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两种拟南芥AGC激酶对花粉管的极性生长至关重要。

Two Arabidopsis AGC kinases are critical for the polarized growth of pollen tubes.

作者信息

Zhang Yan, He Junmin, McCormick Sheila

机构信息

Plant Gene Expression Center, United States Department of Agriculture/Agricultural Research Service, University of California at Berkeley, 800 Buchanan Street, Albany, CA 94710, USA.

出版信息

Plant J. 2009 May;58(3):474-84. doi: 10.1111/j.1365-313X.2009.03792.x. Epub 2009 Jan 8.

Abstract

Reproduction of flowering plants requires the growth of pollen tubes to deliver immotile sperm for fertilization. Pollen tube growth resembles that of polarized metazoan cells, in that some molecular mechanisms underlying cell polarization and growth are evolutionarily conserved, including the functions of Rho GTPases and the dynamics of the actin cytoskeleton. However, a role for AGC kinases, crucial signaling mediators in polarized metazoan cells, has yet to be shown in pollen tubes. Here we demonstrate that two Arabidopsis AGC kinases are critical for polarized growth of pollen tubes. AGC1.5 and AGC1.7 are pollen-specific genes expressed during late developmental stages. Pollen tubes of single mutants had no detectable phenotypes during in vitro or in vivo germination, whereas those of double mutants were wider and twisted, due to frequent changes of growth trajectory in vitro. Pollen tubes of the double mutant also had reduced growth and were probably compromised in response to guidance cues in vivo. In the agc1.5 background, downregulation of AGC1.7 using an antisense construct phenocopied the growth defect of double mutant pollen tubes, providing additional support for a redundant function of AGC1.5/1.7 in pollen tube growth. Using the actin marker mouse Talin, we show that pollen tubes of double mutants had relatively unaffected longitudinal actin cables but had ectopic filamentous actin, indicating disturbed control of polarity. Our results demonstrate that AGC1.5 and AGC1.7 are critical components of the internal machinery of the pollen tube leading to polarized growth of pollen tubes.

摘要

开花植物的繁殖需要花粉管生长以输送不能移动的精子来完成受精。花粉管的生长类似于极化的后生动物细胞,因为一些细胞极化和生长的分子机制在进化上是保守的,包括Rho GTP酶的功能和肌动蛋白细胞骨架的动态变化。然而,AGC激酶作为极化后生动物细胞中的关键信号介质,其在花粉管中的作用尚未得到证实。在此,我们证明了两种拟南芥AGC激酶对花粉管的极化生长至关重要。AGC1.5和AGC1.7是在发育后期表达的花粉特异性基因。单突变体的花粉管在体外或体内萌发过程中没有可检测到的表型,而双突变体的花粉管更宽且扭曲,这是由于体外生长轨迹频繁变化所致。双突变体的花粉管生长也有所减少,并且可能在体内对引导信号的反应中受到损害。在agc1.5背景下,使用反义构建体下调AGC1.7可模拟双突变体花粉管的生长缺陷,为AGC1.5/1.7在花粉管生长中的冗余功能提供了额外支持。使用肌动蛋白标记物小鼠踝蛋白,我们发现双突变体的花粉管纵向肌动蛋白索相对未受影响,但有异位丝状肌动蛋白,表明极性控制受到干扰。我们的结果表明,AGC1.5和AGC1.7是花粉管内部机制的关键组成部分,导致花粉管极化生长。

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