seeds as bioreactors for recombinant protein production. Biotechnol. Adv. 27:1015-1022. Liu H.K., Yang C., Wei Z.M. (2004) Transgenic soybean obtained with Agrobacterium tumefaciens-mediated transformation of embryonic tip of soybean mature seeds. Planta 219:1042-1049. Liu S.J., Huang J.Q., Wei Z.M. (2007) Factors influencing Agrobacterium-mediated cotyledonary-node transformation of soybean (Glycine max L.). Fen Zi Xi Bao Sheng Wu Xue Bao 40:286-294. Loyter A., Rosenbluh J., Zakai N., Li J., Kozlovsky S.V., Tzfira T., Citovsky V. (2005) The Plant VirE2 interacting protein. A molecular link between the Agrobacterium T-Complex and the host cell chromatin? Plant Physiol 138:1318-1321. Moller N.P., Elisabeth K., Ahrens S., Roos N., Schrezenmeir J.r. (2008) Bioactive peptides and proteins from foods: indication for health effects. Eur J Nutr 47:171-182. McCabe D.E., Swain W.F., Martinell B.J., Christou P. (1988) Stable transformation of soybean (Glycine Max) by particle acceleration. Bio. Technology 6:923-926. Meurer C.A., Dinkins R.D., Collins G.B. (1998) Factors affecting soybean cotyledonary node transformation. Plant Cell Rep 18:180-186. Mysore K.S., Nam J., Gelvin S.B. (2000) An arabidopsis histone H2A mutant is deficient in Agrobacterium T-DNA integration. PNAS 97:948-953. Nielsen N.C., Dickinson C.D., Cho T.J., Thanh V.H., Scallon B.J., Fischer R.L., Sims T.L., Drews G.N., Goldberg R.B. (1989) Characterization of the glycinin gene family in soybean. Plant Cell 1:313-328. Olhoft P.M., Somers D.A. (2001) L-Cysteine increases Agrobacterium-mediated T-DNA delivery into soybean cotyledonary-node cells. Plant Cell Rep 20:706-711. Olhoft P.M., Lin K., Galbraith J., Nielsen N.C., Somers D.A. (2001) The role of thiol compounds in increasing Agrobacterium-mediated transformation of soybean cotyledonary-node cells. Plant Cell 20:731-737. Paz M.M., Martinez J.C., Kalvig A.B., Fonger T.M., Wang K. (2006) Improved cotyledonary node method using an alternative explant derived from mature seed for efficient Agrobacterium-mediated soybean transformation. Plant Cell Rep 25:206-213. Paz M.M., Shou H., Guo Z., Zhang Z., Banerjee A.K., Wang K. (2004) Assessment of conditions affecting Agrobacterium-mediated soybean transformation using the cotyledonary node explant. Euphytica 136:167-179. Prak K., Maruyama Y., Maruyama N., Utsumi S. (2006) Design of genetically modified soybean proglycinin A1aB1b with multiple copies of bioactive peptide sequences. Peptides 27:1179-1186. Shimoda N., Toyoda-Yamamoto A., Aoki S., Machida Y. (1993) Genetic evidence for an Interaction between the VirA sensor protein and the ChvE sugar-binding protein of Agrobacteriurn. J. Biol. Chem. 268:26552-26558. Trick H.N., Finer J.J. (1997) SAAT: sonication-assisted Agrobacterium-mediated transformation. Transgenic Res. 6:329-336. Tzfira T., Citovsky V. (2006) Agrobacterium-mediated genetic transformation of plants:biology and biotechnology. Curr. Opin. Biotechnol. 17:147-154. Wiebke-Strohm B., Droste A., Pasquali G., Osorio M.B., Bu‥cker-Neto L., Passaglia L.M.P., Bencke M., Homrich M.S., Margis-Pinheiro M.r., Bodanese-Zanettini M.H. (2011) Transgenic fertile soybean plants derived from somatic embryos transformed via the combined DNA-free particle bombardment and Agrobacterium system. Euphytica 177:343-354. Wolf W.J., Briggs D.R. (1956) Ultracentrifugal investigation of the effect of neutral salts on the extraction of soybean proteins. Arch. Biochem. Biophys. 63:40-49. Xue R.G., Xie H.F., Zhang B. (2006) A multi-needle-assisted transformation of soybean cotyledonary node cells. Biotechnol. Lett. 28:1551-1557. Zhang Z., Xing A., Staswick P., Clemente T.E. (1999) The use of glufosinate as a selective agent in Agrobacterium-mediated transformation of soybean. Plant Cell Tissue and Organ Cult. 56:37-46.
類型 Thesis and Dissertation
來源 黃巧宜。2008。利用農桿菌媒介轉殖法改造大豆種子組成份。國立中興大學農藝系碩士學位論文。 Attikum H.V., Bundock P., Hooykaas P.J.J. (2001) Non-homologous end-joining proteins are required for Agrobacterium T-DNA integration. EMBO J. 20:6550-6558. Beilinson V., Chen Z., Shoemaker R.C., Fischer R.L., Goldberg R.B., Nielsen N.C. (2002) Genomic organization of glycinin genes in soybean. Theor. Appl. Genet. 104:1132-1140. Bradford M.M. (1976) A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem. 72:248-254. Byrne M.C., Mcdonnell R.E., Wright M.S., Carnes M.G. (1987) Strain and cultivar specificity in the Agrobacterium-soybean interaction. Plant Cell Tissue and Organ Cult. 8:3-15. Cheng T.-Y., Saka H., Voqui-Dinha T.H. (1980) Plant regeneration from soybean cotyledonary node segments in culture. Plant Sci. Lett. 19:91-99. Christianson M.L., Wamick D.A., Carlson P.S. (1983) A morphogenetically competent soybean suspension culture. Science 222:632-634. Citovsky V., Kozlovsky S.V., Lacroix B., Zaltsman A., Yelin M.D., Vyas S., Tovkach A., Tzfira T. (2007) Biological systems of the host cell involved in Agrobacterium infection. Cell. Microbiol. 9:9-20. Clemente T.E., LaVallee B.J., Howe A.R., Ward D.C., Rozman R.J., Hunter P.E., Broyles D.L., Kasten D.S., Hinchee M.A. (2000) Progeny analysis of glyphosate selected transgenic soybeans derived from Agrobacterium-mediated transformation. Crop Sci. 40:797-803. Coates J.B., Medeiros J.S., Thanh V.H., Nielsen N.C. (1985) Characterization of the subunits of beta-conglycinin. Arch. Biochem. Biophys. 1:184-194. D''Halluin K., Bossut M., Bonne E., Mazur B., Leemans J., Botterman J. (1992) Transformation of sugarbeet (Beta vulgaris L.) and evaluation of herbicide resistance in transgenic plants. Nat. Biotechnol. 10:309-314 Dang W., Wei Z.M. (2007) Efficient Agrobacterium-mediated transformation of soybean. Fen Zi Xi Bao Sheng Wu Xue Bao 40:185-195. Dickinson S.D., Hussein E.H.A., Nielsen N.C. (1989) Role of posttranslational cleavage in glycinin assembly. Plant Cell 1:459-469. El-Shemy H.A., Khalafalla M.M., Fujita K., Ishimoto M. (2007) Improvement of protein quality in transgenic soybean plants. Biol. Plant 51:277-284. Finer J.J., Nagasawa A. (1988) Development of an embryogenic suspension culture of soybean (Glycine max Merrill.). Plant Cell Tissue Organ Cult. 15:125-136. Friesner J., Britt A.B. (2003) Ku80 and DNA ligase IV deficient plants are sensitive to ionizing radiation and defective in T-DNA integratio. Plant J. 34:427-440. Fullner K.J., Nester E.W. (1996) Temperature affects the T-DNA transfer machinery of Agrobacterium tumefaciens. J. Bacteriol. 206:1498-1504. Hinchee M.A.W., Connor-Ward D.V., Newell C.A., McDonnell R.E., Sato S.J., Gasser C.S., Fischhoff D.A., Re D.B., Fraley R.T., Horsch R.B. (1988) Production of transgenic soybean plants using Agrobacterium-mediated DNA transfer. Bio. Technology 6:915-922. Hwang H.H., Gelvin S.B. (2004) Plant proteins that interact with VirB2, the agrobacterium tumefaciens pilin protein, mediate plant transformation. Plant Cell 16:3148-3167. Jefferson R.A. (1987) Assaying chimeric genes in plants: The GUS gene fusion system. Plant Mol Biol Rep 5:387-405. Kagawa K., Matsutaka H., Fukuhama C., Watanabe Y., Fujino H. (1996) Globin digest acidic protease hydrolysate inhibits dietary hypertriglyceridemia and val-val-tyr-pro, one of its constituents possesses most superioreffect. Life Sciences 58:1745-1755. Kim W.S., Krishnan H.B. (2004) Expression of an 11 kDa methionine-rich delta-zein in transgenic soybean results in the formation of two types of novel protein bodies in transitional cells situated between the vascular tissue and storage parenchyma cells. Plant Biotechnol. J. 2:199-210. Kita Y., Hanafy M.S., Deguchi M., Hasegawa H., Terakawa T., Kitamura K., Ishimoto M. (2009) Generation and characterization of herbicide-resistant soybean plants expressing novel phosphinothricin N acetyltransferase genes. Breed. Sci. 59:245-251. Laemmli U.K. (1970) Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227:680-685. Lau O.S., Sun S.S.M. (2009) Plant seeds as bioreactors for recombinant protein production. Biotechnol. Adv. 27:1015-1022. Liu H.K., Yang C., Wei Z.M. (2004) Transgenic soybean obtained with Agrobacterium tumefaciens-mediated transformation of embryonic tip of soybean mature seeds. Planta 219:1042-1049. Liu S.J., Huang J.Q., Wei Z.M. (2007) Factors influencing Agrobacterium-mediated cotyledonary-node transformation of soybean (Glycine max L.). Fen Zi Xi Bao Sheng Wu Xue Bao 40:286-294. Loyter A., Rosenbluh J., Zakai N., Li J., Kozlovsky S.V., Tzfira T., Citovsky V. (2005) The Plant VirE2 interacting protein. A molecular link between the Agrobacterium T-Complex and the host cell chromatin? Plant Physiol 138:1318-1321. Moller N.P., Elisabeth K., Ahrens S., Roos N., Schrezenmeir J.r. (2008) Bioactive peptides and proteins from foods: indication for health effects. Eur J Nutr 47:171-182. McCabe D.E., Swain W.F., Martinell B.J., Christou P. (1988) Stable transformation of soybean (Glycine Max) by particle acceleration. Bio. Technology 6:923-926. Meurer C.A., Dinkins R.D., Collins G.B. (1998) Factors affecting soybean cotyledonary node transformation. Plant Cell Rep 18:180-186. Mysore K.S., Nam J., Gelvin S.B. (2000) An arabidopsis histone H2A mutant is deficient in Agrobacterium T-DNA integration. PNAS 97:948-953. Nielsen N.C., Dickinson C.D., Cho T.J., Thanh V.H., Scallon B.J., Fischer R.L., Sims T.L., Drews G.N., Goldberg R.B. (1989) Characterization of the glycinin gene family in soybean. Plant Cell 1:313-328. Olhoft P.M., Somers D.A. (2001) L-Cysteine increases Agrobacterium-mediated T-DNA delivery into soybean cotyledonary-node cells. Plant Cell Rep 20:706-711. Olhoft P.M., Lin K., Galbraith J., Nielsen N.C., Somers D.A. (2001) The role of thiol compounds in increasing Agrobacterium-mediated transformation of soybean cotyledonary-node cells. Plant Cell 20:731-737. Paz M.M., Martinez J.C., Kalvig A.B., Fonger T.M., Wang K. (2006) Improved cotyledonary node method using an alternative explant derived from mature seed for efficient Agrobacterium-mediated soybean transformation. Plant Cell Rep 25:206-213. Paz M.M., Shou H., Guo Z., Zhang Z., Banerjee A.K., Wang K. (2004) Assessment of conditions affecting Agrobacterium-mediated soybean transformation using the cotyledonary node explant. Euphytica 136:167-179. Prak K., Maruyama Y., Maruyama N., Utsumi S. (2006) Design of genetically modified soybean proglycinin A1aB1b with multiple copies of bioactive peptide sequences. Peptides 27:1179-1186. Shimoda N., Toyoda-Yamamoto A., Aoki S., Machida Y. (1993) Genetic evidence for an Interaction between the VirA sensor protein and the ChvE sugar-binding protein of Agrobacteriurn. J. Biol. Chem. 268:26552-26558. Trick H.N., Finer J.J. (1997) SAAT: sonication-assisted Agrobacterium-mediated transformation. Transgenic Res. 6:329-336. Tzfira T., Citovsky V. (2006) Agrobacterium-mediated genetic transformation of plants:biology and biotechnology. Curr. Opin. Biotechnol. 17:147-154. Wiebke-Strohm B., Droste A., Pasquali G., Osorio M.B., Bu‥cker-Neto L., Passaglia L.M.P., Bencke M., Homrich M.S., Margis-Pinheiro M.r., Bodanese-Zanettini M.H. (2011) Transgenic fertile soybean plants derived from somatic embryos transformed via the combined DNA-free particle bombardment and Agrobacterium system. Euphytica 177:343-354. Wolf W.J., Briggs D.R. (1956) Ultracentrifugal investigation of the effect of neutral salts on the extraction of soybean proteins. Arch. Biochem. Biophys. 63:40-49. Xue R.G., Xie H.F., Zhang B. (2006) A multi-needle-assisted transformation of soybean cotyledonary node cells. Biotechnol. Lett. 28:1551-1557. Zhang Z., Xing A., Staswick P., Clemente T.E. (1999) The use of glufosinate as a selective agent in Agrobacterium-mediated transformation of soybean. Plant Cell Tissue and Organ Cult. 56:37-46.
類型 Thesis and Dissertation
0
Phosphinothricin 誘導紫錐菊葉片培植體形成芽體的效果
方浩宇; Fang, Hao-Yu
來源 王智屏。2005。銨逆境下,細胞分裂素對水稻小苗微芽生長之效應。碩士論文。台中:國立中興大學農藝所。 林訓仕。2005。水稻微芽之誘導分化及其對除草劑之耐性。碩士論文。台中:國立中興大學農藝所。 張世政。2005。台灣地區紫錐菊生產與品質評估之研究。碩士論文。台中:國立中興大學農藝所。 Babic, V., R. S. Datla, G. J. Scoles, and W. A. Keller. 1997. Development of an efficient Agrobacterium-mediated transformation system for Brassica carinata. Plant Cell Rep. 17: 183-188. Bayer, E., K. H. Gugel, K. Hagele, H. Hagenmaier, S. Jessipow, W. A. Konig, and H. Zahner. 1972. Stoffwechselproduket von Mikroorganismen. Phosphinothricin and phosphinothricyl-Alanyl-Alanin. Helv. Chim. Acta. 55: 224-239. Chen, J. G., S. H. Cheng, W. Cao, and X. Zhou. 1998. Involvement of endogenous plant hormones in the effect of mixed nitrogen source on growth and tillering of wheat. J. Plant Nutri. 21: 87-97. Cho, M. J., H. W. Choi, D. Okamoto, S. Zhang, and P. G. Lemaux. 2003. Expression of green fluorescent protein and its inheritance in transgenic oat plants generated from shoot meristematic cultures. Plant Cell Rep. 21: 467-474. Choffe, K. L., J. M. R. Victor, S. J. Murch, and P. K. Saxena. 2000. In vitro regeneratition of Echinacea purpurea L. direct somatic embryogenesis and indirect shoot organogenesis in petiole culture. In Vitro Cell. Dev. Biol. -Plant 36: 30-36. Coetzer, E., K. AI-Khatib, and T. M. Loughin. 2001. Glufosinate efficacy, absorption, and translocation in amaranth as effected by relative humidity and temperature. Weed Sci. 49: 8-13. Gamage, N. and T. Nakanishi. 2000. In vitro shoot regeneration from leaf tissue of apple (cultivar “Orine”): high shoot proliferation using carry over effect of TDZ. Acta Hort. 520: 291-299. Halle, J. R., S. Ghosh, E. B. Dumbroff, and J. J. Heikkila. 1990. Effect of evaluated temperatures on heat shock protein and ribulose-1,5-bisphosphate carboxylase gene expression in Brassica napus. Biochem. Cell Biol. 68: 609-615. Harbage, J. F. 2001. Micropropagation of Echinacea angustifolia, E. pallida, and E. purpurea from stem and seed explants. HortScience 36: 360-364. Hebert-soule, D., J. R. Kikkert, and B. J. Reisch. 1995. phosphinothricin stimulates somatic embryogenesis in grape (Vitis sp. L.). Plant Cell Rep. 14: 380-384. Hoshino, Y. and M. Mii. 1998. Bialaphos stimulates shoot regeneration from hairy roots of snapdragon (Antirrhinum majus L.) transformed by Agrobacterium rhizogenes. Plant Cell Rep. 17: 256-261. Hsu, Y. T. and C. H. Kau. 2004. Phosphinothricin tolerance in rice (Oryza sativa L.) seedlings is associated with elevated abscisic acid in the leaves. Bot. Bull. Acad. Sin. 45: 41-48. Hu, C. and D. D. Kitts. 2000. Studies on the antioxidant of Echinacea. Root extract. J. Agric. Food Chem. 48: 1466-1472. Hurst, P. L., G. A. King, and W. M. Borst. 1993. Postharvest inhibition of glutamine synthetase activity with phosphinothricin reduces the shelf-life of asparagus. Posth. Biol. Tech. 3: 327-334. Jansen, C., I. Schuphan, and B. Schmidt. 2000. Glufosinate metabolism in excised shoots and leaves of twentyplant species. Weed Sci. 48: 319-326. Kamo, K. and J. V. Eck. 1997. Effect of bialaphos and phosphinothricin on plant regeneration from long- and short- term callus cultures of Gladiolus. In Vitro Cell. Dev. Biol. -Plant 33: 180-183. Knapp, J. E., A. P. Kausch, and J. M. Chandlee. 2000. Transformation of three genera of orchid using the bar gene as a selectable marker. Plant Cell Rep. 19: 893-898. Komossa, D. and H. Sandermann Jr. 1992. Plant metabolism of herbicides with C-P bonds: phosphinothricin. Pesti. Biochem. Physiol. 43: 95-102. Koroch, A., J. Kapteyn, H. R. Juliani, and J. E. Simon. 2002. In vitro regeneration and Agrobacterium transformation of Echinacea purpurea leaf explants. Trends in new crops and new uses. Proceedings of the Fifth National Symposium, Atlanta, Georgia, USA, 10-13 November, 2001. 522-526. Krieg, L. C., M. A. Walker, T. Senaratna, and B. D. McKersie. 1990. Growth, ammonia accumulation and glutamine synthetase activity in alfalfa (Medicago sativa L.) shoots and cell cultures treated with phosphinothricin. Plant Cell Rep. 9: 80-83. Laemmil, U. K. 1970. Cleavage of stractural proteins during the assembly of the head of bacteriophage T4. Nature 227: 680-685. Lakshmanan, P., M. Danesh, and A. Taji. 2002. Production of four commercially cultivated Echinacea species by different methods of in vitro regeneration. J. Hort. Sci. Bio. 77: 158-163. Lea, P. J., K. W. Joy, J. L. Ramos, and M. G. Guerrero. 1984. The action of the 2-mino-4-(methylphosphinyl)-butanoic acid (phosphinothricin) and its 2-oxo-derivative on the metabolism of cyanobacteria and higher plant. Phytochemistry 23: 1-6. Liu, P. W., G. Neumann, F. Bangerth, and C. Engels. 2000. Rapid effects of nitrogen from on leaf morphogenesis in tobacco. J. Exp. Bot. 51: 227-237. Loaiza, J., R. Valverde, and L. Gomez. 2004. Micropropagation of Echinacea purpurea using lateral shoots and seeds as explants. Agro. Cos. 28: 17-26. Lorz, H., I. Potrykus, and E. Thomas. 1977. Somatic embryogenesis from tobacco protoplasts. Naturwissenschaften 64: 439-440. McGregor, R. L. 1968. The taxonomy of the genus Echinacea. Univ. Kansas Sci. Bul. 48: 113-142. Mechanda, S. M., B. R. Baum, D. A. Johnson, and J. T. Arnason. 2003. Direct shoot regeneration from leaf segments of mature plants of Echinacea purpurea (L.) Moench. In Vitro Cell. Dev. Bio. -Plant 39: 505-509. Milczarek, I. M. and J. Zimny. 2001. NH4+ and NO3- requirement for wheat somatic embryogenesis. Acta Physiol. -Plantarum 23: 37-42. Oktem, H. A., Y. Soyer, F. Setenci, and M. Yucel. 1997. Development of herbicide resistant transgenic tobacco plants. Anad. Kard. Derg. 7: 80-88. Pan, Z. G., C. Z. Liu, S. M. A. Zobayed, and P. K. Saxena. 2004. Plant regeneration from mesophyll protoplasts of Echinacea purpurea. Plant Cell Tiss. Org. Cult. 77: 251-255. Palmer, C. E. and M. Oelck. 1992. The relationship of phosphinothricin to growth and metabolism in cell culture of Brassica napus L. Plant Physiol. 141: 105-110. Parkash, L., M. Danesh, and A. Taji. 2002. Production of four commercially cultivated Echinacea species by different methods in vitro regeneration. J. Horticult. Sci. Biotech. 77: 158-163. Parry, M. A. J., C. N. G. Schmidt, M. J. Cornelius, B. N. Millard, S. Burton, S. Gutteridge, T. A. Dyer, and A. J. Keys. 1987. Variations and properties of ribulose-1,5-bisphosphate carboxylase from various species related to differences in amino acid sequences. J. Exp. Bot. 38: 1260-1271. Pigeaire, A., D. Abernethy, P. M. Smith, K. Simpson, N. Fletcher, C. Y. Lu, C. A. Atkins, and E. Cornish. 1997. Transformation of a grain legume (Lupinus angustifolius L.) via Agrobacterium tumefaciens-mediated gene transfer to shoot apices. Mol. Bree. 3: 341-349. Pline, W. A., J. Wu, and K. K. Hatzios. 1999. Absorption, translocation, and metabolism of glufosinate in five weed species as influenced by ammonium sulfate and pelargonic acid. Weed Sci. 47: 636-643. Pornprom, T., S. Surawattananon, and P. Srinives. 2000. Ammonia accumulation as an index of glufosinate-tolerant soybean cell lines. Pestic. Biochem. Physiol. 68: 102-106. Punja, Z. K. and W. P. Chen. 2003. Tissue culture of American ginseng and genetic engineering to express antifungal proteins. Acta. Hort. 625: 395-401. Raab, T. K. and N. Terry. 1994. Nitrogen source regulation of growth and photosynthesis in Beta vulgaris L. Plant Physiol. 105: 1159-1166. Shalaby, A. S., E. A. Agina, S. E. El-Gengaihi, A. S. El-Khayat, and S. F. Hindawy. 1997a. Response of Echinacea to some agricultureal practices. J. Herbs Spices Med. Plant 4: 59-67. Shalaby, A. S., S. E. El-Gengaihi, E. A. Agina, A. S. El-Khayat, and S. F. Hindawy. 1997b. Growth and uield of Echinacea purpurea L. as influenced by olanting density and fertilization. J. Herbs Spices Med. Plant 5: 69-76. Skora Note, F., H. D. Coble, and F. T. Corbin. 2000. Absorption, translocation, and metabolism of 14C-glufosinate in Xanthium Strumarium, Commelina Difusa, and Ipomoea Purpurea. Weed Sci. 48: 171-175. Sujatha, M. and T. P. Reddy. 1998. Differential cytokinin effects on the stimulation of in vitro shoot proliferation from meristematic explants of castor (Ricinus communis L.). Plant Cell Rep. 17: 561-566. Thompson, C. J., N. R. Movva, R. Tizard, R. Crameri, J. E. Davies, M. Lauwereys, and J. Botterman. 1987. Characterization of the herbicide-resistance gene bar from Streptomyces hygroscopicus. EMBO J. 6: 2519-2523. Toldi, O., S. Toth, A. S. Oreifig, E. Kiss, and B. Jenes. 2000. Production of phosphinothricin-tolerant rice (Oryza Sativa L.) through the application phosphinothricin as growth regulator. Plant Cell Rep. 19: 1226-1231. Vasil, V., A. M. Castillo, M. E. Fromm, and I. K. Vasil. 1992. Herbicide resistant fertile transgenic wheat plants obtained by microprojectile bombardment of regenerable embryogenic callus. Biotechnology 10: 667-674. Wendler, C., A. Putzer, and A. Wild. 1992. Effect of glufosinate (phosphinothricin) and inhibitors of photorespiration on photosynthesis and ribulose-1,5-bisphosphate carboxylase activity. J. Plant Physiol. 139: 666-671. Wild, A. and C. Ziegler. 1989. The effect of bialaphos on ammonium-assimilation and photosynthesis. I. Effect on the enzymes of ammonium assimilation. Z. Naturforsch 44: 97-102. Witjaksono and R. E. Litz. 1999. Maturation of avocado somatic embryos and plant recovery. Plant Cell Tiss. Org. cult. 58: 141-148. Zhang, S., L. H. Zhu, X. Y. Li, A. Ahlman, and M. Welander. 2005. Infection by Agrobacterium tumefaciens increased the resistance of leaf explants to selective agents in carnation (Dianthus caryophyllus L. and D. Chinensis). Plant Sci. 168: 137-144. Zobayed, S. M. A. and P. K. Saxena. 2003. In vitro regeneration of Echinacea purpurea L.: enhancement of somatic embryogenesis by indolebutyric acid and dark pre-incubation. In Vitro Cell. Dev. Biol. -Plant 39: 605-612.
類型 Thesis and Dissertation
來源 王智屏。2005。銨逆境下,細胞分裂素對水稻小苗微芽生長之效應。碩士論文。台中:國立中興大學農藝所。 林訓仕。2005。水稻微芽之誘導分化及其對除草劑之耐性。碩士論文。台中:國立中興大學農藝所。 張世政。2005。台灣地區紫錐菊生產與品質評估之研究。碩士論文。台中:國立中興大學農藝所。 Babic, V., R. S. Datla, G. J. Scoles, and W. A. Keller. 1997. Development of an efficient Agrobacterium-mediated transformation system for Brassica carinata. Plant Cell Rep. 17: 183-188. Bayer, E., K. H. Gugel, K. Hagele, H. Hagenmaier, S. Jessipow, W. A. Konig, and H. Zahner. 1972. Stoffwechselproduket von Mikroorganismen. Phosphinothricin and phosphinothricyl-Alanyl-Alanin. Helv. Chim. Acta. 55: 224-239. Chen, J. G., S. H. Cheng, W. Cao, and X. Zhou. 1998. Involvement of endogenous plant hormones in the effect of mixed nitrogen source on growth and tillering of wheat. J. Plant Nutri. 21: 87-97. Cho, M. J., H. W. Choi, D. Okamoto, S. Zhang, and P. G. Lemaux. 2003. Expression of green fluorescent protein and its inheritance in transgenic oat plants generated from shoot meristematic cultures. Plant Cell Rep. 21: 467-474. Choffe, K. L., J. M. R. Victor, S. J. Murch, and P. K. Saxena. 2000. In vitro regeneratition of Echinacea purpurea L. direct somatic embryogenesis and indirect shoot organogenesis in petiole culture. In Vitro Cell. Dev. Biol. -Plant 36: 30-36. Coetzer, E., K. AI-Khatib, and T. M. Loughin. 2001. Glufosinate efficacy, absorption, and translocation in amaranth as effected by relative humidity and temperature. Weed Sci. 49: 8-13. Gamage, N. and T. Nakanishi. 2000. In vitro shoot regeneration from leaf tissue of apple (cultivar “Orine”): high shoot proliferation using carry over effect of TDZ. Acta Hort. 520: 291-299. Halle, J. R., S. Ghosh, E. B. Dumbroff, and J. J. Heikkila. 1990. Effect of evaluated temperatures on heat shock protein and ribulose-1,5-bisphosphate carboxylase gene expression in Brassica napus. Biochem. Cell Biol. 68: 609-615. Harbage, J. F. 2001. Micropropagation of Echinacea angustifolia, E. pallida, and E. purpurea from stem and seed explants. HortScience 36: 360-364. Hebert-soule, D., J. R. Kikkert, and B. J. Reisch. 1995. phosphinothricin stimulates somatic embryogenesis in grape (Vitis sp. L.). Plant Cell Rep. 14: 380-384. Hoshino, Y. and M. Mii. 1998. Bialaphos stimulates shoot regeneration from hairy roots of snapdragon (Antirrhinum majus L.) transformed by Agrobacterium rhizogenes. Plant Cell Rep. 17: 256-261. Hsu, Y. T. and C. H. Kau. 2004. Phosphinothricin tolerance in rice (Oryza sativa L.) seedlings is associated with elevated abscisic acid in the leaves. Bot. Bull. Acad. Sin. 45: 41-48. Hu, C. and D. D. Kitts. 2000. Studies on the antioxidant of Echinacea. Root extract. J. Agric. Food Chem. 48: 1466-1472. Hurst, P. L., G. A. King, and W. M. Borst. 1993. Postharvest inhibition of glutamine synthetase activity with phosphinothricin reduces the shelf-life of asparagus. Posth. Biol. Tech. 3: 327-334. Jansen, C., I. Schuphan, and B. Schmidt. 2000. Glufosinate metabolism in excised shoots and leaves of twentyplant species. Weed Sci. 48: 319-326. Kamo, K. and J. V. Eck. 1997. Effect of bialaphos and phosphinothricin on plant regeneration from long- and short- term callus cultures of Gladiolus. In Vitro Cell. Dev. Biol. -Plant 33: 180-183. Knapp, J. E., A. P. Kausch, and J. M. Chandlee. 2000. Transformation of three genera of orchid using the bar gene as a selectable marker. Plant Cell Rep. 19: 893-898. Komossa, D. and H. Sandermann Jr. 1992. Plant metabolism of herbicides with C-P bonds: phosphinothricin. Pesti. Biochem. Physiol. 43: 95-102. Koroch, A., J. Kapteyn, H. R. Juliani, and J. E. Simon. 2002. In vitro regeneration and Agrobacterium transformation of Echinacea purpurea leaf explants. Trends in new crops and new uses. Proceedings of the Fifth National Symposium, Atlanta, Georgia, USA, 10-13 November, 2001. 522-526. Krieg, L. C., M. A. Walker, T. Senaratna, and B. D. McKersie. 1990. Growth, ammonia accumulation and glutamine synthetase activity in alfalfa (Medicago sativa L.) shoots and cell cultures treated with phosphinothricin. Plant Cell Rep. 9: 80-83. Laemmil, U. K. 1970. Cleavage of stractural proteins during the assembly of the head of bacteriophage T4. Nature 227: 680-685. Lakshmanan, P., M. Danesh, and A. Taji. 2002. Production of four commercially cultivated Echinacea species by different methods of in vitro regeneration. J. Hort. Sci. Bio. 77: 158-163. Lea, P. J., K. W. Joy, J. L. Ramos, and M. G. Guerrero. 1984. The action of the 2-mino-4-(methylphosphinyl)-butanoic acid (phosphinothricin) and its 2-oxo-derivative on the metabolism of cyanobacteria and higher plant. Phytochemistry 23: 1-6. Liu, P. W., G. Neumann, F. Bangerth, and C. Engels. 2000. Rapid effects of nitrogen from on leaf morphogenesis in tobacco. J. Exp. Bot. 51: 227-237. Loaiza, J., R. Valverde, and L. Gomez. 2004. Micropropagation of Echinacea purpurea using lateral shoots and seeds as explants. Agro. Cos. 28: 17-26. Lorz, H., I. Potrykus, and E. Thomas. 1977. Somatic embryogenesis from tobacco protoplasts. Naturwissenschaften 64: 439-440. McGregor, R. L. 1968. The taxonomy of the genus Echinacea. Univ. Kansas Sci. Bul. 48: 113-142. Mechanda, S. M., B. R. Baum, D. A. Johnson, and J. T. Arnason. 2003. Direct shoot regeneration from leaf segments of mature plants of Echinacea purpurea (L.) Moench. In Vitro Cell. Dev. Bio. -Plant 39: 505-509. Milczarek, I. M. and J. Zimny. 2001. NH4+ and NO3- requirement for wheat somatic embryogenesis. Acta Physiol. -Plantarum 23: 37-42. Oktem, H. A., Y. Soyer, F. Setenci, and M. Yucel. 1997. Development of herbicide resistant transgenic tobacco plants. Anad. Kard. Derg. 7: 80-88. Pan, Z. G., C. Z. Liu, S. M. A. Zobayed, and P. K. Saxena. 2004. Plant regeneration from mesophyll protoplasts of Echinacea purpurea. Plant Cell Tiss. Org. Cult. 77: 251-255. Palmer, C. E. and M. Oelck. 1992. The relationship of phosphinothricin to growth and metabolism in cell culture of Brassica napus L. Plant Physiol. 141: 105-110. Parkash, L., M. Danesh, and A. Taji. 2002. Production of four commercially cultivated Echinacea species by different methods in vitro regeneration. J. Horticult. Sci. Biotech. 77: 158-163. Parry, M. A. J., C. N. G. Schmidt, M. J. Cornelius, B. N. Millard, S. Burton, S. Gutteridge, T. A. Dyer, and A. J. Keys. 1987. Variations and properties of ribulose-1,5-bisphosphate carboxylase from various species related to differences in amino acid sequences. J. Exp. Bot. 38: 1260-1271. Pigeaire, A., D. Abernethy, P. M. Smith, K. Simpson, N. Fletcher, C. Y. Lu, C. A. Atkins, and E. Cornish. 1997. Transformation of a grain legume (Lupinus angustifolius L.) via Agrobacterium tumefaciens-mediated gene transfer to shoot apices. Mol. Bree. 3: 341-349. Pline, W. A., J. Wu, and K. K. Hatzios. 1999. Absorption, translocation, and metabolism of glufosinate in five weed species as influenced by ammonium sulfate and pelargonic acid. Weed Sci. 47: 636-643. Pornprom, T., S. Surawattananon, and P. Srinives. 2000. Ammonia accumulation as an index of glufosinate-tolerant soybean cell lines. Pestic. Biochem. Physiol. 68: 102-106. Punja, Z. K. and W. P. Chen. 2003. Tissue culture of American ginseng and genetic engineering to express antifungal proteins. Acta. Hort. 625: 395-401. Raab, T. K. and N. Terry. 1994. Nitrogen source regulation of growth and photosynthesis in Beta vulgaris L. Plant Physiol. 105: 1159-1166. Shalaby, A. S., E. A. Agina, S. E. El-Gengaihi, A. S. El-Khayat, and S. F. Hindawy. 1997a. Response of Echinacea to some agricultureal practices. J. Herbs Spices Med. Plant 4: 59-67. Shalaby, A. S., S. E. El-Gengaihi, E. A. Agina, A. S. El-Khayat, and S. F. Hindawy. 1997b. Growth and uield of Echinacea purpurea L. as influenced by olanting density and fertilization. J. Herbs Spices Med. Plant 5: 69-76. Skora Note, F., H. D. Coble, and F. T. Corbin. 2000. Absorption, translocation, and metabolism of 14C-glufosinate in Xanthium Strumarium, Commelina Difusa, and Ipomoea Purpurea. Weed Sci. 48: 171-175. Sujatha, M. and T. P. Reddy. 1998. Differential cytokinin effects on the stimulation of in vitro shoot proliferation from meristematic explants of castor (Ricinus communis L.). Plant Cell Rep. 17: 561-566. Thompson, C. J., N. R. Movva, R. Tizard, R. Crameri, J. E. Davies, M. Lauwereys, and J. Botterman. 1987. Characterization of the herbicide-resistance gene bar from Streptomyces hygroscopicus. EMBO J. 6: 2519-2523. Toldi, O., S. Toth, A. S. Oreifig, E. Kiss, and B. Jenes. 2000. Production of phosphinothricin-tolerant rice (Oryza Sativa L.) through the application phosphinothricin as growth regulator. Plant Cell Rep. 19: 1226-1231. Vasil, V., A. M. Castillo, M. E. Fromm, and I. K. Vasil. 1992. Herbicide resistant fertile transgenic wheat plants obtained by microprojectile bombardment of regenerable embryogenic callus. Biotechnology 10: 667-674. Wendler, C., A. Putzer, and A. Wild. 1992. Effect of glufosinate (phosphinothricin) and inhibitors of photorespiration on photosynthesis and ribulose-1,5-bisphosphate carboxylase activity. J. Plant Physiol. 139: 666-671. Wild, A. and C. Ziegler. 1989. The effect of bialaphos on ammonium-assimilation and photosynthesis. I. Effect on the enzymes of ammonium assimilation. Z. Naturforsch 44: 97-102. Witjaksono and R. E. Litz. 1999. Maturation of avocado somatic embryos and plant recovery. Plant Cell Tiss. Org. cult. 58: 141-148. Zhang, S., L. H. Zhu, X. Y. Li, A. Ahlman, and M. Welander. 2005. Infection by Agrobacterium tumefaciens increased the resistance of leaf explants to selective agents in carnation (Dianthus caryophyllus L. and D. Chinensis). Plant Sci. 168: 137-144. Zobayed, S. M. A. and P. K. Saxena. 2003. In vitro regeneration of Echinacea purpurea L.: enhancement of somatic embryogenesis by indolebutyric acid and dark pre-incubation. In Vitro Cell. Dev. Biol. -Plant 39: 605-612.
類型 Thesis and Dissertation
0
有效率的可搜尋多關鍵字之對稱加密法
張儷子; Chang, Li-Tzu
來源 [1] J. Baek, R. Safavi-Naini, andW. Susilo, “Public key encryption with key-word search revisited”, Computational Science and Its Applications 2008, LNCS 5072, pp. 1249-1259, 2008. [2] J. Baek, R. Safavi-Naini, and W. Susilo. “Certificateless public key encryp-tion without pairing”, Information Security: 8thInternational Conference , LNCS 3650, pp. 134-148, 2005. [3] L. Ballard, S. Kamara, and F. Monrose, “Achieving Efficient Conjunctive Keyword Searches over Encrypted Data”, ICICS 2005, LNCS 3783, pp. 414-426, 2005. [4] D. Boneh. “The Decision Diffie-Hellman Problem”, ANTS-III, LNCS1423, pp. 48-63, 1998. [5] D. Boneh, G.D. Crescenzo, R. Ostrovsky, G. “Persiano, Public key encryp-tion with keyword search”, Eurocrypt 2004, LNCS 3089, pp. 31-45, 2004. [6] D. Boneh and B. Waters, “Conjunctive, subset, and range queries on en-crypted data”, proceedings of TCC''07, LNCS 4392, pp. 535-554, 2007. [7] D. Boneh and X. Boyen, “Efficient selective-ID secure identity based en-cryption without random oracle”, EUROCRYPT 2004, LNCS 3027, pp. 223–238, Springer-Verlag, 2004. [8] J. Byun, D. Lee, and J. Lim, “Efficient Conjunctive Keyword Search on Encrypted Data Storage System”, EuroPKI 2006, LNCS 4043, pp. 184-196, 2006. [9] Y.C. Chen and G. Horng, “Timestamped Conjunctive Keyword-Searchable Public Key Encryption”, Fourth International Conference on Innovative Computing, Information and Control, pp. 729 -732, 2009. [10] E.J. Goh, “Secure index”, Ryptology ePrint Archive: Report 2003/216, 2003. [11] P. Golle, J. Staddon, B. Waters, “Secure conjunctive keyword search over encrypted data”, Proceedings of Applied Cryptography and Network Secu-rity Conference, LNCS 3089, pp. 31-45, Springer-Verlag , 2004. [12] I.R. Jeong , J.O. Kwon, D. Hong, and D.H. Lee, “Constructing PEKS schemes against keyword guessing attacks is possible? ”, Computer Com-munications 32, pp. 394-396, 2009. [13] D.J. Park, K. Kim, P.J. Lee, “Public key encryption with conjunctive field keyword search”, Proc. WISA 2004, LNCS 3325, , pp. 73-86, Sprin-ger-Verlag, 2004. [14] E. K. Ryu and T. Takagi, “Efficient Conjunctive Keyword-Searchable En-cryption”, Advanced Information Networking and ApplicationsWorkshops, pp. 409-414, 2007. [15] D. Song, D.Wagner, A. Perrige, “Practical techniques for searches on en-crypted data”, Proceedings of the IEEE Security and Privacy Symposium, pp. 44-55, 2000. [16] Q. Tang. “Revisit the Concept of PEKS: Problems and a Possible Solution”, Technical Report TR-CTIT-08-54, Centre for Telematics and Information Technology, University of Twente, Enschede, 2008. [17] V. Miller, “Short programs for functions on curve”, unpublished manuscript, 1986. [18] C. Liu, G. Horng, and T. Chen, “Further refinement of pairing computation based on Miller''s algorithm”, Applied Mathematics and Computation 189, pp.395-409,2007. [19] A. Saxena, “The BLS Scheme to Identity Based Signatures,” http://sites.google.com/site/saxenaamitabh/saxena05ibs.pdf, 2006. [20] C. Wang, N. Cao, J, Li, K. Reb, W. Lou, “Secure Ranked Keyword Search over Encrypted Cloud Data”, 2010 International Conference on Distri-buted Computing Systems, pp.253-262, 2010. [21] 丁培毅,溫玎蕙,張書瑋, “支援關鍵字搜尋的身分識別廣播加密方法”, 第二十一屆資訊安全會議,2011。
類型 Thesis and Dissertation
來源 [1] J. Baek, R. Safavi-Naini, andW. Susilo, “Public key encryption with key-word search revisited”, Computational Science and Its Applications 2008, LNCS 5072, pp. 1249-1259, 2008. [2] J. Baek, R. Safavi-Naini, and W. Susilo. “Certificateless public key encryp-tion without pairing”, Information Security: 8thInternational Conference , LNCS 3650, pp. 134-148, 2005. [3] L. Ballard, S. Kamara, and F. Monrose, “Achieving Efficient Conjunctive Keyword Searches over Encrypted Data”, ICICS 2005, LNCS 3783, pp. 414-426, 2005. [4] D. Boneh. “The Decision Diffie-Hellman Problem”, ANTS-III, LNCS1423, pp. 48-63, 1998. [5] D. Boneh, G.D. Crescenzo, R. Ostrovsky, G. “Persiano, Public key encryp-tion with keyword search”, Eurocrypt 2004, LNCS 3089, pp. 31-45, 2004. [6] D. Boneh and B. Waters, “Conjunctive, subset, and range queries on en-crypted data”, proceedings of TCC''07, LNCS 4392, pp. 535-554, 2007. [7] D. Boneh and X. Boyen, “Efficient selective-ID secure identity based en-cryption without random oracle”, EUROCRYPT 2004, LNCS 3027, pp. 223–238, Springer-Verlag, 2004. [8] J. Byun, D. Lee, and J. Lim, “Efficient Conjunctive Keyword Search on Encrypted Data Storage System”, EuroPKI 2006, LNCS 4043, pp. 184-196, 2006. [9] Y.C. Chen and G. Horng, “Timestamped Conjunctive Keyword-Searchable Public Key Encryption”, Fourth International Conference on Innovative Computing, Information and Control, pp. 729 -732, 2009. [10] E.J. Goh, “Secure index”, Ryptology ePrint Archive: Report 2003/216, 2003. [11] P. Golle, J. Staddon, B. Waters, “Secure conjunctive keyword search over encrypted data”, Proceedings of Applied Cryptography and Network Secu-rity Conference, LNCS 3089, pp. 31-45, Springer-Verlag , 2004. [12] I.R. Jeong , J.O. Kwon, D. Hong, and D.H. Lee, “Constructing PEKS schemes against keyword guessing attacks is possible? ”, Computer Com-munications 32, pp. 394-396, 2009. [13] D.J. Park, K. Kim, P.J. Lee, “Public key encryption with conjunctive field keyword search”, Proc. WISA 2004, LNCS 3325, , pp. 73-86, Sprin-ger-Verlag, 2004. [14] E. K. Ryu and T. Takagi, “Efficient Conjunctive Keyword-Searchable En-cryption”, Advanced Information Networking and ApplicationsWorkshops, pp. 409-414, 2007. [15] D. Song, D.Wagner, A. Perrige, “Practical techniques for searches on en-crypted data”, Proceedings of the IEEE Security and Privacy Symposium, pp. 44-55, 2000. [16] Q. Tang. “Revisit the Concept of PEKS: Problems and a Possible Solution”, Technical Report TR-CTIT-08-54, Centre for Telematics and Information Technology, University of Twente, Enschede, 2008. [17] V. Miller, “Short programs for functions on curve”, unpublished manuscript, 1986. [18] C. Liu, G. Horng, and T. Chen, “Further refinement of pairing computation based on Miller''s algorithm”, Applied Mathematics and Computation 189, pp.395-409,2007. [19] A. Saxena, “The BLS Scheme to Identity Based Signatures,” http://sites.google.com/site/saxenaamitabh/saxena05ibs.pdf, 2006. [20] C. Wang, N. Cao, J, Li, K. Reb, W. Lou, “Secure Ranked Keyword Search over Encrypted Cloud Data”, 2010 International Conference on Distri-buted Computing Systems, pp.253-262, 2010. [21] 丁培毅,溫玎蕙,張書瑋, “支援關鍵字搜尋的身分識別廣播加密方法”, 第二十一屆資訊安全會議,2011。
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