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Overexpression of microRNA395c or 395e affects differently the seed germination of Arabidopsis thaliana under stress conditions

机译:microRNA395c或395e的过表达在胁迫条件下对拟南芥种子萌发的影响不同

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The Arabidopsis genome encodes six members of microRNA395 (miR395) family previously determined to regulate the expression of ATP sulfurylase (APS) and the sulfate transporter SULTR2;1. However, the mRNA targets for the individual miR395 family members and the biological consequences produced by target gene regulation of each miR395 remain to be identified. In this study, a transgenic approach was employed to determine the mRNA targets for each miR395 family member as well as the role each member plays in plant growth under abiotic stress conditions. Overexpression of miR395c or miR395e retarded and accelerated, respectively, the seed germination of Arabidopsis under high salt or dehydration stress conditions. Despite a single nucleotide difference between miR395c and miR395e, the cleavage of mRNA targets, APS1, APS3, APS4 and SULTR2;1, was not same in miR395c- and miR395e-overexpressing plants. These results demonstrate that a given miRNA family containing a single nucleotide difference can guide the cleavage of various mRNA targets, thereby acting as a positive or negative regulator of seed germination under stress.
机译:拟南芥基因组编码microRNA395(miR395)家族的六个成员,该家族先前已确定可调节ATP硫酸化酶(APS)和硫酸盐转运蛋白SULTR2; 1的表达。但是,单个miR395家族成员的mRNA靶标以及每个miR395靶基因调控产生的生物学后果仍有待确定。在这项研究中,采用转基因方法来确定每个miR395家族成员的mRNA靶标以及每个成员在非生物胁迫条件下在植物生长中发挥的作用。在高盐或脱水胁迫条件下,miR395c或miR395e的过表达分别抑制和促进拟南芥种子的萌发。尽管miR395c和miR395e之间只有一个核苷酸差异,但在过表达miR395c和miR395e的植物中对mRNA靶标APS1,APS3,APS4和SULTR2; 1的切割并不相同。这些结果表明,给定的包含单个核苷酸差异的miRNA家族可以指导各种mRNA靶标的切割,从而在胁迫下充当种子萌发的正或负调节剂。

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