首页> 外文期刊>International Journal of Molecular Sciences >Integration Analysis of Small RNA and Degradome Sequencing Reveals MicroRNAs Responsive to Dickeya zeae in Resistant Rice
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Integration Analysis of Small RNA and Degradome Sequencing Reveals MicroRNAs Responsive to Dickeya zeae in Resistant Rice

机译:小RNA和降解组测序的整合分析揭示了抗稻米对麦哲伦的微RNA

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Rice foot rot disease caused by the pathogen Dickeya zeae (formerly known as Erwinia chrysanthemi pv. zeae ), is a newly emerging damaging bacterial disease in China and the southeast of Asia, resulting in the loss of yield and grain quality. However, the genetic resistance mechanisms mediated by miRNAs to D . zeae are unclear in rice. In the present study, 652 miRNAs including osa-miR396f predicted to be involved in multiple defense responses to D. zeae were identified with RNA sequencing. A total of 79 differentially expressed miRNAs were detected under the criterion of normalized reads ≥10, including 51 known and 28 novel miRNAs. Degradome sequencing identified 799 targets predicted to be cleaved by 168 identified miRNAs. Among them, 29 differentially expressed miRNA and target pairs including miRNA396f- OsGRFs were identified by co-expression analysis. Overexpression of the osa-miR396f precursor in a susceptible rice variety showed enhanced resistance to D. zeae , coupled with significant accumulation of transcripts of osa-miR396f and reduction of its target the Growth - Regulating Factors ( OsGRFs ). Taken together, these findings suggest that miRNA and targets including miR396f- OsGRFs have a role in resisting the infections by bacteria D. zeae .
机译:由病原菌Dickeya zeae(以前称为Erwinia chrysanthemi pv。zeae)引起的水稻足腐病是在中国和亚洲东南部一种新出现的破坏性细菌病,导致单产和谷物品质下降。然而,由miRNA介导的对D的遗传抗性机制。水稻中的玉米缺乏。在本研究中,通过RNA测序鉴定了652个包括osa-miR396f在内的miRNA,这些miRNA预计参与了对D. zeae的多重防御反应。在标准化读数≥10的标准下共检测到79个差异表达的miRNA,包括51个已知miRNA和28个新颖miRNA。降解组测序确定了799个预期被168个已鉴定的miRNA切割的靶标。其中,通过共表达分析鉴定了29个差异表达的miRNA和包括miRNA396f-OsGRF在内的靶标对。 osa-miR396f前体在易感水稻品种中的过表达显示了对D. zeae的增强抗性,以及osa-miR396f转录本的大量积累和其靶标生长调节因子(OsGRFs)的降低。综上所述,这些发现表明,miRNA和包括miR396f-OsGRF在内的靶标在抵抗细菌D.zeae的感染中具有作用。

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