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由microRNA167表达增强引起的植物育性缺陷

Plant fertility defects induced by the enhanced expression of microRNA167.

作者信息

Ru Peng, Xu Lin, Ma Hong, Huang Hai

机构信息

National Laboratory of Plant Molecular Genetics, Shanghai Institute of Plant Physiology and Ecology, Shanghai Institute for Biological Sciences, 300 Fenglin Road, Shanghai 200032, China.

出版信息

Cell Res. 2006 May;16(5):457-65. doi: 10.1038/sj.cr.7310057.

Abstract

The plant hormone auxin plays a critical role in regulating plant growth and development. Recent advances have been made in the understanding of auxin response pathways, primarily by the characterization of auxin response mutants in Arabidopsis. In addition, microRNAs (miRNAs) have been shown to be critical regulators of genes important for normal plant development and physiology. However, little is known about possible interactions between miRNAs and hormonal signaling during normal development. Here we show that an Arabidopsis microRNA, miR167, which has a complementary sequence to a portion of the AUXIN RESPONSE FACTOR6 (ARF6) and ARF8 mRNAs, can cause transcript degradation for ARF8, but not for ARF6. We report phenotypic characterizations of 35S::MIR167b transgenic lines, and show that severe 35S::MIR167b transgenic lines had phenotypes similar to those of an arf6 arf8 double mutant. The transgenic phenotypes suggest that miR167 may repress ARF6 at the level of translation. We demonstrate that the transgenic plants are defective in all four whorls of floral organs. In the transgenic flowers, filaments were abnormally short, anthers could not properly release pollen, and pollen grains did not germinate. Our results provide an important link between the miRNA-mediated regulatory pathway of gene expression and the auxin signaling network promoting plant reproductive development.

摘要

植物激素生长素在调节植物生长发育过程中发挥着关键作用。近年来,人们对生长素应答途径的理解取得了进展,主要是通过对拟南芥中生长素应答突变体的表征。此外,微小RNA(miRNA)已被证明是正常植物发育和生理过程中重要基因的关键调节因子。然而,在正常发育过程中,miRNA与激素信号之间可能存在的相互作用却鲜为人知。在此,我们表明一种拟南芥微小RNA——miR167,其与生长素应答因子6(ARF6)和ARF8的mRNA的一部分具有互补序列,能够导致ARF8的转录本降解,但不能导致ARF6的转录本降解。我们报告了35S::MIR167b转基因系的表型特征,并表明严重的35S::MIR167b转基因系具有与arf6 arf8双突变体相似的表型。转基因表型表明miR167可能在翻译水平上抑制ARF6。我们证明转基因植物在花器官的所有四轮中都存在缺陷。在转基因花中,花丝异常短,花药不能正常释放花粉,并且花粉粒不能萌发。我们的结果在miRNA介导的基因表达调控途径与促进植物生殖发育的生长素信号网络之间提供了重要联系。

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