首页> 外文期刊>The Plant Cell >Tomato Pistil Factor STIG1 Promotes in Vivo Pollen Tube Growth by Binding to Phosphatidylinositol 3-Phosphate and the Extracellular Domain of the Pollen Receptor Kinase LePRK2
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Tomato Pistil Factor STIG1 Promotes in Vivo Pollen Tube Growth by Binding to Phosphatidylinositol 3-Phosphate and the Extracellular Domain of the Pollen Receptor Kinase LePRK2

机译:番茄雌蕊因子STIG1通过结合磷脂酰肌醇3-磷酸和花粉受体激酶LePRK2的胞外域促进体内花粉管生长。

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摘要

The speed of pollen tube growth is a major determinant of reproductive success in flowering plants. Tomato (Solanum lycopersicum) STIGMA-SPECIFIC PROTEIN1 (STIG1), a small Cys-rich protein from the pistil, was previously identified as a binding partner of the pollen receptor kinase LePRK2 and shown to promote pollen tube growth in vitro. However, the in vivo function of STIG1 and the underlying mechanism of its promotive effect were unknown. Here, we show that a 7-kD processed peptide of STIG1 is abundant in the stigmatic exudate and accumulates at the pollen tube surface, where it can bind LePRK2. Antisense LePRK2 pollen was less responsive than wild-type pollen to exogenous STIG1 in an in vitro pollen germination assay. Silencing of STIG1 reduced both the in vivo pollen tube elongation rate and seed production. Using partial deletion and point mutation analyses, two regions underlying the promotive activity of the STIG1 processed peptide were identified: amino acids 80 to 83, which interact with LePRK2; and amino acids 88 to 115, which bind specifically to phosphatidylinositol 3-phosphate [PI(3)P]. Furthermore, exogenous STIG1 elevated the overall redox potential of pollen tubes in both PI(3)P-dependent and LePRK2-dependent manners. Our results demonstrate that STIG1 conveys growth-promoting signals acting through the pollen receptor kinase LePRK2, a process that relies on the external phosphoinositide PI(3)P.
机译:花粉管的生长速度是开花植物繁殖成功的主要决定因素。番茄(Solanum lycopersicum)STIGMA特异蛋白1(STIG1)是一种来自雌蕊的富含Cys的小蛋白,以前被鉴定为花粉受体激酶LePRK2的结合伴侣,并显示出在体外促进花粉管生长的作用。但是,STIG1的体内功能及其促进作用的潜在机制尚不清楚。在这里,我们显示了STIG1的7 kD处理肽在散光渗出液中丰富,并积累在花粉管表面,可以结合LePRK2。在体外花粉萌发试验中,反义LePRK2花粉对野生型花粉的反应性低于野生型花粉。 STIG1的沉默降低了体内花粉管的伸长率和种子产量。使用部分缺失和点突变分析,确定了STIG1加工的肽的促活性基础的两个区域:与LePRK2相互作用的80至83位氨基酸;以及与LePRK2相互作用的80至83位氨基酸。氨基酸88至115,其与磷脂酰肌醇3-磷酸[PI(3)P]特异性结合。此外,外源STIG1以PI(3)P依赖和LePRK2依赖的方式提高了花粉管的整体氧化还原电位。我们的结果表明,STIG1传递通过花粉受体激酶LePRK2起作用的促进生长的信号,该过程依赖于外部磷酸肌醇PI(3)P。

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