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IPN2对百脉根根瘤共生中NIN表达的转录调控是必需的。

Transcriptional regulation of NIN expression by IPN2 is required for root nodule symbiosis in Lotus japonicus.

作者信息

Xiao Aifang, Yu Haixiang, Fan Yuqian, Kang Heng, Ren Yaping, Huang Xiaoqin, Gao Xiumei, Wang Chao, Zhang Zhongming, Zhu Hui, Cao Yangrong

机构信息

State Key Laboratory of Agricultural Microbiology and College of Life Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China.

出版信息

New Phytol. 2020 Jul;227(2):513-528. doi: 10.1111/nph.16553. Epub 2020 May 20.

Abstract

Expression of Nodule Inception (NIN) is essential for initiation of legume-rhizobial symbiosis. An existing model regarding the regulation of NIN expression involves two GRAS transcription factors - NSP1 (Nodulation Signaling Pathway 1) and NSP2. NSP2 forms a complex with NSP1 to directly bind to NIN promoter. However, rhizobial treatment-induced NIN expression could still be detected in the nsp1 mutant plants, suggesting that other proteins must be involved in the regulation of NIN expression. A combination of molecular, biochemical and genetic analyses was used to investigate the molecular basis of IPN2 in regulating root development and NIN expression in Lotus japonicus. In this study, we identified that IPN2 is a close homolog of Arabidopsis APL (ALTERED PHLOEM DEVELOPMENT) with essential function in root development. However, Lotus IPN2 has a different expression pattern compared with the Arabidopsis APL gene. IPN2 binds to the IPN2-responsive cis element (IPN2-RE) of NIN promoter and activates NIN expression. IPN2, NSP1 and NSP2 form a protein complex to directly target NIN promoter and activate NIN expression in the legume-rhizobial symbiosis. Our data refine the regulatory model of NIN expression that NSP2 works together with NSP1 and IPN2 to activate the NIN gene allowing nodulation in L. japonicus.

摘要

结节起始(NIN)的表达对于豆科植物与根瘤菌共生的起始至关重要。关于NIN表达调控的现有模型涉及两种GRAS转录因子——NSP1(结瘤信号通路1)和NSP2。NSP2与NSP1形成复合物以直接结合到NIN启动子上。然而,在nsp1突变体植物中仍能检测到根瘤菌处理诱导的NIN表达,这表明其他蛋白质必定参与了NIN表达的调控。我们运用分子、生化和遗传学分析相结合的方法,研究了IPN2在调控百脉根根系发育和NIN表达中的分子基础。在本研究中,我们鉴定出IPN2是拟南芥APL(韧皮部发育改变)的紧密同源物,在根系发育中具有重要功能。然而,与拟南芥APL基因相比,百脉根IPN2具有不同的表达模式。IPN2结合到NIN启动子的IPN2响应顺式元件(IPN2-RE)上并激活NIN表达。在豆科植物与根瘤菌共生过程中,IPN2、NSP1和NSP2形成蛋白质复合物直接靶向NIN启动子并激活NIN表达。我们的数据完善了NIN表达的调控模型,即NSP2与NSP1和IPN2共同作用激活NIN基因,从而使百脉根能够结瘤。

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