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首页> 外文期刊>MBio >Synechococcus sp. Strain PCC7002 Uses Sulfide:Quinone Oxidoreductase To Detoxify Exogenous Sulfide and To Convert Endogenous Sulfide to Cellular Sulfane Sulfur
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Synechococcus sp. Strain PCC7002 Uses Sulfide:Quinone Oxidoreductase To Detoxify Exogenous Sulfide and To Convert Endogenous Sulfide to Cellular Sulfane Sulfur

机译:<斜体> synechocccus sp。菌株PCC7002使用硫化物:醌氧化还原酶解毒外源硫化物,并将内源性硫化物转化为细胞磺胺硫

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Eutrophication and deoxygenation possibly occur in coastal waters due to excessive nutrients from agricultural and aquacultural activities, leading to sulfide accumulation. Cyanobacteria, as photosynthetic prokaryotes, play significant roles in carbon fixation in the ocean. Although some cyanobacteria can use sulfide as the electron donor for photosynthesis under anaerobic conditions, little is known on how they interact with sulfide under aerobic conditions. In this study, we report that Synechococcus sp. strain PCC7002 (PCC7002), harboring an sqr gene encoding sulfide:quinone oxidoreductase (SQR), oxidized self-produced sulfide to S ~(0), present as persulfide and polysulfide in the cell. The Δ sqr mutant contained less cellular S ~(0) and had increased expression of key genes involved in photosynthesis, but it was less competitive than the wild type in cocultures. Further, PCC7002 with SQR and persulfide dioxygenase (PDO) oxidized exogenous sulfide to tolerate high sulfide levels. Thus, SQR offers some benefits to cyanobacteria even under aerobic conditions, explaining the common presence of SQR in cyanobacteria.
机译:由于农业和水产养殖活动的营养过多,导致硫化物积累的营养过多,可能发生在沿海水域中的富营养化和脱氧。 Cyanobacteria,作为光合原核生物,在海洋中的碳固定中发挥着重要作用。虽然一些蓝细菌可以在厌氧条件下使用硫化物作为光合作用的电子供体,但是在有氧条件下如何与硫化物相互作用。在这项研究中,我们报告了SyneChoccus SP。菌株PCC7002(PCC7002),含有编码硫化物的SQR基因:醌氧化还原酶(SQR),将氧化自成的硫化物至S〜(0)氧化,作为细胞中的过硫化物和多硫化物存在。 δSQR突变体含有较少的细胞S〜(0),并增加了光合作用中涉及的关键基因的表达,但它比野生型的野生型较少。此外,具有SQR和过硫化的PCO7002,二氧化碳酶(PDO)氧化外源性硫化物以耐受高硫化物水平。因此,即使在有氧条件下,SQR也为青霉素提供了一些益处,解释了Cyanobacteria的常见存在。

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