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ATP-Binding Cassette Transporter G26 Is Required for Male Fertility and Pollen Exine Formation in Arabidopsis1[W][OA]

机译:拟南芥1的雄性育性和花粉外壁形成需要ATP结合盒式转运蛋白G26 [W] [OA]

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摘要

The highly resistant biopolymer, sporopollenin, gives the outer wall (exine) of spores and pollen grains their unparalleled strength, shielding these structures from terrestrial stresses. Despite a limited understanding of the composition of sporopollenin, it appears that the synthesis of sporopollenin occurs in the tapetum and requires the transport of one or more sporopollenin constituents to the surface of developing microspores. Here, we describe ABCG26, a member of the ATP-binding cassette (ABC) transporter superfamily, which is required for pollen exine formation in Arabidopsis (Arabidopsis thaliana). abcg26 mutants are severely reduced in fertility, with most siliques failing to produce seeds by self-fertilization and mature anthers failing to release pollen. Transmission electron microscopy analyses revealed an absence of an exine wall on abcg26-1 mutant microspores. Phenotypic abnormalities in pollen wall formation were first apparent in early uninucleate microspores as a lack of exine formation and sporopollenin deposition. Additionally, the highest levels of ABCG26 mRNA were in the tapetum, during early pollen wall formation, sporopollenin biosynthesis, and sporopollenin deposition. Accumulations resembling the trilamellar lipidic coils in the abcg11 and abcg12 mutants defective in cuticular wax export were observed in the anther locules of abcg26 mutants. A yellow fluorescent protein-ABCG26 protein was localized to the endoplasmic reticulum and plasma membrane. Our results show that ABCG26 plays a critical role in exine formation and pollen development and are consistent with a model by which ABCG26 transports sporopollenin precursors across the tapetum plasma membrane into the locule for polymerization on developing microspore walls.
机译:高度抗性的生物聚合物孢粉质赋予孢子和花粉粒的外壁(外壁)无与伦比的强度,从而使这些结构免受地面应力的影响。尽管对孢粉蛋白的组成了解有限,但似乎孢粉蛋白的合成发生在绒毡层中,并且需要将一种或多种孢粉蛋白成分转运至发育中的小孢子表面。在这里,我们描述了ABCG26,它是拟南芥(Arabidopsis thaliana)花粉外壁形成所必需的ATP结合盒(ABC)转运蛋白超家族的成员。 abcg26突变体的繁殖力大大降低,大多数长角果无法通过自体受精产生种子,而成熟的花药无法释放花粉。透射电子显微镜分析显示在abcg26-1突变体微孢子上不存在外壁。花粉壁形成的表型异常首先在早期的单核小孢子中表现出来,这是由于缺乏外在的形成和孢粉的沉积。此外,最高水平的ABCG26 mRNA在绒毡层中,早期花粉壁形成,孢粉蛋白生物合成和孢粉蛋白沉积过程中。在abcg26突变体的花药室中观察到表皮蜡输出缺陷的abcg11和abcg12突变体中类似于三层脂质线圈的积累。黄色荧光蛋白-ABCG26蛋白位于内质网和质膜上。我们的结果表明,ABCG26在外泌体形成和花粉发育中起关键作用,并且与ABCG26通过孢子粉质膜转运穿过绒毡质膜进入小室以在小孢子壁上聚合的模型相一致。

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