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Genetic analysis of arabidopsis mutants impaired in plastid lipid import reveals a role of membrane lipids in chloroplast division

机译:质体脂质输入受损的拟南芥突变体的遗传分析显示膜脂质在叶绿体分裂中的作用

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摘要

The biogenesis of photosynthetic membranes in plants relies largely on lipid import from the endoplasmic reticulum (ER) and this lipid transport process is mediated by TGD proteins in Arabidopsis. Such a dependency of chloroplast biogenesis on ER-to-plastid lipid transport was recently exemplified by analyzing double mutants between tgd1-1 or tgd4-3 and fad6 mutants. The fad6 mutants are defective in the desaturation of membrane lipids in chloroplasts and therefore dependent on import of polyunsaturated lipid precursors from the ER for constructing a competent thylakoid membrane system. In support of a critical role of TGD proteins in ER-to-plastid lipid trafficking, we showed that the introduction of the tgd mutations into fad6 mutant backgrounds led to drastic reductions in relative amounts of thylakoid lipids. Moreover, the tgd1-1 fad6 and tgd4-3 fad6 double mutants were deficient in polyunsaturated fatty acids in chloroplast membrane lipids, and severely compromised in the biogenesis of photosynthetic membrane systems. Here we report that these double mutants are severely impaired in chloroplast division. The possible role of membrane lipids in chloroplast division is discussed.
机译:植物中光合膜的生物发生主要依赖于从内质网(ER)导入脂质,而该脂质转运过程是由拟南芥中的TGD蛋白介导的。最近通过分析tgd1-1或tgd4-3和fad6突变体之间的双重突变体,举例说明了叶绿体生物发生对ER到质体脂质转运的这种依赖性。 fad6突变体在叶绿体中的膜脂质去饱和方面存在缺陷,因此依赖于从ER导入多不饱和脂质前体来构建有效的类囊体膜系统。为了支持TGD蛋白在ER至质体脂质运输中的关键作用,我们表明将tgd突变引入fad6突变体背景可导致类囊体脂质的相对量急剧减少。此外,tgd1-1 fad6和tgd4-3 fad6双重突变体缺乏叶绿体膜脂质中的多不饱和脂肪酸,并严重损害了光合膜系统的生物发生。在这里我们报告这些双重突变体在叶绿体分裂中受到严重损害。讨论了膜脂质在叶绿体分裂中的可能作用。

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  • 作者

    Fan, Jilian; Xu, Changcheng;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en
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