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Perspectives on microRNAs and Phased Small Interfering RNAs in Maize ( Zea mays L.): Functions and Big Impact on Agronomic Traits Enhancement

机译:玉米(玉米(Zea mays L.)中的microRNA和阶段性小干扰RNA的观点:功能和对农艺性状增强的巨大影响

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Small RNA (sRNA) population in plants comprises of primarily micro RNAs (miRNAs) and small interfering RNAs (siRNAs). MiRNAs play important roles in plant growth and development. The miRNA-derived secondary siRNAs are usually known as phased siRNAs, including phasiRNAs and tasiRNAs. The miRNA and phased siRNA biogenesis mechanisms are highly conserved in plants. However, their functional conservation and diversification may differ in maize. In the past two decades, lots of miRNAs and phased siRNAs have been functionally identified for curbing important maize agronomic traits, such as those related to developmental timing, plant architecture, sex determination, reproductive development, leaf morphogenesis, root development and nutrition, kernel development and tolerance to abiotic stresses. In contrast to Arabidopsis and rice, studies on maize miRNA and phased siRNA biogenesis and functions are limited, which restricts the small RNA-based fundamental and applied studies in maize. This review updates the current status of maize miRNA and phased siRNA mechanisms and provides a survey of our knowledge on miRNA and phased siRNA functions in controlling agronomic traits. Furthermore, improvement of those traits through manipulating the expression of sRNAs or their targets is discussed.
机译:植物中的小RNA(sRNA)种群主要包括微小RNA(miRNA)和小干扰RNA(siRNA)。 MiRNA在植物生长和发育中起重要作用。 miRNA衍生的次级siRNA通常称为分阶段siRNA,包括phasiRNA和tasiRNA。 miRNA和分阶段的siRNA生物发生机制在植物中高度保守。但是,它们在玉米中的功能保护和多样化可能有所不同。在过去的二十年中,已经在功能上鉴定了许多miRNA和分阶段的siRNA,以抑制重要的玉米农艺性状,例如与发育时间,植物结构,性别决定,生殖发育,叶片形态发生,根发育和营养,籽粒发育有关的那些。和对非生物胁迫的耐受性。与拟南芥和水稻相反,对玉米miRNA和分阶段的siRNA生物发生和功能的研究是有限的,这限制了基于小RNA的玉米基础和应用研究。这项审查更新了玉米miRNA和分阶段的siRNA机制的当前状态,并提供了我们对miRNA和分阶段的siRNA在控制农艺性状中功能的认识。此外,讨论了通过操纵sRNA或其靶标的表达来改善这些性状。

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