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MicroRNAs in Metal Stress: Specific Roles or Secondary Responses?

机译:金属胁迫下的MicroRNA:特定作用还是第二反应?

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In plants, microRNAs (miRNAs) control various biological processes by negatively regulating the expression of complementary target genes, either (1) post-transcriptionally by cleavage or translational inhibition of target mRNA, or (2) transcriptionally by methylation of target DNA. Besides their role in developmental processes, miRNAs are main players in stress responses, including metal stress responses. Exposure of plants to excess metal concentrations disturbs the cellular redox balance and enhances ROS accumulation, eventually leading to oxidative damage or signaling. Plants modify their gene expression by the activity of miRNAs in response to metal toxicity to regulate (1) complexation of excess metals, (2) defense against oxidative stress and (3) signal transduction for controlling various biological responses. This review focuses on the biogenesis, working mechanisms and functioning of miRNAs in plants. In a final part, our current knowledge on the regulatory roles of miRNAs in plant metal stress responses is highlighted, and whether stress-regulated miRNAs have specific roles or are secondary consequences is discussed.
机译:在植物中,microRNA(miRNA)通过负调控互补靶基因的表达来控制各种生物学过程,该过程要么(1)通过切割或翻译抑制靶mRNA进行转录后,要么(2)通过靶DNA的甲基化进行转录。除了在发育过程中的作用外,miRNA还是应激反应(包括金属应激反应)的主要参与者。植物暴露于过量的金属浓度会干扰细胞氧化还原平衡并增强ROS的积累,最终导致氧化损伤或信号传导。植物通过响应金属毒性的miRNA活性来修饰其基因表达,从而调节(1)过量金属的络合,(2)抵御氧化应激的防御和(3)信号转导以控制各种生物反应。这篇综述着重于植物中miRNA的生物发生,工作机制和功能。在最后一部分中,重点介绍了我们目前对miRNA在植物金属胁迫响应中的调控作用的认识,并讨论了胁迫调控的miRNA是否具有特定作用或是继发性后果。

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