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首页> 外文期刊>Journal of Cell Science >S-RNase disrupts tip-localized reactive oxygen species and induces nuclear DNA degradation in incompatible pollen tubes of Pyrus pyrifolia.
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S-RNase disrupts tip-localized reactive oxygen species and induces nuclear DNA degradation in incompatible pollen tubes of Pyrus pyrifolia.

机译:S-RNase破坏了梨的不相容花粉管中的尖端定位活性氧,并诱导核DNA降解。

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摘要

Pear (Pyrus pyrifolia L.) has an S-RNase-based gametophytic self-incompatibility (SI) mechanism, and S-RNase has also been implicated in the rejection of self-pollen and genetically identical pollen. However, RNA degradation might be only the beginning of the SI response, not the end. Recent in vitro studies suggest that S-RNase triggers mitochondrial alteration and DNA degradation in the incompatible pollen tube of Pyrus pyrifolia, and it seems that a relationship exists between self S-RNase, actin depolymerization and DNA degradation. To further uncover the SI response in pear, the relationship between self S-RNase and tip-localized reactive oxygen species (ROS) was evaluated. Our results show that S-RNase specifically disrupted tip-localized ROS of incompatible pollen tubes via arrest of ROS formation in mitochondria and cell walls. The mitochondrial ROS disruption was related to mitochondrial alteration, whereas cell wall ROS disruption was related to a decrease in NADPH. Tip-localized ROS disruption not only decreased the Ca(2+) current and depolymerized the actin cytoskeleton, but it also induced nuclear DNA degradation. These results indicate that tip-localized ROS disruption occurs in Pyrus pyrifolia SI. Importantly, we demonstrated nuclear DNA degradation in the incompatible pollen tube after pollination in vivo. This result validates our in vitro system in vivo.
机译:梨(Pyrus pyrifolia L.)具有基于S-RNase的配子体自溶性(SI)机制,并且S-RNase也与抑制自花粉和遗传上相同的花粉有关。但是,RNA降解可能只是SI反应的开始,而不是结束。最近的体外研究表明,S-RNase触发了梨梨不相容花粉管中的线粒体改变和DNA降解,并且似乎在自身S-RNase,肌动蛋白解聚与DNA降解之间存在关系。为了进一步揭示梨中的SI反应,评估了自身S-RNase与尖端定位的活性氧(ROS)之间的关系。我们的结果表明,S-RNase通过阻止线粒体和细胞壁中ROS的形成来特异性破坏不相容花粉管的尖端定位ROS。线粒体ROS破坏与线粒体改变有关,而细胞壁ROS破坏与NADPH减少有关。尖端定位的ROS破坏不仅降低了Ca(2+)电流并解聚了肌动蛋白的细胞骨架,而且还诱导了核DNA的降解。这些结果表明,在Pyrus pyrifolia SI中发生了尖端定位的ROS破坏。重要的是,我们证明了体内授粉后不相容的花粉管中的核DNA降解。该结果验证了我们体内的体外系统。

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