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适应光氧化应激:α-变形菌纲的共同和特殊策略以及…… (原文此处不完整)

Adaptation to Photooxidative Stress: Common and Special Strategies of the Alphaproteobacteria and .

作者信息

Licht Mathieu K, Nuss Aaron M, Volk Marcel, Konzer Anne, Beckstette Michael, Berghoff Bork A, Klug Gabriele

机构信息

Institute of Microbiology and Molecular Biology, University of Giessen, 35392 Giessen, Germany.

Department of Molecular Infection Biology, Helmholtz Centre for Infection Research, 38124 Braunschweig, Germany.

出版信息

Microorganisms. 2020 Feb 19;8(2):283. doi: 10.3390/microorganisms8020283.

Abstract

Photosynthetic bacteria have to deal with the risk of photooxidative stress that occurs in presence of light and oxygen due to the photosensitizing activity of (bacterio-) chlorophylls. Facultative phototrophs of the genus adapt the formation of photosynthetic complexes to oxygen and light conditions, but cannot completely avoid this stress if environmental conditions suddenly change. has a stronger pigmentation and faster switches to phototrophic growth than . However, its photooxidative stress response has not been investigated. Here, we compare both species by transcriptomics and proteomics, revealing that proteins involved in oxidation-reduction processes, DNA, and protein damage repair play pivotal roles. These functions are likely universal to many phototrophs. Furthermore, the alternative sigma factors RpoE and RpoH are induced in both species, even though the genetic localization of the gene, the RpoE protein itself, and probably its regulon, are different. Despite sharing the same habitats, our findings also suggest individual strategies. The operon, encoding proteins for biosynthesis of carotenoid precursors and a regulator of photosynthesis, and , encoding a putative ferrochelatase, are induced in . This specific response might support adaptation by maintaining high carotenoid-to-bacteriochlorophyll ratios and preventing the accumulation of porphyrin-derived photosensitizers.

摘要

光合细菌必须应对光氧化应激风险,这种应激在光照和氧气存在的情况下由于(细菌)叶绿素的光敏活性而发生。该属的兼性光养菌会使光合复合物的形成适应氧气和光照条件,但如果环境条件突然变化,就无法完全避免这种应激。与相比,具有更强的色素沉着,并且更快地转变为光养生长。然而,其光氧化应激反应尚未得到研究。在这里,我们通过转录组学和蛋白质组学对这两个物种进行比较,发现参与氧化还原过程、DNA和蛋白质损伤修复的蛋白质起着关键作用。这些功能可能对许多光养菌来说是普遍存在的。此外,尽管基因的基因定位、RpoE蛋白本身以及可能其调控子有所不同,但在这两个物种中都诱导了替代西格玛因子RpoE和RpoH。尽管共享相同的栖息地,但我们的研究结果也表明了各自的策略。在中,编码类胡萝卜素前体生物合成蛋白和光合作用调节因子的操纵子以及编码假定的亚铁螯合酶的被诱导。这种特异性反应可能通过维持高类胡萝卜素与细菌叶绿素的比例并防止卟啉衍生的光敏剂积累来支持适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d753/7074977/b342abe6dbc1/microorganisms-08-00283-g001.jpg

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