首页> 外文期刊>The Plant Cell >IAA-Ala Resistant3, an evolutionarily conserved target of miR167, mediates Arabidopsis root architecture changes during high osmotic stress.
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IAA-Ala Resistant3, an evolutionarily conserved target of miR167, mediates Arabidopsis root architecture changes during high osmotic stress.

机译:IAA-Ala Resistantant3是miR167的进化保守靶标,可介导拟南芥在高渗透胁迫下根系结构的变化。

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摘要

The functions of microRNAs and their target mRNAs in Arabidopsis thaliana development have been widely documented; however, roles of stress-responsive microRNAs and their targets are not as well understood. Using small RNA deep sequencing and ATH1 microarrays to profile mRNAs, we identified IAA-Ala Resistant3 (IAR3) as a new target of miR167a. As expected, IAR3 mRNA was cleaved at the miR167a complementary site and under high osmotic stress miR167a levels decreased, whereas IAR3 mRNA levels increased. IAR3 hydrolyzes an inactive form of auxin (indole-3-acetic acid [IAA]-alanine) and releases bioactive auxin (IAA), a central phytohormone for root development. In contrast with the wild type, iar3 mutants accumulated reduced IAA levels and did not display high osmotic stress-induced root architecture changes. Transgenic plants expressing a cleavage-resistant form of IAR3 mRNA accumulated high levels of IAR3 mRNAs and showed increased lateral root development compared with transgenic plants expressing wild-type IAR3. Expression of an inducible noncoding RNA to sequester miR167a by target mimicry led to an increase in IAR3 mRNA levels, further confirming the inverse relationship between the two partners. Sequence comparison revealed the miR167 target site on IAR3 mRNA is conserved in evolutionarily distant plant species. Finally, we showed that IAR3 is required for drought tolerance.
机译:microRNA及其靶mRNA在拟南芥发育中的功能已得到广泛的文献报道。然而,人们对应激反应性microRNA及其靶标的作用还不甚了解。使用小RNA深度测序和ATH1微阵列分析mRNA,我们确定了IAA-Ala Resistant3(IAR3)作为miR167a的新靶标。如预期的那样,IAR3 mRNA在miR167a互补位点被切割,在高渗透压下miR167a水平降低,而IAR3 mRNA水平升高。 IAR3水解非活性形式的生长素(吲哚-3-乙酸[IAA]-丙氨酸)并释放出生物活性生长素(IAA),后者是根部发育的主要植物激素。与野生型相反,iar3突变体积累的IAA水平降低,并且没有表现出高渗透压诱导的根系结构变化。与表达野生型IAR3的转基因植物相比,表达抗裂解形式的IAR3 mRNA的转基因植物积累了高水平的IAR3 mRNA,并显示出侧根发育增加。靶标拟态将可诱导的非编码RNA表达到螯合miR167a导致IAR3 mRNA水平增加,进一步证实了两个伴侣之间的反向关系。序列比较显示,IAR3 mRNA上的miR167靶位点在进化距离遥远的植物物种中是保守的。最后,我们表明IAR3是抗旱性所必需的。

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