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α-Tocopherol Is Essential for Acquired Chill-Light Tolerance in the Cyanobacterium Synechocystis sp. Strain PCC 6803▿ †

机译:α-生育酚对于蓝藻蓝藻的获得的耐冷光性至关重要。应变PCC6803▿†

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摘要

Unlike Escherichia coli, the cyanobacterium Synechocystis sp. strain PCC 6803 is insensitive to chill (5°C) in the dark but rapidly losses viability when exposed to chill in the light (100 μmol photons m−2 s−1). Preconditioning at a low temperature (15°C) greatly enhances the chill-light tolerance of Synechocystis sp. strain PCC 6803. This phenomenon is called acquired chill-light tolerance (ACLT). Preconditioned wild-type cells maintained a substantially higher level of α-tocopherol after exposure to chill-light stress. Mutants unable to synthesize α-tocopherol, such as slr1736, slr1737, slr0089, and slr0090 mutants, almost completely lost ACLT. When exposed to chill without light, these mutants showed no or a slight difference from the wild type. When complemented, the slr0089 mutant regained its ACLT. Copper-regulated expression of slr0090 from PpetE controlled the level of α-tocopherol and ACLT. We conclude that α-tocopherol is essential for ACLT of Synechocystis sp. strain PCC 6803. The role of α-tocopherol in ACLT may be based largely on a nonantioxidant activity that is not possessed by other tocopherols or pathway intermediates.
机译:与大肠杆菌不同的是,蓝藻Synechocystis sp.。 PCC 6803菌株在黑暗中对寒冷(5°C)不敏感,但是在光线(100μmol光子m-2 s-1)下暴露于寒冷时会迅速丧失活力。在低温(15°C)下进行预处理可大大提高Synechocystis sp。的耐寒性。应变PCC6803。这种现象称为后天耐寒光(ACLT)。经过预处理的野生型细胞在暴露于冷光胁迫后仍维持较高水平的α-生育酚。无法合成α-生育酚的突变体,例如slr1736,slr1737,slr0089和slr0090突变体,几乎完全丧失了ACLT。当暴露于阴凉无光的条件下时,这些突变体与野生型无任何差异或仅有轻微差异。互补后,slr0089突变体恢复了其ACLT。铜调节的PpetE slr0090的表达控制α-生育酚和ACLT的水平。我们得出结论,α-生育酚对于集胞藻sp。ACLT是必不可少的。菌株PCC6803。α-生育酚在ACLT中的作用可能主要基于其他生育酚或途径中间体不具备的非抗氧化活性。

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