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Begomovirus DNA replication and pathogenicity.

机译:牛瘟病毒DNA复制和致病性。

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Begomoviridae is the largest genus of the family of single stranded DNA plant viruses, Geminiviridae and is responsible for significant agro-economic losses worldwide. Its small single-stranded DNA genome primarily replicates by rolling circle replication (RCR) mode with the help of certain viral and host factors. The role of virus encoded Rep protein in initiation and immediate post-initiation phases of RCR has been the subject of various studies. We have identified many host proteins which interact with Rep protein of a member of Begomovirus, namely, Mungbean yellow mosaic India virus, thereby playing a role in viral DNA replication. Of these, the role of host RAD54 protein is significant as the rad54 mutant of Arabidopsis does not permit mini viral DNA replication. The plant hosts protect themselves from begomoviruses by activating RNA interference (RNAi) pathways targeted against the viruses. However, the virus can also sometime overcome this form of host defence by encoding RNA silencing suppressors, which attenuate host RNAi and are regarded as major pathogenicity determinants. The viral suppressors do not share any signature sequences and are structurally and mechanistically dissimilar. These can be detected effectively, only through specialized functional assays. In this review, we also point out the potential biotechnological applications of the suppressors and discuss about various possible containment strategies for begomoviruses, including an exciting new approach involving artificial micro-RNAs.
机译:Begomoviridae 是单链DNA植物病毒 Geminiviridae 家族中最大的属,是造成全球农业经济重大损失的原因。它的小单链DNA基因组主要在某些病毒和宿主因素的帮助下通过滚环复制(RCR)模式进行复制。病毒编码的Rep蛋白在RCR的起始和起始后立即阶段的作用一直是各种研究的主题。我们已经鉴定出许多宿主蛋白,它们与 Begomovirus 成员的Rep蛋白相互作用,即 Mungbean黄色花叶印度病毒,从而在病毒DNA复制中发挥作用。其中,宿主RAD54蛋白的作用非常重要,因为拟南芥(Arabidopsis)的 rad54 突变体不允许微型病毒DNA复制。植物宿主可以通过激活针对病毒的RNA干扰(RNAi)途径来保护自身免受Bemomovirus的侵害。但是,该病毒有时也可以通过编码RNA沉默抑制剂来克服这种形式的宿主防御,这种沉默抑制剂会减弱宿主RNAi并被认为是主要的致病性决定因素。病毒抑制子不共享任何签名序列,并且在结构和机制上都不相同。只有通过专门的功能分析才能有效地检测到这些。在这篇综述中,我们还指出了抑制子的潜在生物技术应用,并讨论了关于begomovirus的各种可能的遏制策略,包括涉及人工micro-RNA的令人兴奋的新方法。

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