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Ostkpr1 functions in anther cuticle development and pollen wall formation in rice

机译:Ostkpr1在水稻花药表皮发育和花粉壁形成中起作用

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During pollen wall formation in flowering plants, a conserved metabolon consisting of acyl-CoA synthetase (ACOS), polyketide synthase (PKS) and tetraketide α-pyrone reductase (TKPR), is required for sporopollenin synthesis. Despite this, the precise function of each of these components in different species remains unclear. In this study, we characterized the function of OsTKPR1, a rice orthologue of Arabidopsis TKPR1. Loss of function of OsTKPR1 delayed tapetum degradation, reduced the levels of anther cuticular lipids, and impaired Ubisch body and pollen exine formation, resulting in complete male sterility. In addition, the phenylpropanoid pathway in mutant anthers was remarkably altered. Localization studies suggest that OsTKPR1 accumulates in the endoplasmic reticulum, while specific accumulation of OsTKPR1 mRNA in the anther tapetum and microspores is consistent with its function in anther and pollen wall development. Our results show that OsTKPR1 is indispensable for anther cuticle development and pollen wall formation in rice, providing new insights into the biochemical mechanisms of the conserved sporopollenin metabolon in flowering plants.
机译:在开花植物的花粉壁形成过程中,孢粉蛋白的合成需要由酰基辅酶A合成酶(ACOS),聚酮化合物合酶(PKS)和四酮化合物α-吡喃酮还原酶(TKPR)组成的保守代谢产物。尽管如此,尚不清楚这些组分在不同物种中的确切功能。在这项研究中,我们表征了拟南芥TKPR1的水稻直系同源基因OsTKPR1的功能。 OsTKPR1功能的丧失延迟了绒毡层的降解,降低了花药表皮脂质的水平,并损害了Ubisch体和花粉外壁的形成,从而导致男性完全不育。此外,突变体花药中的苯丙烷途径也发生了显着改变。本地化研究表明,OsTKPR1积累在内质网中,而OsTKPR1 mRNA在花药绒毡层和小孢子中的特异性积累与其在花药和花粉壁发育中的功能相一致。我们的结果表明,OsTKPR1对于水稻中的花药角质层发育和花粉壁形成是必不可少的,这为开花植物中保守的孢粉蛋白代谢产物的生化机制提供了新的见解。

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