首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >Effects of Abiotic Stresses on the Content of Glycoglycerolipids in the Vacuolar Membrane of Red Beetroot
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Effects of Abiotic Stresses on the Content of Glycoglycerolipids in the Vacuolar Membrane of Red Beetroot

机译:非生物胁迫对红甜菜根真空膜中的糖甘油脂素含量的影响

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摘要

Glycoglycerolipids (GL) of the red beet vacuolar membrane under osmotic and oxidative stresses have been investigated. Variations of the GL content under stress conditions might be indicators of an important role of these compounds in protective mechanisms. Changes of the GL levels and the digalactosyldiacylglycerols/monogalactosyldiacylglycerol (DGDG/MGDG) ratio in the vacuolar membrane under hypoosmotic and oxidative stresses corresponded mainly to those observed in other cell membranes under majority of stresses studied, namely, the ratio increased that contributed to membrane stabilization. The changes of the GL content of vacuolar membrane caused by hyperosmotic stress notably differed. The DGDG content and DGDG/MGDG ratio significantly decreased. These alterations did not necessarily result in a decrease in the membrane stability under hyperosmotic stress, since the content of MGDG involved in the formation of a hexagonal structure and capable of destabilizing lipid bilayer also decreased. The changes of the GL level in the vacuolar membrane under hyperosmotic stress can be due to an increased degradation or reduced biosynthesis of GL; these changes may represent yet another defense mechanism of a plant cell against stresses.
机译:研究了在渗透渗透剂和氧化胁迫下的红色甜菜真空膜的糖甘油脂素(GL)。压力条件下GL含量的变化可能是这些化合物在保护机制中的重要作用的指标。在低渗和氧化应力下,真空膜中的GL水平和二甲酰基二酰基甘油/单甘油酰基二酰基甘油(DGDG / MGDG)比的变化主要是在研究大多数胁迫下在其他细胞膜下观察到的那些,即,导致膜稳定增加。高骨肉胁迫引起的真空膜的GL含量的变化显着不同。 DGDG含量和DGDG / MGDG比率显着降低。这些改变并不一定导致膜稳定性下的膜稳定性降低,因为涉及形成六边形结构并能够使脂质双层稳定稳定的脂质双层的MGDG的含量也降低。在高血液胁迫下,真空膜中GL水平的变化可以是由于GL的降解或减少的生物合成的增加;这些变化可以代表植物细胞对抗应力的另一种防御机制。

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