PCP ‐B class pollen coat proteins are key regulators of the hydration checkpoint in A rabidopsis thaliana pollen–stigma interactions

花粉 花粉管 生物 双受精 突变体 十字花科 雌蕊 植物 有性生殖 授粉 细胞生物学 遗传学 雄蕊 基因
作者
Ludi Wang,Lisa A. Clarke,Russell J. Eason,Christopher Parker,Baoxiu Qi,Rod J Scott,James Doughty
出处
期刊:New Phytologist [Wiley]
卷期号:213 (2): 764-777 被引量:96
标识
DOI:10.1111/nph.14162
摘要

The establishment of pollen-pistil compatibility is strictly regulated by factors derived from both male and female reproductive structures. Highly diverse small cysteine-rich proteins (CRPs) have been found to play multiple roles in plant reproduction, including the earliest stages of the pollen-stigma interaction. Secreted CRPs found in the pollen coat of members of the Brassicaceae, the pollen coat proteins (PCPs), are emerging as important signalling molecules that regulate the pollen-stigma interaction. Using a combination of protein characterization, expression and phylogenetic analyses we identified a novel class of Arabidopsis thaliana pollen-borne CRPs, the PCP-Bs (for pollen coat protein B-class) that are related to embryo surrounding factor (ESF1) developmental regulators. Single and multiple PCP-B mutant lines were utilized in bioassays to assess effects on pollen hydration, adhesion and pollen tube growth. Our results revealed that pollen hydration is severely impaired when multiple PCP-Bs are lost from the pollen coat. The hydration defect also resulted in reduced pollen adhesion and delayed pollen tube growth in all mutants studied. These results demonstrate that AtPCP-Bs are key regulators of the hydration 'checkpoint' in establishment of pollen-stigma compatibility. In addition, we propose that interspecies diversity of PCP-Bs may contribute to reproductive barriers in the Brassicaceae.
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