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水稻花粉孔的形成受 OsINP1 和 OsDAF1 相互作用的调节。

Rice pollen aperture formation is regulated by the interplay between OsINP1 and OsDAF1.

机构信息

Joint International Research Laboratory of Metabolic & Developmental Sciences, State Key Laboratory of Hybrid Rice, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.

Development Center of Plant Germplasm Resources, College of Life Sciences, Shanghai Normal University, Shanghai, China.

出版信息

Nat Plants. 2020 Apr;6(4):394-403. doi: 10.1038/s41477-020-0630-6. Epub 2020 Apr 13.

Abstract

The aperture on the pollen surface provides an exit for the emerging pollen tube. Apertures exhibit huge morphological variation across plant species-grasses, including rice, possess a complex aperture consisting of an annulus and an operculum-but little is known about how this species-specific cell-surface pattern forms. Here, we report a lectin receptor-like kinase in Oryza sativa, OsDAF1, which is essential for annulus formation and thus for fertility. OsDAF1 is evenly distributed in early microsporocytes but localizes to the distal pre-aperture site at the tetrad stage. We further reveal that the rice orthologue of a key aperture factor in Arabidopsis, OsINP1, has conserved and diversified roles in rice aperture formation. Disruption of OsINP1 prevents formation of the aperture, precluding pollen-tube germination. Furthermore, our results demonstrate that OsINP1 is required for polarization of OsDAF1 via direct protein interaction, suggesting that OsINP1 has an additional role in the formation of annulus that is absent in Arabidopsis. Our study reveals the importance of the aperture for rice grain yield and reveals mechanisms controlling pollen aperture development in cereal species.

摘要

花粉表面的孔为花粉管的萌发提供了出口。孔在植物物种中表现出巨大的形态变异——包括水稻在内的禾本科植物具有由环和瓣组成的复杂孔——但对于这种物种特异性的细胞表面模式如何形成,人们知之甚少。在这里,我们报道了一个在水稻中存在的凝集素受体样激酶 OsDAF1,它对于环的形成以及育性是必需的。OsDAF1 在早期小孢子母细胞中均匀分布,但在四分体阶段定位于远端口前区。我们进一步揭示,拟南芥中一个关键孔因子的水稻同源物 OsINP1 在水稻孔形成中具有保守和多样化的作用。OsINP1 的破坏阻止了孔的形成,从而阻止了花粉管的萌发。此外,我们的结果表明,OsINP1 通过直接蛋白相互作用来促进 OsDAF1 的极化,这表明 OsINP1 在环的形成中具有在拟南芥中不存在的额外作用。我们的研究揭示了孔对于水稻籽粒产量的重要性,并揭示了控制谷物物种花粉孔发育的机制。

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