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向光素1以依赖于根向光性2的方式介导突变体植物中高强度蓝光诱导的叶绿体积累反应。

Phototropin 1 Mediates High-Intensity Blue Light-Induced Chloroplast Accumulation Response in a Root Phototropism 2-Dependent Manner in Mutant Plants.

作者信息

Wang Jing, Liang Yu-Ping, Zhu Jin-Dong, Wang Yu-Xi, Yang Meng-Ya, Yan Hong-Ru, Lv Qian-Yi, Cheng Kai, Zhao Xiang, Zhang Xiao

机构信息

State Key Laboratory of Crop Stress Adaptation and Improvement, State Key Laboratory of Cotton Biology, School of Life Sciences, Henan University, Kaifeng, China.

出版信息

Front Plant Sci. 2021 Sep 27;12:704618. doi: 10.3389/fpls.2021.704618. eCollection 2021.

Abstract

Phototropins, namely, phototropin 1 (phot1) and phototropin 2 (phot2), mediate chloroplast movement to maximize photosynthetic efficiency and prevent photodamage in plants. Phot1 primarily functions in chloroplast accumulation process, whereas phot2 mediates both chloroplast avoidance and accumulation responses. The avoidance response of phot2-mediated chloroplasts under high-intensity blue light (HBL) limited the understanding of the function of phot1 in the chloroplast accumulation process at the HBL condition. In this study, we showed that the phot2 mutant exhibits a chloroplast accumulation response under HBL, which is defective when the root phototropism 2 (RPT2) gene is mutated in the phot2 background, mimicking the phenotype of the phot1 phot2 double mutant. A further analysis revealed that the expression of RPT2 was induced by HBL and the overexpression of RPT2 could partially enhance the chloroplast accumulation response under HBL. These results confirmed that RPT2 also participates in regulating the phot1-mediated chloroplast accumulation response under HBL. In contrast, RPT2 functions redundantly with neural retina leucine zipper (NRL) protein for chloroplast movement 1 (NCH1) under low-light irradiation. In addition, no chloroplast accumulation response was detected in the double mutant under HBL, which has been previously observed in and double mutants. Taken together, our results indicated that phot1 mediates the HBL-induced chloroplast accumulation response in an RPT2-dependent manner and is also regulated by j-domain protein required for chloroplast accumulation response 1 (JAC1).

摘要

向光素,即向光素1(phot1)和向光素2(phot2),介导叶绿体运动,以最大化植物的光合效率并防止光损伤。Phot1主要在叶绿体积累过程中发挥作用,而Phot2介导叶绿体的回避和积累反应。在高强度蓝光(HBL)下,Phot2介导的叶绿体回避反应限制了人们对Phot1在HBL条件下叶绿体积累过程中功能的理解。在本研究中,我们发现Phot2突变体在HBL下表现出叶绿体积累反应,当在Phot2背景中根向光性2(RPT2)基因发生突变时,该反应存在缺陷,这与Phot1 Phot2双突变体的表型相似。进一步分析表明,RPT2的表达受HBL诱导,RPT2的过表达可部分增强HBL下的叶绿体积累反应。这些结果证实,RPT2也参与调节HBL下Phot1介导的叶绿体积累反应。相比之下,在低光照下,RPT2与神经视网膜亮氨酸拉链(NRL)蛋白在叶绿体运动1(NCH1)方面功能冗余。此外,在HBL下,该双突变体未检测到叶绿体积累反应,此前在 和 双突变体中也观察到了这一现象。综上所述,我们的结果表明,Phot1以RPT2依赖的方式介导HBL诱导的叶绿体积累反应,并且还受叶绿体积累反应1所需的j结构域蛋白(JAC1)的调节。

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