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首页> 外文期刊>The Plant Cell >Cleavage of INDOLE-3-ACETIC ACID INDUCIBLE28 mRNA by MicroRNA847 Upregulates Auxin Signaling to Modulate Cell Proliferation and Lateral Organ Growth in Arabidopsis
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Cleavage of INDOLE-3-ACETIC ACID INDUCIBLE28 mRNA by MicroRNA847 Upregulates Auxin Signaling to Modulate Cell Proliferation and Lateral Organ Growth in Arabidopsis

机译:MicroRNA847对吲哚-3-乙酸INDUCICBLE28 mRNA的切割上调了生长素信号转导来调节拟南芥中细胞的增殖和侧向器官的生长

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MicroRNAs function in a range of developmental processes. Here, we demonstrate that miR847 targets the mRNA of the auxin/indole acetic acid (Aux/IAA) repressor-encoding gene IAA28 for cleavage. The rapidly increased accumulation of miR847 in Arabidopsis thaliana coincided with reduced IAA28 mRNA levels upon auxin treatment. This induction of miR847 by auxin was abolished in auxin receptor tir1-1 and auxin-resistant axr1-3 mutants. Further analysis demonstrates that miR847 functions as a positive regulator of auxin-mediated lateral organ development by cleaving IAA28 mRNA. Importantly, the ectopic expression of miR847 increases the expression of cell cycle genes as well as the neoplastic activity of leaf cells, prolonging later-stage rosette leaf growth and producing leaves with serrated margins. Moreover, both miR847 and IAA28 mRNAs are specifically expressed in marginal meristems of rosette leaves and lateral root initiation sites. Our data indicate that auxin-dependent induction of miR847 positively regulates meristematic competence by clearing IAA28 mRNA to upregulate auxin signaling, thereby determining the duration of cell proliferation and lateral organ growth in Arabidopsis. IAA28 mRNA encodes an Aux/IAA repressor protein, which is degraded through the proteasome in response to auxin. Altered signal sensitization to IAA28 mRNA levels, together with targeted IAA28 degradation, ensures a robust signal derepression.
机译:MicroRNA在一系列发育过程中起作用。在这里,我们证明了miR847靶向生长素/吲哚乙酸(Aux / IAA)阻遏物编码基因IAA28的mRNA进行切割。生长素处理后拟南芥中miR847积累的迅速增加与IAA28 mRNA水平的降低相吻合。在植物生长素受体tir1-1和植物生长素抗性的axr1-3突变体中,植物生长素对miR847的诱导被消除。进一步的分析表明,miR847通过切割IAA28 mRNA充当生长素介导的侧向器官发育的正调节剂。重要的是,miR847的异位表达增加了细胞周期基因的表达以及叶细胞的赘生物活性,从而延长了后期玫瑰花结叶的生长,并产生了锯齿状边缘。此外,miR847和IAA28 mRNA均在莲座叶的边缘分生组织和侧根起始位点中特异性表达。我们的数据表明,miR847的生长素依赖性诱导通过清除IAA28 mRNA来上调生长素信号传导,从而积极调节分生能力,从而确定拟南芥中细胞增殖和侧向器官生长的持续时间。 IAA28 mRNA编码Aux / IAA阻遏蛋白,该蛋白可通过蛋白酶体响应生长素而降解。对IAA28 mRNA水平改变的信号敏化以及靶向的IAA28降解,可确保强大的信号抑制能力。

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