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Generation of Superoxide by OeRbohH a NADPH Oxidase Activity During Olive (Olea europaea L.) Pollen Development and Germination

机译:OeRbohH产生超氧化物橄榄(Olea europaea L.)花粉发育和萌发过程中NADPH氧化酶活性

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摘要

Reactive oxygen species (ROS) are produced in the olive reproductive organs as the result of intense metabolism. ROS production and pattern of distribution depend on the developmental stage, supposedly playing a broad panel of functions, which include defense and signaling between pollen and pistil. Among ROS-producing mechanisms, plasma membrane NADPH-oxidase activity is being highlighted in plant tissues, and two enzymes of this type have been characterized in Arabidopsis thaliana pollen (RbohH and RbohJ), playing important roles in pollen physiology. Besides, pollen from different species has shown distinct ROS production mechanism and patterns of distribution. In the olive reproductive tissues, a significant production of superoxide has been described. However, the enzymes responsible for such generation are unknown. Here, we have identified an Rboh-type gene (OeRbohH), mainly expressed in olive pollen. OeRbohH possesses a high degree of identity with RbohH and RbohJ from Arabidopsis, sharing most structural features and motifs. Immunohistochemistry experiments allowed us to localize OeRbohH throughout pollen ontogeny as well as during pollen tube elongation. Furthermore, the balanced activity of tip-localized OeRbohH during pollen tube growth has been shown to be important for normal pollen physiology. This was evidenced by the fact that overexpression caused abnormal phenotypes, whereas incubation with specific NADPH oxidase inhibitor or gene knockdown lead to impaired ROS production and subsequent inhibition of pollen germination and pollen tube growth.
机译:强烈的新陈代谢会在橄榄的生殖器官中产生活性氧(ROS)。 ROS的产生和分布方式取决于发育阶段,据推测具有广泛的功能,其中包括花粉和雌蕊之间的防御和信号传导。在产生ROS的机制中,植物组织中突出了质膜NADPH氧化酶活性,并且已经在拟南芥花粉中表征了这种类型的两种酶(RbohH和RbohJ),在花粉生理中起重要作用。此外,不同物种的花粉表现出不同的ROS产生机理和分布模式。在橄榄的生殖组织中,已经描述了大量产生的超氧化物。然而,负责这种产生的酶是未知的。在这里,我们确定了Rboh型基因(OeRbohH),主要在橄榄花粉中表达。 OeRbohH与拟南芥中的RbohH和RbohJ具有高度同一性,具有大多数结构特征和基序。免疫组织化学实验使我们能够将OeRbohH定位在整个花粉发育期以及花粉管伸长过程中。此外,花粉管生长过程中尖端定位的OeRbohH的平衡活性已显示对正常的花粉生理很重要。这由以下事实证明:过表达引起异常表型,而与特定的NADPH氧化酶抑制剂或基因敲除一起孵育会导致ROS产生受损,并随后抑制花粉萌发和花粉管生长。

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