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植物 RHO 蛋白对于拟南芥花粉萌发是必需的。

RHO OF PLANT proteins are essential for pollen germination in Arabidopsis.

机构信息

State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an 271018, China.

Department of Plant Biology and Ecology, College of Life Sciences, Nankai University, Tian'jin 300071, China.

出版信息

Plant Physiol. 2023 Aug 31;193(1):140-155. doi: 10.1093/plphys/kiad196.

Abstract

Pollen germination is a process of polarity establishment, through which a single and unique growth axis is established. Although most of the intracellular activities associated with pollen germination are controlled by RHO OF PLANTs (ROPs) and increased ROP activation accompanies pollen germination, a critical role of ROPs in this process has not yet been demonstrated. Here, by genomic editing of all 4 Arabidopsis (Arabidopsis thaliana) ROPs that are preferentially expressed in pollen, we showed that ROPs are essential for polarity establishment during pollen germination. We further identified and characterized 2 ROP effectors in pollen germination (REGs) through genome-wide interactor screening, boundary of ROP domain (BDR) members BDR8 and BDR9, whose functional loss also resulted in no pollen germination. BDR8 and BDR9 were distributed in the cytosol and the vegetative nucleus of mature pollen grains but redistributed to the plasma membrane (PM) of the germination site and to the apical PM of growing pollen tubes. We demonstrated that the PM redistribution of BDR8 and BDR9 during pollen germination relies on ROPs but not vice versa. Furthermore, enhanced expression of BDR8 partially restored germination of rop1 pollen but had no effects on that of the quadruple rop pollen, supporting their genetic epistasis. Results presented here demonstrate an ROP signaling route essential for pollen germination, which supports evolutionarily conserved roles of Rho GTPases in polarity establishment.

摘要

花粉萌发是一个建立极性的过程,通过这个过程,建立了一个单一而独特的生长轴。尽管与花粉萌发相关的大多数细胞内活动都受到植物 RHO(ROPs)的控制,并且 ROP 的激活伴随着花粉萌发,但 ROP 在这个过程中的关键作用尚未得到证明。在这里,通过对所有在花粉中优先表达的 4 个拟南芥(Arabidopsis thaliana) ROP 的基因组编辑,我们表明 ROP 对于花粉萌发过程中的极性建立是必不可少的。我们通过全基因组互作筛选进一步鉴定和表征了花粉萌发中的 2 个 ROP 效应子(REGs),边界 ROP 结构域(BDR)成员 BDR8 和 BDR9,它们的功能缺失也导致花粉无法萌发。BDR8 和 BDR9 分布在成熟花粉粒的细胞质和营养核中,但重新分布到萌发部位的质膜(PM)和生长花粉管的顶端 PM。我们证明了 BDR8 和 BDR9 在花粉萌发过程中的 PM 再分布依赖于 ROP,但反之则不然。此外,BDR8 的过表达部分恢复了 rop1 花粉的萌发,但对四重 rop 花粉没有影响,支持它们的遗传上位性。这里呈现的结果表明,ROP 信号通路对于花粉萌发是必不可少的,这支持了 Rho GTPases 在极性建立中的进化保守作用。

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