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SlIAA23-SlARF6模块通过调控番茄中独脚金内酯的生物合成来控制丛枝菌根共生。

SlIAA23-SlARF6 module controls arbuscular mycorrhizal symbiosis by regulating strigolactone biosynthesis in tomato.

作者信息

Li Lan, Liu Qianying, Ge Shibei, Tang Mingjia, He Liqun, Zou Yuwen, Yu Jingquan, Zhou Yanhong

机构信息

Department of Horticulture, Zijingang Campus, Zhejiang University, Hangzhou, China.

Hainan Institute, Zhejiang University, Sanya, China.

出版信息

Plant Cell Environ. 2023 Jun;46(6):1921-1934. doi: 10.1111/pce.14580. Epub 2023 Mar 20.

Abstract

Auxins are a class of phytohormones with roles involved in the establishment and maintenance of the arbuscular mycorrhizal symbiosis (AMS). Auxin response factors (ARFs) and Auxin/Indole-acetic acids (AUX/IAAs), as two transcription factors of the auxin signaling pathway, coregulate the transcription of auxin response genes. However, the interrelation and regulatory mechanism of ARFs and AUX/IAAs in regulating AMS are still unclear. In this study, we found that the content of auxin in tomato roots increased sharply and revealed the importance of the auxin signaling pathway in the early stage of AMS. Notably, SlARF6 was found to play a negative role in AMF colonization. Silencing SlARF6 significantly increased the expression of AM-marker genes, as well as AMF-induced phosphorus uptake. SlIAA23 could interact with SlARF6 in vivo and in vitro, and promoted the AMS and phosphorus uptake. Interestingly, SlARF6 and SlIAA23 played a contrary role in strigolactone (SL) synthesis and accumulation in AMF-colonized roots of tomato plants. SlARF6 could directly bind to the AuxRE motif of the SlCCD8 promoter and inhibited its transcription, however, this effect was attenuated by SlIAA23 through interaction with SlARF6. Our results suggest that SlIAA23-SlARF6 coregulated tomato-AMS via an SL-dependent pathway, thus affecting phosphorus uptake in tomato plants.

摘要

生长素是一类植物激素,在丛枝菌根共生(AMS)的建立和维持过程中发挥作用。生长素响应因子(ARFs)和生长素/吲哚-3-乙酸(AUX/IAAs)作为生长素信号通路的两个转录因子,共同调控生长素响应基因的转录。然而,ARFs和AUX/IAAs在调控AMS中的相互关系和调控机制仍不清楚。在本研究中,我们发现番茄根中生长素含量急剧增加,并揭示了生长素信号通路在AMS早期的重要性。值得注意的是,发现SlARF6在丛枝菌根真菌(AMF)定殖中起负作用。沉默SlARF6显著增加了AM标记基因的表达以及AMF诱导的磷吸收。SlIAA23在体内和体外均可与SlARF6相互作用,并促进AMS和磷吸收。有趣的是,SlARF6和SlIAA23在番茄植株AMF定殖根中独脚金内酯(SL)的合成和积累中发挥相反作用。SlARF6可直接结合SlCCD8启动子的AuxRE基序并抑制其转录,然而,SlIAA23通过与SlARF6相互作用减弱了这种效应。我们的结果表明,SlIAA23-SlARF6通过依赖SL的途径共同调控番茄-AMS,从而影响番茄植株的磷吸收。

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