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首页> 外文期刊>Photochemistry and Photobiology >Blue Light-induced Chloroplast Avoidance and Phototropic Responses Exhibit Distinct Dose Dependency of PHOTOTROPIN2 in Arabidopsis thaliana
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Blue Light-induced Chloroplast Avoidance and Phototropic Responses Exhibit Distinct Dose Dependency of PHOTOTROPIN2 in Arabidopsis thaliana

机译:蓝光诱导的叶绿体回避和趋光性反应显示拟南芥PHOTOTROPIN2的不同剂量依赖性。

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摘要

PHOTOTROPIN2 (PHOT2) is a unique photoreceptor involved in chloroplast avoidance movement and also regulates blue light (BL) responses, such as phototropism and leaf flattening, together with PHOTOTROPIN1 (PHOT1) m Arabidopsis thaliana. Previous work showed that the defect of the phot2-1 mutant in chloroplast avoidance movement was a semidominant trait. In the present study, we examined PHOT2 dose dependency of BL responses using the phot1-5 phot2-1 double mutant expressing an AtPHOT2-GFP (P2G) fusion protein. Chloroplast avoidance and phototropic responses of P2G transgenic lines were enhanced in a manner dependent on the P2G levels, whereas the leaf flattening phenotype was simply complemented by P2G equivalent to the wild type (WT) PHOT2 level. The chloroplast avoidance velocity of P2G transgenic lines exhibited enhanced sensitivity to BL in comparison with WT. In contrast, the defect of the phototropic response was rescued by P2G expression equivalent only to the response of the phot1 mutant. These results collectively indicate that each BL response has distinct threshold levels of PHOT2 requirement. [PUBLICATION ABSTRACT]
机译:PHOTOTROPIN2(PHOT2)是参与叶绿体回避运动的独特光感受器,还与拟南芥中的PHOTOTROPIN1(PHOT1)一起调节蓝光(BL)反应,例如向光性和叶片变平。先前的工作表明,phot2-1突变体在叶绿体回避运动中的缺陷是半显性特征。在本研究中,我们使用表达AtPHOT2-GFP(P2G)融合蛋白的phot1-5 phot2-1双突变体检查了BL反应的PHOT2剂量依赖性。 P2G转基因株系的叶绿体回避和趋光性反应以取决于P2G水平的方式增强,而叶片扁平化表型仅由相当于野生型(WT)PHOT2水平的P2G补充。与WT相比,P2G转基因品系的叶绿体回避速度表现出对BL的增强敏感性。相反,通过仅与phot1突变体的应答等效的P2G表达挽救了光致应答的缺陷。这些结果共同表明,每个BL响应均具有不同的PHOT2需求阈值水平。 [出版物摘要]

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    《Photochemistry and Photobiology》 |2009年第5期|p.1260-1264|共5页
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    Mitsuhiro Kimura[dagger] and Takatoshi Kagawa[double dagger],*Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba, JapanReceived 14 November 2008, accepted 4 March 2009, DOI: 10.1111/j.1751-1097.2009.00564.x[dagger] Current address: Mitsuhiro Kimura. Department of Cell and Systems Biology, University of Toronto, Toronto, Canada.[double dagger] Current address: Takatoshi Kagawa, National Institute of Agrobiological Sciences, Tsukuba, Ibaraki, Japan.* Corresponding author email: takagawa@affrc.go.jp (Takatoshi Kagawa)© 2009 The Authors. Journal Compilation. The American Society of Photobiology 0031-8655/09;

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