首页> 外文期刊>Progress in Lipid Research: An International Journal >Critical regulation of galactolipid synthesis controls membrane differentiation and remodeling in distinct plant organs and following environmental changes.
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Critical regulation of galactolipid synthesis controls membrane differentiation and remodeling in distinct plant organs and following environmental changes.

机译:半乳糖脂合成的关键调控控制着不同植物器官中膜的分化和重塑以及环境的变化。

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The plant galactolipids, monogalactosyldiacylglycerol (MGDG) and digalactosyldiacylglycerol (DGDG), are the most abundant lipids in chloroplast membranes, and they constitute the majority of total membrane lipids in plants. MGDG is synthesized by two types of MGDG synthase, type-A (MGD1) and type-B (MGD2, MGD3). These MGDG synthases have distinct roles in Arabidopsis. In photosynthetic organs, Type A MGD is responsible for the bulk of MGDG synthesis, whereas Type B MGD is expressed in non-photosynthetic organs such as roots and flowers and mainly contributes to DGDG accumulation under phosphate deficiency. Similar to MGDG synthesis, DGDG is synthesized by two synthases, DGD1 and DGD2; DGD1 is responsible for the majority of DGDG synthesis, whereas DGD2 makes its main contribution under phosphate deficiency. These galactolipid synthases are regulated by light, plant hormones, redox state, phosphatidic acid levels, and various stress conditions such as drought and nutrient limitation. Maintaining the appropriate ratio of these two galactolipids in chloroplasts is important for stabilizing thylakoid membranes and maximizing the efficiency of photosynthesis. Here we review progress made in the last decade towards a better understanding of the pathways regulating plant galactolipid biosynthesis.
机译:植物半乳糖脂,单半乳糖基二酰基甘油(MGDG)和二半乳糖基二酰基甘油(DGDG)是叶绿体膜中最丰富的脂质,它们构成了植物总膜脂质的大部分。 MGDG由两种类型的MGDG合酶合成,即A型(MGD1)和B型(MGD2,MGD3)。这些MGDG合酶在拟南芥中具有不同的作用。在光合器官中,MGD的合成主要是由A型MGD引起的,而在根与花等非光合器官中则表达B型MGD,并且主要在磷酸盐缺乏时促进DGDG的积累。类似于MGDG的合成,DGDG由两种合酶DGD1和DGD2合成。 DGD1负责大部分DGDG的合成,而DGD2在磷酸盐缺乏时起主要作用。这些半乳糖脂合酶受光照,植物激素,氧化还原状态,磷脂酸水平以及各种胁迫条件(如干旱和营养限制)的调节。在叶绿体中维持这两种半乳糖脂的适当比例对于稳定类囊体膜和最大程度提高光合作用效率很重要。在这里,我们回顾了过去十年在更好地了解调节植物半乳糖脂生物合成途径方面取得的进展。

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