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The Function of miRNAs in Plants

机译:miRNA在植物中的功能

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摘要

MicroRNAs (miRNAs) are a class of small RNAs (sRNAs) that repress gene expression via high complementary binding sites in target mRNAs (messenger RNAs). Many miRNAs are ancient, and their intricate integration into gene expression programs have been fundamental for plant life, controlling developmental programs and executing responses to biotic/abiotic cues. Additionally, there are many less conserved miRNAs in each plant species, raising the possibility that the functional impact of miRNAs extends into virtually every aspect of plant biology. This Special Issue of presents papers that investigate the function and mechanism of miRNAs in controlling development and abiotic stress response. This includes how miRNAs adapt plants to nutrient availability, and the silencing machinery that is responsible for this. Several papers profile changes in miRNA abundances during stress, and another study raises the possibility of circular RNAs acting as endogenous decoys to sequester and inhibit plant miRNA function. These papers act as foundational studies for the more difficult task ahead of determining the functional significance of these changes to miRNA abundances, or the presence of these circular RNAs. Finally, how miRNAs trigger the production of secondary sRNAs is reviewed, along with the potential agricultural impact of miRNAs and these secondary sRNA in the exemplar crop maize.
机译:MicroRNA(miRNA)是一类小RNA(sRNA),它们通过靶mRNA(信使RNA)中的高互补结合位点抑制基因表达。许多miRNA都很古老,它们与基因表达程序的复杂整合对于植物生命,控制发育程序和执行对生物/非生物线索的反应至关重要。此外,每种植物物种中保守的miRNA数量少得多,这增加了miRNA的功能影响几乎延伸到植物生物学各个方面的可能性。本期特刊提供研究miRNA在控制发育和非生物应激反应中的功能和机制的论文。这包括miRNA如何使植物适应养分的供应,以及造成这种情况的沉默机制。几篇论文描述了胁迫期间miRNA丰度的变化,另一项研究提出了环状RNA作为内源诱饵来隔离和抑制植物miRNA功能的可能性。在确定这些变化对miRNA丰度的功能意义或这些环状RNA的存在之前,这些论文将作为更艰巨任务的基础研究。最后,对miRNA如何触发次生sRNA的产生进行了综述,并探讨了miRNA和这些次生sRNA在典型农作物玉米中的潜在农业影响。

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