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首页> 外文期刊>Plant physiology >Two Mitogen-Activated Protein Kinases, MPK3 and MPK6, Are Required for Funicular Guidance of Pollen Tubes in Arabidopsis
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Two Mitogen-Activated Protein Kinases, MPK3 and MPK6, Are Required for Funicular Guidance of Pollen Tubes in Arabidopsis

机译:拟南芥花粉管的缆索引导需要两种丝裂原激活的蛋白激酶MPK3和MPK6。

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Double fertilization in flowering plants requires the delivery of two immotile sperm cells to the female gametes by a pollen tube, which perceives guidance cues, modifies its tip growth direction, and eventually enters the micropyle of the ovule. In spite of the recent progress, so far, little is known about the signaling events in pollen tubes in response to the guidance cues. Here, we show that MPK3 and MPK6, two Arabidopsis (Arabidopsis thaliana) mitogen-activated protein kinases, mediate the guidance response in pollen tubes. Genetic analysis revealed that mpk3 mpk6 double mutant pollen has reduced transmission. However, direct observation of mpk3 mpk6 mutant pollen phenotype was hampered by the embryo lethality of double homozygous mpk3~(–/–) mpk6~(–/–) plants. Utilizing a fluorescent reporter-tagged complementation method, we showed that the mpk3 mpk6 mutant pollen had normal pollen tube growth but impaired pollen tube guidance. In vivo pollination assays revealed that the mpk3 mpk6 mutant pollen tubes were defective in the funicular guidance phase. By contrast, semi-in vitro guidance assay showed that the micropylar guidance of the double mutant pollen tube was normal. Our results provide direct evidence to support that the funicular guidance phase of the pollen tube requires an in vivo signaling mechanism distinct from the micropyle guidance. Moreover, our finding opened up the possibility that the MPK3/MPK6 signaling pathway may link common signaling networks in plant stress response and pollen-pistil interaction.
机译:开花植物中的双重受精需要通过花粉管将两个不育的精子细胞传递到雌配子,该花粉管感知引导线索,改变其尖端生长方向,并最终进入胚珠的小孔。尽管有最近的进展,到目前为止,对花粉管中的信号事件响应引导线索知之甚少。在这里,我们显示MPK3和MPK6,两个拟南芥(Arabidopsis thaliana)丝裂原激活的蛋白激酶,介导花粉管中的引导反应。遗传分析表明,mpk3 mpk6双突变体花粉具有减少的传播。但是,直接观察到mpk3 mpk6突变体花粉表型受到双重纯合mpk3〜(– / –)mpk6〜(– / –)植物的胚胎致死率的影响。使用荧光记者标记的互补方法,我们显示了mpk3 mpk6突变体花粉具有正常的花粉管生长,但削弱了花粉管的引导。体内授粉试验表明,mpk3 mpk6突变体花粉管在缆索引导阶段存在缺陷。相比之下,半体外引导试验表明双重突变体花粉管的孔穴引导是正常的。我们的结果提供了直接的证据来支持花粉管的缆索引导阶段需要不同于微粒引导的体内信号传导机制。此外,我们的发现开辟了MPK3 / MPK6信号通路可能在植物胁迫反应和花粉雌蕊相互作用中链接常见信号网络的可能性。

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