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首页> 外文期刊>The New Phytologist >Identification of a novel microRNA (miRNA) from rice that targets an alternatively spliced transcript of the Nramp6 (Natural resistance-associated macrophage protein 6) gene involved in pathogen resistance
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Identification of a novel microRNA (miRNA) from rice that targets an alternatively spliced transcript of the Nramp6 (Natural resistance-associated macrophage protein 6) gene involved in pathogen resistance

机译:从水稻中鉴定一种新的微小RNA(miRNA),其靶向与病原体抗性有关的Nramp6(与自然抗性相关的巨噬细胞蛋白6)基因的选择性剪接转录本

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Plants have evolved efficient defence mechanisms to defend themselves from pathogen attack. Although many studies have focused on the transcriptional regulation of defence responses, less is known about the involvement of microRNAs (miRNAs) as post-transcrip-tional regulators of gene expression in plant immunity. This work investigates miRNAs that are regulated by elicitors from the blast fungus Magnaporthe oryzae in rice (Oryza sativa). Small RNA libraries were constructed from rice tissues and subjected to high-throughput sequencing for the identification of elicitor-responsive miRNAs. Target gene expression was examined by microarray analysis. Transgenic lines were used for the analysis of miRNA functioning in disease resistance. Elicitor treatment is accompanied by dynamic alterations in the expression of a significant number of miRNAs, including new members of annotated miRNAs. Novel miRNAs from rice are proposed. We report a new rice miRNA, osa-miR7695, which negatively regulates an alternatively spliced transcript of OsNramp6 (Natural resistance-associated macrophage protein 6). This novel miRNA experienced natural and domestication selection events during evolution, and its overexpression in rice confers pathogen resistance. This study highlights an miRNA-mediated regulation of OsNrampG in disease resistance, whilst illustrating the existence of a novel regulatory network that integrates miRNA function and mRNA processing in plant immunity.
机译:植物已经进化出有效的防御机制来防御病原体的侵袭。尽管许多研究都集中在防御反应的转录调控上,但对于microRNA(miRNA)作为植物免疫力中基因表达的转录后调控因子的参与知之甚少。这项工作研究了稻米中稻瘟病菌稻瘟病菌(Magnaporthe oryzae)激发子调控的miRNA。从水稻组织构建小RNA文库,并进行高通量测序,以鉴定激发子响应性miRNA。通过微阵列分析检查靶基因表达。转基因品系用于分析抗病性中的miRNA。引发剂治疗伴随着大量miRNA(包括带注释的miRNA的新成员)表达的动态变化。提出了来自水稻的新型miRNA。我们报告了一个新的水稻miRNA,osa-miR7695,它负调控OsNramp6(天然抗性相关的巨噬细胞蛋白6)的选择性剪接的转录本。这种新颖的miRNA在进化过程中经历了自然和驯化的选择事件,其在水稻中的过表达赋予病原体抗性。这项研究强调了抗病性中OsNrampG的miRNA介导调节,同时说明了将miRNA功能和mRNA加工整合到植物免疫中的新型调节网络的存在。

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