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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Overexpression of plastid terminal oxidase in Synechocystis sp PCC 6803 alters cellular redox state
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Overexpression of plastid terminal oxidase in Synechocystis sp PCC 6803 alters cellular redox state

机译:SyneChocystis SP PCC 6803中体积末端氧化酶的过表达改变了细胞氧化还原状态

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Cyanobacteria are the most ancient organisms performing oxygenic photosynthesis, and they are the ancestors of plant plastids. All plastids contain the plastid terminal oxidase (PTOX), while only certain cyanobacteria contain PTOX. Many putative functions have been discussed for PTOX in higher plants including a photoprotective role during abiotic stresses like high light, salinity and extreme temperatures. Since PTOX oxidizes PQH(2) and reduces oxygen to water, it is thought to protect against photo-oxidative damage by removing excess electrons from the plastoquinone (PQ) pool. To investigate the role of PTOX we overexpressed rice PTOX fused to the maltose-binding protein (MBP-OsPTOX) in Synechocystis sp. PCC 6803, a model cyanobacterium that does not encode PTOX. The fusion was highly expressed and OsPTOX was active, as shown by chlorophyll fluorescence and P-700 absorption measurements. The presence of PTOX led to a highly oxidized state of the NAD(P) H/NAD(P)(+) pool, as detected by NAD(P)H fluorescence. Moreover, in the PTOX overexpressor the electron transport capacity of PSI relative to PSII was higher, indicating an alteration of the photosystem I (PSI) to photosystem II (PSII) stoichiometry. We suggest that PTOX controls the expression of responsive genes of the photosynthetic apparatus in a different way from the PQ/PQH(2) ratio.
机译:蓝藻是表演含氧光合作用的古代生物,它们是植物塑体的祖先。所有塑体含有体积末端氧化酶(PTOX),而只有一定的蓝细菌含有PTOX。已经讨论了许多推定的功能,用于高等植物中的PTOX,包括在非生物胁迫下的光保护作用,如高光,盐度和极端温度。由于PTOX氧化PQH(2)并将氧气降低到水中,因此认为通过从塑性醌(PQ)池中除去过量的电子来保护光氧化损伤。探讨PTOX我们过表达水稻PTOX在SyneChocystis SP中融合到麦芽糖结合蛋白(MBP-OSPTOX)的作用。 PCC 6803,一种不编码PTOX的模型蓝藻。融合高度表达,奥斯特克索是活性的,如叶绿素荧光和P-700吸收测量所示。 PTOX的存在导致NAD(P)H / NAD(P)(+)池的高度氧化状态,如NAD(P)H荧光所检测到的。此外,在PTOX过度抑制器中,PSI相对于PSII的电子传输能力较高,表明光系统I(PSI)的改变到光系统II(PSII)化学计量。我们建议PTOX以不同的方式从PQ / PQH(2)比中以不同的方式控制光合仪的响应基因的表达。

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