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研究揭示NLP1 SUMO化修饰调控硝酸盐信号转导和共生结瘤新机制
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《中国科技信息》 2026年第8期4-4,共1页
硝酸盐是植物吸收利用的主要氮源,也是调控植物生长发育的重要信号分子。豆科植物不仅能吸收土壤中的氮素,还可通过与根瘤菌共生固氮获取氮营养。但是,共生固氮需要耗费大量植物能量,当土壤氮素较高时,氮会作为信号分子影响共生固氮基... 硝酸盐是植物吸收利用的主要氮源,也是调控植物生长发育的重要信号分子。豆科植物不仅能吸收土壤中的氮素,还可通过与根瘤菌共生固氮获取氮营养。但是,共生固氮需要耗费大量植物能量,当土壤氮素较高时,氮会作为信号分子影响共生固氮基因的功能,从而抑制根瘤的形成及固氮能力。 展开更多
关键词 nlp1 SUMO化修饰 硝酸盐信号转导
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NLP1 reciprocally regulates nitrate inhibition of nodulation through SUNN-CRA2 signaling in Medicago truncatula 被引量:7
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作者 Zhenpeng Luo Jie-shun Lin +3 位作者 Yali Zhu Mengdi Fu Xiaolin Li Fang Xie 《Plant Communications》 2021年第3期117-129,共13页
Most legume plants can associate with diazotrophic soil bacteria called rhizobia,resulting in new root organs called nodules that enable N2 fixation.Nodulation is an energy-consuming process,and nodule number is tight... Most legume plants can associate with diazotrophic soil bacteria called rhizobia,resulting in new root organs called nodules that enable N2 fixation.Nodulation is an energy-consuming process,and nodule number is tightly regulated by independent systemic signaling pathways controlled by CLE/SUNN and CEP/CRA2.Moreover,nitrate inhibits legume nodulation via local and systemic regulatory pathways.In Medicago truncatula,NLP1 plays important roles in nitrate-induced inhibition of nodulation,but the relationship between systemic and local pathways in mediating nodulation inhibition by nitrate is poorly understood.In this study,we found that nitrate induces CLE35 expression in an NLP1-dependent manner and that NLP1 binds directly to the CLE35 promoter to activate its expression.Grafting experiments revealed that the systemic control of nodule number involves negative regulation by SUNN and positive regulation by CRA2 in the shoot,and that NLP1’s control of the inhibition of rhizobial infection,nodule development,and nitrogenase activity in response to nitrate is determined by the root.Unexpectedly,grafting experiments showed that loss of CRA2 in the root increases nodule number at inhibitory nitrate levels,probably because of CEP1/2 upregulation in the cra2 mutants,suggesting that CRA2 exerts active negative feedback regulation in the root. 展开更多
关键词 CRA2 CEP CLE nitrate inhibition of nodulation nlp1 SUNN
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