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The Role of Micro-Ribonucleic Acids in Legumes with a Focus on Abiotic Stress Response

机译:微核糖核酸在豆类中的作用,重点是非生物胁迫响应

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Legumes are special group of N-fixing plants that are an essential component of cropping system and important source of food and feed for human and animal consumption. Like other crops, the productivity of legumes is threatened by environmental stresses caused due to global climate change. Abiotic stress tolerance is complex trait involving a suite of genes, the expression of which is controlled by transcription factors including gene and/or polypeptide sequences. Recently, micro-ribonucleic acids (miRNAs) have been increasingly recognized for their role in regulating the synthesis of polypeptides from different messenger ribonucleic acids (mRNAs) including those that act as transcription factors. This review summarizes the current knowledge on the role of different miRNAs in response to main abiotic stresses in legumes. We found consistent as well as conflicting results within and between different legume species. This highlights that we have barely scratched the surface and very comprehensive and targeted experiments will be required in future to underpin the role of miRNAs in controlling the expression of important genes associated with abiotic stress tolerances.
机译:豆科植物是固氮植物的特殊类别,是作物系统的重要组成部分,也是人类和动物食用的重要食物和饲料来源。像其他农作物一样,豆类的生产力也受到全球气候变化造成的环境压力的威胁。非生物胁迫耐受性是涉及一组基因的复杂性状,其表达受包括基因和/或多肽序列的转录因子控制。近年来,由于微核糖核酸(miRNA)在调节来自不同信使核糖核酸(mRNA)的多肽合成中的作用,这些微核糖核酸(包括充当转录因子的那些)已得到越来越多的认可。这篇综述总结了当前有关豆类中主要非生物胁迫对不同miRNA的作用的认识。我们发现不同豆类物种内部和之间的结果一致且矛盾。这凸显了我们勉强摸索表面,将来需要进行非常全面且有针对性的实验,以巩固miRNA在控制与非生物胁迫耐受性相关的重要基因表达中的作用。

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