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Non-coding RNAs and plant male sterility: current knowledge and future prospects

机译:非编码RNA和植物雄性不育:当前的知识和未来的前景

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摘要

Male sterility in plants offers great opportunity for improving crop performance through application of hybrid technology. In this respect, cytoplasmic male sterility (CMS) and sterility induced by photoperiod (PGMS)/temperature (TGMS) have greatly facilitated development of high-yielding hybrids in crops. Participation of non-coding (nc) RNA molecules in plant reproductive development is increasingly becoming evident. Recent breakthroughs in rice definitively associate ncRNAs with PGMS and TGMS. In case of CMS, the exact mechanism through which the mitochondrial ORFs exert influence on the development of male gametophyte remains obscure in several crops. High-throughput sequencing has enabled genome-wide discovery and validation of these regulatory molecules and their target genes, describing their potential roles performed in relation to CMS. Discovery of ncRNA localized in plant mtDNA with its possible implication in CMS induction is intriguing in this respect. Still, conclusive evidences linking ncRNA with CMS phenotypes are currently unavailable, demanding complementing genetic approaches like transgenics to substantiate the preliminary findings. Here, we review the recent literature on the contribution of ncRNAs in conferring male sterility to plants, with an emphasis on microRNAs. Also, we present a perspective on improved understanding about ncRNA-mediated regulatory pathways that control male sterility in plants. A refined understanding of plant male sterility would strengthen crop hybrid industry to deliver hybrids with improved performance.
机译:植物中的雄性不育是通过应用混合技术来改善作物性能的绝佳机会。在这方面,通过光周期(PGM)/温度(TGMS)诱导的细胞质雄性不育(CMS)和无菌(TGMS)在作物中大大促进了高产杂种的发育。非编码(NC)RNA分子在植物生殖发展中的参与日益明显。水稻中最近的突破明确地将NCRNA与PGM和TGMS相关联。在CMS的情况下,线粒体ORFS对雄性配子体发育影响的确切机制仍然模糊不清。高通量测序使这些调节分子及其靶基因的基因组发现和验证,描述了它们与CMS相关的潜在作用。在CMS诱导中发现植物MTDNA的NCRNA发现是诱导的诱导在这方面是有趣的。尽管如此,与CMS表型链接NCRNA的结论证据目前是不可用的,要求补充遗传方法,如转基因,以证实初步调查结果。在这里,我们审查了最近关于NCRNA在赋予植物雄性不育的贡献的文献,重点是微大罗纳斯。此外,我们展示了改善对NCRNA介导的监管途径的理解,该术治疗植物中雄性不育的疾病。对植物雄性不育的精致了解将加强作物混合行业,以提高性能提供杂种。

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