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拟南芥基因中的突变导致叶片网状化。

Mutations in the Arabidopsis // Gene Cause Leaf Reticulation.

作者信息

Liang Shuang, Qi Yafei, Zhao Jun, Li Yuanfeng, Wang Rui, Shao Jingxia, Liu Xiayan, An Lijun, Yu Fei

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas and College of Life Sciences, Northwest A&F University, Yangling, China.

出版信息

Front Plant Sci. 2017 Nov 27;8:2007. doi: 10.3389/fpls.2017.02007. eCollection 2017.

Abstract

In higher plants, the development of functional chloroplasts is essential for photosynthesis and many other physiological processes. With a long-term goal of elucidating the genetic regulation of chloroplast development, we identified two allelic leaf variegation mutants, () and . Both mutants showed a distinct leaf reticulation phenotype of yellow paraveinal regions and green interveinal regions, and the leaf reticulation phenotype correlated with photosynthetic defects. Through the identification of mutation sites in the two mutant alleles and the molecular complementation, we confirmed that encodes a CorA family of Mg transporters also known as AtMRS2-11/AtMGT10. Using protoplast transient expression and biochemical fractionation assays, we demonstrated that AtMRS2-11/AtMGT10/VAR5 likely localizes to the chloroplast envelope. Moreover, we established that AtMRS2-11/AtMGT10/VAR5 forms large molecular weight complexes in the chloroplast and the sizes of these complexes clearly exceed those of their bacterial counterparts, suggesting the compositions of CorA Mg transporter complex is different between the chloroplast and bacteria. Our findings indicate that AtMRS2-11/AtMGT10/VAR5 plays an important role in the tissue specific regulation of chloroplast development.

摘要

在高等植物中,功能性叶绿体的发育对于光合作用和许多其他生理过程至关重要。为了阐明叶绿体发育的遗传调控这一长期目标,我们鉴定了两个等位叶色斑驳突变体,()和。两个突变体均表现出明显的叶网状结构表型,即黄色叶脉旁区域和绿色叶脉间区域,且叶网状结构表型与光合缺陷相关。通过鉴定两个突变等位基因中的突变位点并进行分子互补,我们证实编码一种镁转运蛋白的CorA家族,也称为AtMRS2 - 11/AtMGT10。利用原生质体瞬时表达和生化分级分离试验,我们证明AtMRS2 - 11/AtMGT10/VAR5可能定位于叶绿体被膜。此外,我们确定AtMRS2 - 11/AtMGT10/VAR5在叶绿体中形成大分子量复合物,且这些复合物的大小明显超过其细菌对应物,这表明叶绿体和细菌中CorA镁转运蛋白复合物的组成不同。我们的研究结果表明,AtMRS2 - 11/AtMGT10/VAR5在叶绿体发育的组织特异性调控中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f468/5712471/ad0c6fbb1c8b/fpls-08-02007-g001.jpg

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