首页> 外文期刊>Plant and cell physiology >ABCG15 encodes an ABC transporter protein, and is essential for post-meiotic anther and pollen exine development in rice.
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ABCG15 encodes an ABC transporter protein, and is essential for post-meiotic anther and pollen exine development in rice.

机译:ABCG15编码ABC转运蛋白,对于水稻减数分裂后的花药和花粉外壁发育至关重要。

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摘要

In flowering plants, anther and pollen development is critical for male reproductive success. The anther cuticle and pollen exine play an essential role, and in many cereals, such as rice, orbicules/ubisch bodies are also thought to be important for pollen development. The formation of the anther cuticle, exine and orbicules is associated with the biosynthesis and transport of wax, cutin and sporopollenin components. Recently, progress has been made in understanding the biosynthesis of sporopollenin and cutin components in Arabidopsis and rice, but less is known about the mechanisms by which they are transported to the sites of deposition. Here, we report that the rice ATP-binding cassette (ABC) transporter, ABCG15, is essential for post-meiotic anther and pollen development, and is proposed to play a role in the transport of rice anther cuticle and sporopollenin precursors. ABCG15 is highly expressed in the tapetum at the young microspore stage, and the abcg15 mutant exhibits small, white anthers lacking mature pollen, lipidic cuticle, orbicules and pollen exine. Gas chromatography-mass spectrometry (GC-MS) analysis of the abcg15 anther cuticle revealed significant reductions in a number of wax components and aliphatic cutin monomers. The expression level of genes involved in lipid metabolism in the abcg15 mutant was significantly different from their levels in the wild type, possibly due to perturbations in the homeostasis of anther lipid metabolism. Our study provides new insights for understanding the molecular mechanism of the formation of the anther cuticle, orbicules and pollen wall, as well as the machinery for lipid metabolism in rice anthers.
机译:在开花植物中,花药和花粉发育对于雄性繁殖成功至关重要。花药角质层和花粉外壁起着至关重要的作用,在许多谷物中,例如大米中,小球/泛体也被认为对花粉发育很重要。花药角质层,外壁和小球的形成与蜡,角质和孢粉的组分的生物合成和运输有关。近来,在了解拟南芥和水稻中孢粉和角质成分的生物合成方面已取得进展,但对它们被转运到沉积部位的机理了解甚少。在这里,我们报道水稻ATP结合盒(ABC)转运蛋白ABCG15,对于减数分裂后的花药和花粉发育至关重要,并提议在水稻花药表皮和孢粉素前体的运输中发挥作用。 ABCG15在幼小孢子阶段在绒毡层中高度表达,而abcg15突变体表现出小的白色花药,缺少成熟的花粉,脂质角质层,小球和花粉外壁。 abcg15花药角质层的气相色谱-质谱(GC-MS)分析显示,蜡组分和脂肪族角质单体的数量显着减少。 abcg15突变体中参与脂质代谢的基因的表达水平与野生型中的水平显着不同,这可能是由于花药脂质代谢体内稳态的扰动引起的。我们的研究为了解花药角质层,小球和花粉壁形成的分子机制,以及水稻花药中脂质代谢的机理提供了新的见识。

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