拟南芥中磷酸肌苷的错误调控会降低花粉水合作用和母亲的生育能力。

Sexual Plant Reproduction Pub Date : 2011-12-01 Epub Date: 2011-06-21 DOI:10.1007/s00497-011-0172-1
Laura A Chapman, Daphne R Goring
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引用次数: 17

摘要

磷酸肌苷是参与膜识别、囊泡运输和细胞内信号传递的重要脂质。近年来,磷酸肌苷已被证明在植物的极化分泌中起着至关重要的作用,因为磷酸肌苷代谢受到干扰,通过功能突变体的丧失,导致根毛伸长和花粉管生长缺陷,在这些缺陷中,极化分泌迅速发生。在芸苔科植物中,柱头乳突对相容花粉的反应也被认为涉及高度调节的分泌事件,以促进花粉水化和花粉管穿过柱头表面。因此,我们试图分析根毛缺陷4-1突变体和PI4 -激酶β1/β2双突变体的雌性孢子体育性,它们对磷脂酰肌醇-4-磷酸(PI4P)水平有不同的影响。这两个突变体的柱头支持较慢的花粉粒水化速率,并且由于授粉失败,这些突变体的繁殖力也降低了。因此,本研究得出结论,PI4P是雌蕊对相容花粉作出适当反应的必要条件。
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Misregulation of phosphoinositides in Arabidopsis thaliana decreases pollen hydration and maternal fertility.

Phosphoinositides are important lipids involved in membrane identity, vesicle trafficking, and intracellular signaling. In recent years, phosphoinositides have been shown to play a critical role in polarized secretion in plants, as perturbations of phosphoinositide metabolism, through loss of function mutants, result in defects in root hair elongation and pollen tube growth, where polarized secretion occurs rapidly. In the Brassicaceae, responses of stigmatic papillae to compatible pollen are also thought to involve highly regulated secretory events to facilitate pollen hydration and penetration of the pollen tube through the stigmatic surface. We therefore sought to analyze the female sporophyte fertility of the root hair defective4-1 mutant and the PI 4-kinase β1/β2 double mutant, which differentially affect phosphatidylinositol-4-phosphate (PI4P) levels. Stigmas from both mutants supported slower rates of pollen grain hydration, and the fecundity of these mutants was also diminished as a result of failed pollination events. This study therefore concludes that PI4P is integral to appropriate pistil responses to compatible pollen.

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来源期刊
Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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