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首页> 外文期刊>International Journal of Molecular Sciences >Core RNAi Machinery and Sid1, a Component for Systemic RNAi, in the Hemipteran Insect, Aphis glycines
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Core RNAi Machinery and Sid1, a Component for Systemic RNAi, in the Hemipteran Insect, Aphis glycines

机译:半球形昆虫蚜虫甘氨酸中的核心RNAi机械和Sid1(系统RNAi的组成部分)

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RNA interference (RNAi) offers a novel tool to manage hemipteran pests. For the success of RNAi based pest control in the field, a robust and systemic RNAi response is a prerequisite. We identified and characterized major genes of the RNAi machinery, Dicer2 (Dcr2), Argonaute2 (Ago2), and R2d2 in Aphis glycines, a serious pest of soybean. The A. glycines genome encodes for at least one copy of Dcr2, R2d2 and Ago2. Comparative and molecular evolution analyses (dN/dS) showed that domain regions of encoded proteins are highly conserved, whereas linker (non-domain) regions are diversified. Sequence homology and phylogenetic analyses suggested that the RNAi machinery of A. glycines is more similar to that of Tribolium casteneum as compared to that of Drosophila melanogaster. We also characterized Sid1, a major gene implicated in the systemic response for RNAi-mediated gene knockdown. Through qPCR, Dcr2, R2d2, Ago2, and Sid1 were found to be expressed at similar levels in various tissues, but higher expression of Dcr2, R2d2, and Ago2 was seen in first and second instars. Characterization of RNAi pathway and Sid1 in A. glycines will provide the foundation of future work for controlling one of the most important insect pests of soybean in North America.
机译:RNA干扰(RNAi)提供了一种处理半翅目害虫的新颖工具。为了在该领域成功实现基于RNAi的害虫防治,必须具备强大而系统的RNAi反应。我们在大豆蚜虫(一种严重的大豆害虫)中鉴定并鉴定了RNAi机制的主要基因,Dicer2(Dcr2),Argonaute2(Ago2)和R2d2。甘氨酸曲霉基因组编码Dcr2,R2d2和Ago2的至少一个拷贝。比较分析和分子进化分析(dN / dS)显示,编码蛋白的结构域区域高度保守,而接头(非结构域)区域则多样化。序列同源性和系统发育分析表明,与果蝇相比,甘氨酸曲霉的RNAi机制与cast藜Triboium casteneum的机制更为相似。我们还表征了Sid1,这是一个涉及RNAi介导的基因敲低的系统应答的主要基因。通过qPCR,发现Dcr2,R2d2,Ago2和Sid1在各种组织中以相似的水平表达,但是在第一龄和第二龄中Dcr2,R2d2和Ago2的表达较高。甘氨酸曲霉中RNAi途径和Sid1的表征将为今后控制北美大豆最重要的害虫之一提供基础。

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