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Organization and expression of photosynthesis genes and operons in anoxygenic photosynthetic proteobacteria

机译:产氧光合蛋白细菌中光合作用基因和操纵子的组织和表达

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摘要

Genes belonging to the same metabolic route are usually organized in operons in microbial genomes. For instance, most genes involved in photosynthesis were found clustered and organized in operons in photosynthetic Alpha- and Betaproteobacteria. The discovery of Gammaproteobacteria with a conserved photosynthetic gene cluster revives the questions on the role and the maintenance of such organization in proteobacteria. In this paper, we report the analysis of the structure and expression of the 14 kb cluster (crtEF-bchCXYZ-pufBALMC-crtADC) in the photosynthetic betaproteobacterium Rubrivivax gelatinosus, with the purpose of understanding the reasons and the biological constraints that might have led to the clustering of photosynthesis genes. The genetic analyses are substantiated by reverse transcription-PCR data which reveal the presence of a transcript encompassing the 14 genes and provide evidence of a polycistronic 'super-operon' organization starting at crtE and ending 14 kb downstream at the crtC gene. Furthermore, genetic analyses suggest that one of the selection pressures that may have driven and maintained the photosynthesis operons/super-operons in proteobacteria could very likely be the coexpression and regulation of the clustered genes/operon.
机译:属于同一代谢途径的基因通常在微生物基因组的操纵子中组织。例如,发现大多数参与光合作用的基因在光合作用的α和β变形蛋白细菌的操纵子中成簇并组织。具有保守的光合作用基因簇的γ-变形杆菌的发现使人们对这种组织在变形细菌中的作用和维持提出了疑问。在本文中,我们报告了在光合作用β变形蛋白细菌Rubrivivax gelatinosus中14 kb簇(crtEF-bchCXYZ-pufBALMC-crtADC)的结构和表达的分析,目的是了解可能导致这种情况的原因和生物学限制光合作用基因的聚集。遗传分析由逆转录-PCR数据证实,该数据揭示了包含14个基因的转录本的存在,并提供了多顺反子“超级操纵子”组织的证据,该组织始于crtE,终止于crtC基因的下游14 kb。此外,遗传分析表明,可能驱动和维持蛋白细菌中光合作用操纵子/超级操纵子的选择压力之一很可能是成簇基因/操纵子的共表达和调控。

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