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非常长链烷烃生物合成缺陷通过影响花粉黏附和水合作用导致水稻湿度敏感型雄性不育。

Deficiency of very long chain alkanes biosynthesis causes humidity-sensitive male sterility via affecting pollen adhesion and hydration in rice.

机构信息

Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing, China.

College of Life Science, University of Chinese Academy of Sciences, Beijing, China.

出版信息

Plant Cell Environ. 2019 Dec;42(12):3340-3354. doi: 10.1111/pce.13637. Epub 2019 Aug 14.

Abstract

Pollen adhesion and hydration are the earliest events of the pollen-stigma interactions, which allow compatible pollen to fertilize egg cells, but the underlying mechanisms are still poorly understood. Rice pollen are wind dispersed, and its pollen coat contains less abundant lipids than that of insect-pollinated plants. Here, we characterized the role of OsGL1-4, a rice member of the Glossy family, in pollen adhesion and hydration. OsGL1-4 is preferentially expressed in pollen and tapetal cells and is required for the synthesis of very long chain alkanes. osgl1-4 mutant generated apparently normal pollen but displayed excessively fast dehydration at anthesis and defective adhesion and hydration under normal condition, but the defective adhesion and hydration were rescued by high humidity. Gas chromatography-mass spectrometry analysis suggested that the humidity-sensitive male sterility of osgl1-4 was probably due to a significant reduction in C25 and C27 alkanes. These results indicate that very long chain alkanes are components of rice pollen coat and control male fertility via affecting pollen adhesion and hydration in response to environmental humidity. Moreover, we proposed that a critical point of water content in mature pollen is required for the initiation of pollen adhesion.

摘要

花粉黏附和水合作用是花粉-柱头相互作用的最早事件,这使得亲和花粉能够受精卵细胞,但其中的潜在机制仍知之甚少。水稻花粉是风媒传播的,其花粉外壁所含的脂质比虫媒授粉植物少。在这里,我们描述了水稻 Glossy 家族成员 OsGL1-4 在花粉黏附和水合作用中的作用。OsGL1-4 在花粉和绒毡层细胞中优先表达,是合成超长链烷烃所必需的。osgl1-4 突变体产生的花粉虽然外观正常,但在开花时脱水过快,在正常条件下黏附和水合作用缺陷,而在高湿度下,这种缺陷得到了挽救。气相色谱-质谱分析表明,osgl1-4 的湿度敏感雄性不育可能是由于 C25 和 C27 烷烃的显著减少。这些结果表明,超长链烷烃是水稻花粉外壁的组成部分,通过影响花粉黏附和水合作用对环境湿度的响应来控制雄性育性。此外,我们提出成熟花粉中含水量的临界点是花粉黏附起始所必需的。

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