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首页> 外文期刊>Zeitschrift fur Naturforschung, C. A Journal of Biosciences >Interrelation between cyanophycin synthesis, L-arginine catabolism and photosynthesis in the cyanobacterium Synechocystis sp strain PCC 6803
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Interrelation between cyanophycin synthesis, L-arginine catabolism and photosynthesis in the cyanobacterium Synechocystis sp strain PCC 6803

机译:蓝藻集胞藻sp。PCC 6803蓝藻霉素合成,L-精氨酸分解代谢与光合作用的相互关系

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摘要

Ultrastructural and immunocytochemical investigations gave evidence that cyanophycin (multi-L-arginyl-poly-L-aspartate) granules accumulate in the cyanobacterium Synechocystis sp. strain PCC 6803 under nutrient deficient growth conditions, especially under phosphate limitation. Besides nutrient deficiency, growth of Synechocystis PCC 6803 on L-arginine or L-asparagine as sole N-source also led to high increase of cyanophycin synthesis, while growth on the combination of L-arginine or L-asparagine with nitrate only caused minor cyanophycin accumulation. Growth of Synechocystis PCC 6503 on L-arginine as sole N-source caused substantial morphological and physiological changes, such as severe thylakoid membrane degradation with partial loss of pigments and photosynthetic activity leading to a phenotype almost like that seen under nutrient deficiency. In contrast to the wild type, the PsbO-free Synechocystis PCC 6803 mutant could grow on L-arginine as sole N-source with only minor morphological and physiological changes. Due to its fairly balanced growth, the mutant accumulated only few cyanophycin granules. L-arginine degrading activity (measured as ornithine and ammonium formation) was high in the PsbO-free mutant but not in the wild type when cells were grown on L-arginine as sole N-source. In both cells types the L-arginine degrading activity was high (although in the PsbO-free mutant about twice as high as in wild type), when cells were grown on L-arginine in combination with nitrate, and as expected very low when cells were grown on nitrate as sole N-source. Thus, net cyanophycin accumulation in Synechocystis PCC 6803 is regulated by the relative concentration of L-arginine to the total nitrogen pool, and the intracellular L-arginine concentration is greatly influenced by the activity of the L-arginine degrading enzyme system which in part is regulated by the activity status of photosystem II. These results suggest a complex interrelation between cyanophycin synthesis, L-arginine catabolism, and in addition photosynthesis in Synechocystis PCC 6803. [References: 50]
机译:超微结构和免疫细胞化学研究提供了证据,表明氰霉素(多-L-精氨酸-聚-L-天门冬氨酸)颗粒在蓝细菌Synechocystis sp。中积累。在营养缺乏的生长条件下,尤其是在磷酸盐限制条件下的PCC 6803菌株。除营养缺乏外,以L-精氨酸或L-天冬酰胺为唯一氮源的Synechocystis PCC 6803的生长还导致蓝霉素合成的大量增加,而L-精氨酸或L-天冬酰胺与硝酸盐的组合生长仅引起次要的蓝霉素。积累。 L-精氨酸作为唯一的氮源,在PC上生长集胞藻PCC 6503,引起了实质的形态和生理变化,例如严重的类囊体膜降解,色素的部分损失和光合活性导致表型几乎与营养缺乏时的表型相似。与野生型相反,无PsbO的集胞藻PCC 6803突变体可以在L-精氨酸上作为唯一的N源生长,只有很小的形态和生理变化。由于其相当平衡的生长,该突变体仅积累了很少的蓝霉素颗粒。当细胞在L-精氨酸上作为唯一的N源生长时,在不含PsbO的突变体中,L-精氨酸的降解活性(以鸟氨酸和铵的形成来衡量)很高,但在野生型中却不高。在两种类型的细胞中,当L-精氨酸与硝酸盐结合生长时,L-精氨酸的降解活性都很高(尽管在无PsbO的突变体中,其降解活性约为野生型的两倍),而预期的是,当细胞在硝酸盐上作为唯一的氮源生长。因此,蓝藻中PCC 6803的净花青素积累受L-精氨酸相对于总氮库的相对浓度的调节,而细胞内L-精氨酸浓度受L-精氨酸降解酶系统活性的很大影响,L-精氨酸降解酶系统的一部分是受光系统II的活动状态调节。这些结果表明在蓝藻PCC 6803中,蓝藻素合成,L-精氨酸分解代谢与光合作用之间存在复杂的相互关系。[参考文献:50]

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