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Arabidopsis AtGPAT1 a Member of the Membrane-Bound Glycerol-3-Phosphate Acyltransferase Gene Family Is Essential for Tapetum Differentiation and Male Fertility

机译:拟南芥AtGPAT1膜结合甘油3-磷酸酰基转移酶基因家族的成员对于绒毡层分化和雄性育性至关重要

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摘要

Membrane-bound glycerol-3-phosphate acyltransferase (GPAT; EC 2.3.1.15) mediates the initial step of glycerolipid biosynthesis in the extraplastidic compartments of plant cells. Here, we report the molecular characterization of a novel GPAT gene family from Arabidopsis, designated AtGPAT. The corresponding polypeptides possess transmembrane domains and GPAT activity when expressed heterologously in a yeast lipid mutant. The functional significance of one isoform, AtGPAT1, is the focus of the present study. Disruption of the AtGPAT1 gene causes a massive pollen development arrest, and subsequent introduction of the gene into the mutant plant rescues the phenotype, illustrating a pivotal role for AtGPAT1 in pollen development. Microscopic examinations revealed that the gene lesion results in a perturbed degeneration of the tapetum, which is associated with altered endoplasmic reticulum profiles and reduced secretion. In addition to the sporophytic effect, AtGPAT1 also exerts a gametophytic effect on pollen performance, as the competitive ability of a pollen grain to pollinate is dependent on the presence of an AtGPAT1 gene. Deficiency in AtGPAT1 correlates with several fatty acid composition changes in flower tissues and seeds. Unexpectedly, however, a loss of AtGPAT1 causes no significant change in seed oil content.
机译:膜结合的3-磷酸甘油酰基转移酶(GPAT; EC 2.3.1.15)介导了植物细胞质外区室中甘油脂生物合成的初始步骤。在这里,我们报告了来自拟南芥的一个新的GPAT基因家族的分子表征,命名为AtGPAT。当在酵母脂质突变体中异源表达时,相应的多肽具有跨膜结构域和GPAT活性。一种同工型AtGPAT1的功能意义是本研究的重点。 AtGPAT1基因的破坏会导致大量的花粉发育停滞,随后将该基因引入突变植物中可以挽救表型,这说明AtGPAT1在花粉发育中具有关键作用。显微镜检查显示该基因损伤导致绒毡层的扰动变性,这与内质网分布改变和分泌减少有关。除孢子作用外,AtGPAT1还对花粉表现产生配子体作用,因为花粉粒授粉的竞争能力取决于AtGPAT1基因的存在。 AtGPAT1的缺乏与花卉组织和种子中的几种脂肪酸组成变化有关。但是,出乎意料的是,AtGPAT1的损失不会引起种子油含量的明显变化。

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