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首页> 外文期刊>The Plant Cell >Ca2+-activated reactive oxygen species production by Arabidopsis RbohH and RbohJ is essential for proper pollen tube tip growth.
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Ca2+-activated reactive oxygen species production by Arabidopsis RbohH and RbohJ is essential for proper pollen tube tip growth.

机译:拟南芥RbohH和RbohJ产生Ca 2 + 活化的活性氧对于花粉管尖端的正常生长至关重要。

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In flowering plants, pollen germinates on the stigma and pollen tubes grow through the style to fertilize the ovules. Enzymatic production of reactive oxygen species (ROS) has been suggested to be involved in pollen tube tip growth. Here, we characterized the function and regulation of the NADPH oxidases RbohH and RbohJ (Respiratory burst oxidase homolog H and J) in pollen tubes in Arabidopsis thaliana. In the rbohH and rbohJ single mutants, pollen tube tip growth was comparable to that of the wild type; however, tip growth was severely impaired in the double mutant. In vivo imaging showed that ROS accumulation in the pollen tube was impaired in the double mutant. Both RbohH and RbohJ, which contain Ca2+ binding EF-hand motifs, possessed Ca2+-induced ROS-producing activity and localized at the plasma membrane of the pollen tube tip. Point mutations in the EF-hand motifs impaired Ca2+-induced ROS production and complementation of the double mutant phenotype. We also showed that a protein phosphatase inhibitor enhanced the Ca2+-induced ROS-producing activity of RbohH and RbohJ, suggesting their synergistic activation by protein phosphorylation and Ca2+. Our results suggest that ROS production by RbohH and RbohJ is essential for proper pollen tube tip growth, and furthermore, that Ca2+-induced ROS positive feedback regulation is conserved in the polarized cell growth to shape the long tubular cell.
机译:在开花植物中,花粉在柱头上发芽,花粉管通过花柱生长从而使胚珠受精。已建议酶促活性氧(ROS)的产生与花粉管尖端的生长有关。在这里,我们表征了拟南芥花粉管中NADPH氧化酶RbohH和RbohJ(呼吸爆发氧化酶同源物H和J)的功能和调控。在rbohH和rbohJ单突变体中,花粉管尖端的生长与野生型相当。然而,双突变体的尖端生长严重受损。体内成像显示双重突变体中花粉管中的ROS积累受到损害。含有Ca 2 + 结合EF手基序的RbohH和RbohJ均具有Ca 2 + 诱导的ROS产生活性,并位于花粉管质膜上。小费。 EF-手基序中的点突变削弱了Ca 2 + 诱导的ROS产生和双重突变表型的互补。我们还表明,蛋白磷酸酶抑制剂可增强Ca 2 + 诱导的RbohH和RbohJ的ROS产生活性,表明它们通过蛋白磷酸化和Ca 2 + 的协同激活。我们的研究结果表明,RbohH和RbohJ产生ROS对于花粉管尖端的正常生长至关重要,此外,Ca 2 + 诱导的ROS正反馈调节在极化细胞生长中保持长形。肾小管细胞。

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