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The recovery of photosynthesis from low-temperature photoinhibition is accelerated by the unsaturation of membrane lipids: a mechanism of chilling tolerance.

机译:膜脂类的不饱和促进了低温光抑制作用下光合作用的恢复:一种耐寒性的机制。

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摘要

In a previous study of mutants in fatty-acid desaturation of Synechocystis PCC6803, it was demonstrated that the photoinhibition of photosynthesis at low temperature in vivo is tolerated by cells as a result of the unsaturation of glycerolipids of thylakoid membranes. Since the extent of photoinhibition of photosynthesis in vivo depends on a balance between the photoinduced inactivation and the recovery from the photoinhibited state, an examination was made of the effects of the unsaturation of membrane lipids on these processes. It appears that the unsaturation of the membrane lipids does not affect the inactivation process but accelerates the recovery process and, moreover, that the apparent increase in the photoinhibition in vivo of photosynthesis at low temperature is caused by a depressed rate of recovery at low temperature.
机译:在先前的对拟青霉PCC6803脂肪酸去饱和突变体的研究中,证明了由于类囊体膜的甘油脂不饱和,细胞可耐受体内在低温下光合作用的光抑制作用。由于体内光合作用的光抑制程度取决于光诱导的失活与从光抑制状态恢复之间的平衡,因此检查了膜脂质不饱和对这些过程的影响。膜脂质的不饱和似乎不影响失活过程,但加速了恢复过程,此外,低温下光合作用的体内光抑制作用的明显增加是由于低温下恢复速率降低所致。

著录项

  • 作者

    Gombos, Z; Wada, H; Murata, N;

  • 作者单位
  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 en
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