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暗适应和漂白突变体对光刺激的蛋白质组学反应

Proteomic Responses of Dark-Adapted and Bleached Mutant Against Light Stimuli.

作者信息

Chen Zhenfan, Chen Zixi, Zhu Jiayi, He Jiayi, Liu Qiong, Zhu Hui, Lei Anping, Wang Jiangxin

机构信息

Shenzhen Key Laboratory of Marine Bioresource and Eco-Environmental Science, Shenzhen Engineering Laboratory for Marine Algal Biotechnology, Guangdong Provincial Key Laboratory for Plant Epigenetics, College of Life Sciences and Oceanography, Shenzhen University, Shenzhen, China.

Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Optoelectronic Engineering, Shenzhen University, Shenzhen, China.

出版信息

Front Bioeng Biotechnol. 2022 Mar 3;10:843414. doi: 10.3389/fbioe.2022.843414. eCollection 2022.

Abstract

has secondary endosymbiotic chloroplasts derived from ancient green algae. Its chloroplasts are easily lost under numerous conditions to become permanently bleached mutants. Green cells adapted in the dark contain undeveloped proplastids and they will develop into mature chloroplasts after 3 days of light exposure. Thus, is an ideal model species for a chloroplast development study. Previous studies about chloroplast development in focused on morphology and physiology, whereas few studies have addressed the regulatory processes induced by light in the proteome. In this study, the whole-genome proteome of dark-adapted (WT) and permanently ofloxacin-bleached mutant (B2) was compared under the light exposure after 0, 12, and 72 h. The results showed that the photosynthesis-related proteins were up-regulated over time in both WT and B2. The B2 strain, with losing functional chloroplasts, seemed to possess a complete photosynthetic function system. Both WT and B2 exhibited significant light responses with similar alternation patterns, suggesting the sensitive responses to light in proteomic levels. The main metabolic activities for the utilization of carbon and energy in WT were up-regulated, while the proteins with calcium ion binding, cell cycle, and non-photosynthetic carbon fixation were down-regulated in B2. This study confirmed light-induced chloroplast development in WT from dark, and also for the first time investigates the light responses of a bleached mutant B2, providing more information about the unknown functions of residual plastids in bleached mutants.

摘要

具有源自古代绿藻的次生内共生叶绿体。其叶绿体在多种条件下容易丢失,从而成为永久漂白的突变体。在黑暗中适应的绿色细胞含有未发育的前质体,在光照3天后它们会发育成成熟的叶绿体。因此,是叶绿体发育研究的理想模式物种。先前关于叶绿体发育的研究主要集中在形态学和生理学方面,而很少有研究涉及蛋白质组中光诱导的调控过程。在本研究中,比较了黑暗适应的(野生型)和永久氧氟沙星漂白突变体(B2)在光照0、12和72小时后的全基因组蛋白质组。结果表明,野生型和B2中与光合作用相关的蛋白质均随时间上调。失去功能性叶绿体的B2菌株似乎拥有完整的光合功能系统。野生型和B2均表现出显著的光反应,且变化模式相似,表明在蛋白质组水平上对光敏感。野生型中利用碳和能量的主要代谢活动上调,而B2中与钙离子结合、细胞周期和非光合碳固定相关的蛋白质下调。本研究证实了野生型从黑暗中光诱导的叶绿体发育,并且首次研究了漂白突变体B2的光反应,为漂白突变体中残留质体的未知功能提供了更多信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b79a/8927018/63d7258918f2/fbioe-10-843414-g001.jpg

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