請用此 Handle URI 來引用此文件: http://hdl.handle.net/11455/46193
標題: Molecular Evolution of a Viral Non-Coding Sequence under the Selective Pressure of amiRNA-Mediated Silencing
作者: Lin, S.S.
葉錫東
Wu, H.W.
Elena, S.F.
Chen, K.C.
Niu, Q.W.
Yeh, S.D.
Chen, C.C.
Chua, N.H.
關鍵字: immunodeficiency-virus type-1
rna interference
arabidopsis-thaliana
artificial micrornas
escape
cleavage
recognition
inhibition
argonaute1
expression
期刊/報告no:: Plos Pathogens, Volume 5, Issue 2.
摘要: Plant microRNAs (miRNA) guide cleavage of target mRNAs by DICER-like proteins, thereby reducing mRNA abundance. Native precursor miRNAs can be redesigned to target RNAs of interest, and one application of such artificial microRNA (amiRNA) technology is to generate plants resistant to pathogenic viruses. Transgenic Arabidopsis plants expressing amiRNAs designed to target the genome of two unrelated viruses were resistant, in a highly specific manner, to the appropriate virus. Here, we pursued two different goals. First, we confirmed that the 21-nt target site of viral RNAs is both necessary and sufficient for resistance. Second, we studied the evolutionary stability of amiRNA-mediated resistance against a genetically plastic RNA virus, TuMV. To dissociate selective pressures acting upon protein function from those acting at the RNA level, we constructed a chimeric TuMV harboring a 21-nt, amiRNA target site in a non-essential region. In the first set of experiments designed to assess the likelihood of resistance breakdown, we explored the effect of single nucleotide mutation within the target 21-nt on the ability of mutant viruses to successfully infect amiRNA-expressing plants. We found non-equivalency of the target nucleotides, which can be divided into three categories depending on their impact in virus pathogenicity. In the second set of experiments, we investigated the evolution of the virus mutants in amiRNA-expressing plants. The most common outcome was the deletion of the target. However, when the 21-nt target was retained, viruses accumulated additional substitutions on it, further reducing the binding/cleavage ability of the amiRNA. The pattern of substitutions within the viral target was largely dominated by G to A and C to U transitions.
URI: http://hdl.handle.net/11455/46193
ISSN: 1553-7366
文章連結: http://dx.doi.org/10.1371/journal.ppat.1000312
顯示於類別:植物病理學系

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