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低温对蓝藻细胞膜的影响。

Low-temperature effects on cyanobacterial membranes.

作者信息

Murata N

机构信息

National Institute for Basic Biology, Okazaki, Japan.

出版信息

J Bioenerg Biomembr. 1989 Feb;21(1):61-75. doi: 10.1007/BF00762212.

Abstract

The effect of change in ambient temperature on fatty acid unsaturation has been studied in the cyanobacterium Anabaena variabilis. When cells isothermally grown at 22 degrees C are compared with those grown at 38 degrees C, the relative content of oleic acid decreases and that of linolenic acid increases in all of the lipid classes. After a temperature shift from 38 to 22 degrees C, palmitic acid is rapidly desaturated in monogalactocyldiacylglycerol, but in no other lipids, and oleic acid is slowly desaturated in most lipid classes. When cells of Anacystis nidulans are exposed to low temperature such as 0 degree C, they lose physiological activities and finally die. This low-temperature damage is initiated by the phase transition of lipids in the plasma membrane. The phase transition of thylakoid membrane that occurs at intermediate temperature produces loss of activity related to photosynthesis. This is, however, recovered when the cells are rewarmed to growth temperature. A model for the mechanism of the low-temperature damage in the cyanobacterial cells is proposed.

摘要

已经在多变鱼腥藻这种蓝细菌中研究了环境温度变化对脂肪酸不饱和度的影响。将在22摄氏度等温生长的细胞与在38摄氏度生长的细胞进行比较时,在所有脂质类别中,油酸的相对含量降低,而亚麻酸的相对含量增加。在温度从38摄氏度转变为22摄氏度后,棕榈酸在单半乳糖二酰基甘油中迅速去饱和,但在其他脂质中则不然,并且油酸在大多数脂质类别中缓慢去饱和。当集胞藻细胞暴露于低温如0摄氏度时,它们会丧失生理活性并最终死亡。这种低温损伤是由质膜中脂质的相变引发的。类囊体膜在中等温度下发生的相变会导致与光合作用相关的活性丧失。然而,当细胞重新升温至生长温度时,这种情况会恢复。提出了蓝细菌细胞中低温损伤机制的模型。

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