Please use this identifier to cite or link to this item: http://hdl.handle.net/11455/65754
DC FieldValueLanguage
dc.contributor.advisor顏江河zh_TW
dc.contributor.advisorChiang-Her Yenen_US
dc.contributor.author陳潔音zh_TW
dc.contributor.authorChen, Chieh-Yinen_US
dc.date2001zh_TW
dc.date.accessioned2014-06-09T09:28:33Z-
dc.date.available2014-06-09T09:28:33Z-
dc.identifier.urihttp://hdl.handle.net/11455/65754-
dc.description.abstract本研究採用盆栽試驗,以彰化縣重金屬污染之農田土壤作為供試土壤,探討臺灣二葉松(Pinus taiwanensis)與青剛櫟(Cyclobalanopsis glauca)兩種樹種在接種彩色豆馬勃菌(Pisolithus tinctorius, Pt)形成菌根後,是否可達成植物復育之功效。試驗採完全逢機設計,試驗因子為菌根接種之有無,及同性質之兩種污染程度土壤。以觀察苗木形質生長,分析植株各部位之重金屬及養分濃度與蓄積量,測定根域土壤溶液之化學性質、根域土壤之麥角固醇量,以及觀察彩色豆馬勃菌根菌於MMN固體培養基之生長情形作探討。結果顯示供試土壤呈近中性之弱酸性,氮、磷、鈣含量均高於一般土壤,而重金屬鎘與鋅之濃度已高達環保署制定之觀察值及農地優先整治值。由存活率及形質生長之表現顯示,Pt與二葉松及青剛櫟苗木所產生之菌根,有抵抗重金屬逆境之效應。根外菌絲及子實體可比植體吸收較多之重金屬鎘、鋅,且接種組之根部重金屬吸收量較對照組低,可見菌根菌之根外菌絲及子實體具有截留重金屬之能力。由於供試土壤中鋅、鈣含量與菌根域土壤之草酸含量高,可能會降低鎘之有效性,導致以二葉松及青剛櫟復育土壤重金屬之效應不佳。不同鎘濃度固體培養基試驗中之菌絲生長耐受度較盆栽試驗低,可見菌根菌仍須與寄主植物共生,才能發揮較大之效應。接種菌根組根域土壤溶液中之硝酸根、磷酸根、鉀、鈣及鎂離子濃度均較對照組低,可見菌根之存在能有效吸收,減少養分漏失。而可以麥角固醇之測定去推估根域土壤菌絲量,證明麥角固醇測定法於本試驗之適用性。zh_TW
dc.description.abstractThe purpose of this study was to examine the effect of Pisolithus tinctorius (Pt) mycorrhizae on heavy metal contaminated land remediation. Two seedling species, Pinus taiwanensis and Cyclobalanopsis glauca, were infected with Pt. Using pot culture with the heavy-metal contaminated soil collected from Chang-Hua area completed the experiment. The completely randomized design included two main factors, one was mycorrhizal inoculation and the other was different degrees of polluted soils. The morphological growth, accumulation and concentration of heavy metal and nutrition in each part of plant, chemical properties of rhizosphere and mycorrhizosphere, ergosterol, and the growth of Pt on MMN agar plate were determined at the end of the experiment. The results obtained from this study showed that the soils were weak acidity and their nitrogen, phosphorus and calcium were higher than those of normal soils. The Cd and Zn contents of the soils have already reached the values of remediation priority regulated by Environment Protection Agency. The extraradical mycelium and fruiting body could absorb more Cd and Zn than host plant did, and the accumulation of heavy metal in mycorrhizal roots were less than those in non- mycorrhizal roots. Hence, the extraradical mycelium and fruiting body of mycorrhizal fungi had the ability to hold heavy metals back and could sequestrate them in the roots. The high concentrations of Zn, Ca and oxalic acid in rhizosphere were likely to result in low bioavailability of Cd, so that the phytoremediation effect of Pinus taiwanensis and Cyclobalanopsis glauca mycorrhizal seedlings on heavy-metal contaminated land were not remarkable. The tolerance of hyphal growth treated in the agar plate experiment of different Cd concentration was worse than that in the pot culture. Mycorrhizal fungi had to, obviously, coexist with host plant to achieve the maximum effect. Because the nitric acid, phosphorous acid and potassium, calcium, magnesium ions were lower in mycorrhizal plant than those in non-mycorrhizal plant, mycorrhizae was shown to absorb all kinds of ions effectively, thereby reducing the leakage of nutrition. We could successfully estimate rhizosphere fungal biomass through the measurement of ergosterol, and also showed the suitability of the ergosterol measuring method for this study.en_US
dc.description.tableofcontents中文摘要 英文摘要 目錄 表目次 圖目次 壹、前言 貳、前人研究 一、重金屬於土壤中之吸附與移動 二、植物對重金屬之蓄積、傳送、毒害與耐性 三、外生菌根菌於植物復舊土壤重金屬之重要性 四、測定麥角固醇量以推估土壤活菌生物量 參、材料與方法 一、盆栽試驗 (一)供試土壤之採集 (二)苗木培育 (三)試驗設計 二、土壤化學性質分析 (一)土壤pH值 (二)土壤全氮含量 (三)有效磷含量 (四)交換性陽離子 (五)陽離子交換容量 (六)鎘、鋅之測定 三、植體之生長收穫調查 (一)樣品處理 (二)菌絲及植體養分分析 四、根域、菌根域土壤與根部之草酸與陰離子測定 (一)根域土壤草酸與陰離子測定 (二)菌根域土壤草酸與陰離子測定 (三)根部熱水萃取法 五、根域土壤菌絲生物量之分析 (一)土壤麥角固醇測定 (二)菌絲麥角固醇測定 六、外生菌根菌於不同鎘濃度之固體培養基生長試驗 (一)固體培養基之配製 (二)彩色豆馬勃菌之生長試驗 七、資料處理與分析 肆、結果 一、供試土壤之化學性質分析 二、盆栽試驗苗木形質生長 三、根域土壤菌絲生物量之分析 四、重金屬鎘、鋅與其他元素在苗木與菌根菌體內之蓄積狀況 五、菌根之植物復舊效應 六、根域土壤與菌根域土壤之草酸與陰離子含量 七、彩色豆馬勃菌於不同鎘濃度固體培養基之生長試驗 伍、討論 一、土壤重金屬對彩色豆馬勃菌根苗木之形質生長影響 二、苗木之吸收效應 三、彩色豆馬勃菌根之植物復育效應 四、彩色豆馬勃菌對重金屬鎘之耐性 陸、結論 柒、引用文獻 捌、附錄zh_TW
dc.language.isoen_USzh_TW
dc.publisher森林學系zh_TW
dc.subjectPisolithus tinctoriusen_US
dc.subject彩色豆馬勃zh_TW
dc.subjectmycorrhizaeen_US
dc.subjectCden_US
dc.subjectZnen_US
dc.subjectphytoremediationen_US
dc.subject菌根zh_TW
dc.subjectzh_TW
dc.subjectzh_TW
dc.subject植物復育法zh_TW
dc.title彩色豆馬勃菌根於重金屬污染土壤之復育效應zh_TW
dc.titleEffect of Pisolithus tinctorius Mycorrhizae on Heavy-Metal Contaminated Land Remediationen_US
dc.typeThesis and Dissertationzh_TW
item.openairetypeThesis and Dissertation-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.languageiso639-1en_US-
item.grantfulltextnone-
item.fulltextno fulltext-
item.cerifentitytypePublications-
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