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水稻根蜿蜒卷曲基因的RNA干扰敲低导致根系发育改变和卷曲,这是由茉莉酸信号在水稻中介导的。

RNAi knockdown of Oryza sativa root meander curling gene led to altered root development and coiling which were mediated by jasmonic acid signalling in rice.

作者信息

Jiang Jiafu, Li Junhua, Xu Yunyuan, Han Ye, Bai Yue, Zhou Guoxin, Lou Yonggen, Xu Zhihong, Chong Kang

机构信息

Research Center for Molecular Developmental Biology, Key Laboratory of Photosynthesis and Environmental Molecular Physiology, Institute of Botany, and Graduate School of the Chinese Academy of Sciences, Beijing, China.

出版信息

Plant Cell Environ. 2007 Jun;30(6):690-9. doi: 10.1111/j.1365-3040.2007.01663.x.

Abstract

Jasmonic acid (JA) is a well-known defence hormone, but its biological function and mechanism in rice root development are less understood. Here, we describe a JA-induced putative receptor-like protein (OsRLK, AAL87185) functioning in root development in rice. RNA in situ hybridization revealed that the gene was expressed largely in roots, and a fusion protein showed its localization on the plasma membrane. The primary roots in RNAi transgenic rice plants meandered and curled more easily than wild-type (WT) roots under JA treatment. Thus, this gene was renamed Oryza sativa root meander curling (OsRMC). The transgenic primary roots were shorter, the number of adventitious roots increased and the number of lateral roots decreased as compared to the WT. As well, the second sheath was reduced in length. Growth of both primary roots and second sheaths was sensitive to JA treatment. No significant change of JA level appeared in the roots between the transgenic rice line and WT. Expression of RSOsPR10, involved in the JA signalling pathway, was induced in transgenic rice. Western blotting revealed OsRMC induced by JA. Our results suggest that OsRMC of the DUF26 subfamily involved in JA signal transduction mediates root development and negatively regulates root curling in rice.

摘要

茉莉酸(JA)是一种著名的防御激素,但其在水稻根系发育中的生物学功能和机制尚不清楚。在此,我们描述了一种JA诱导的假定受体样蛋白(OsRLK,AAL87185)在水稻根系发育中发挥作用。RNA原位杂交显示该基因主要在根中表达,融合蛋白显示其定位于质膜上。在JA处理下,RNA干扰转基因水稻植株的初生根比野生型(WT)根更容易蜿蜒和卷曲。因此,该基因被重新命名为水稻根蜿蜒卷曲(OsRMC)。与WT相比,转基因初生根较短,不定根数量增加,侧根数量减少。此外,第二叶鞘长度缩短。初生根和第二叶鞘的生长对JA处理敏感。转基因水稻品系和WT之间根中JA水平没有显著变化。参与JA信号通路的RSOsPR10在转基因水稻中被诱导表达。蛋白质免疫印迹显示OsRMC受JA诱导。我们的结果表明,参与JA信号转导的DUF26亚家族的OsRMC介导水稻根系发育并负向调节根卷曲。

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