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Genetic engineering of the unsaturation of fatty acids in membrane lipids alters the tolerance of Synechocystis to salt stress

机译:膜脂质中脂肪酸不饱和度的遗传工程改变了集囊藻对盐胁迫的耐受性

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摘要

The role of unsaturated fatty acids in membrane lipids in the tolerance of the photosynthetic machinery to salt stress was studied by comparing the desA/desD mutant of Synechocystis sp. PCC 6803, which contained monounsaturated fatty acids, with the wild-type strain, which contained a full complement of polyunsaturated fatty acids. In darkness, the loss of oxygen-evolving photosystem II activity in the presence of 0.5 M NaCl or 0.5 M LiCl was much more rapid in desA/desD cells than in wild-type cells. Oxygen-evolving activity that had been lost during incubation with 0.5 M NaCl in darkness returned when cells were transferred to conditions that allowed photosynthesis or respiration. Recovery was much greater in wild-type than in desA/desD cells, and it was prevented by lincomycin. Thus, the unsaturation of fatty acids is important in the tolerance of the photosynthetic machinery to salt stress. It appears also that the activity and synthesis of the Na+/H+ antiporter system might be suppressed under high-salt conditions and that this effect can be reversed, in part, by the unsaturation of fatty acids in membrane lipids.
机译:通过比较Synechocystis sp。的desA - / desD -突变体,研究了膜脂中不饱和脂肪酸在光合机制对盐胁迫耐受性中的作用。 PCC 6803包含单不饱和脂肪酸,而野生型菌株则包含完整的多不饱和脂肪酸。在黑暗中,desA - / desD -细胞中存在0.5 M NaCl或0.5 M LiCl时,放氧的光系统II活性的损失要快得多。野生型细胞。当将细胞转移到允许光合作用或呼吸的条件下时,在黑暗中与0.5 M NaCl孵育时失去的放氧活性又恢复了。在野生型中的恢复比在desA - / desD -细胞中要大得多,并且被林可霉素阻止了。因此,脂肪酸的不饱和度在光合作用机制对盐胁迫的耐受性中很重要。在高盐条件下,Na + / H + 反向转运蛋白系统的活性和合成似乎也可能受到抑制,并且这种作用可以部分逆转,膜脂质中脂肪酸的不饱和度。

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