首页> 外文期刊>The Plant Cell >oiwa, a female gametophytic mutant impaired in a mitochondrial manganese-superoxide dismutase, reveals crucial roles for reactive oxygen species during embryo sac development and fertilization in Arabidopsis.
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oiwa, a female gametophytic mutant impaired in a mitochondrial manganese-superoxide dismutase, reveals crucial roles for reactive oxygen species during embryo sac development and fertilization in Arabidopsis.

机译:oiwa是线粒体锰超氧化物歧化酶受损的雌配子体突变体,在拟南芥的胚囊发育和受精过程中揭示了活性氧的关键作用。

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Reactive oxygen species (ROS) can function as signaling molecules, regulating key aspects of plant development, or as toxic compounds leading to oxidative damage. In this article, we show that the regulation of ROS production during megagametogenesis is largely dependent on MSD1, a mitochondrial Mn-superoxide dismutase. Wild-type mature embryo sacs show ROS exclusively in the central cell, which appears to be the main source of ROS before pollination. Accordingly, MSD1 shows a complementary expression pattern. MSD1 expression is elevated in the egg apparatus at maturity but is downregulated in the central cell. The oiwa mutants are characterized by high levels of ROS detectable in both the central cell and the micropylar cells. Remarkably, egg apparatus cells in oiwa show central cell features, indicating that high levels of ROS result in the expression of central cell characteristic genes. Notably, ROS are detected in synergid cells after pollination. This ROS burst depends on stigma pollination but precedes fertilization, suggesting that embryo sacs sense the imminent arrival of pollen tubes and respond by generating an oxidative environment. Altogether, we show that ROS play a crucial role during female gametogenesis and fertilization. MSD1 activity seems critical for maintaining ROS localization and important for embryo sac patterning.
机译:活性氧(ROS)可以充当信号分子,调节植物发育的关键方面,或作为导致氧化损伤的有毒化合物。在本文中,我们表明巨配子发生过程中ROS产生的调节很大程度上取决于线粒体Mn超氧化物歧化酶MSD1。野生型成熟胚囊仅在中央细胞中显示ROS,这似乎是授粉前ROS的主要来源。因此,MSD1显示出互补的表达模式。成熟时,鸡蛋设备中的MSD1表达升高,但中央细胞中的表达降低。 oiwa突变体的特征在于在中央细胞和毛孔细胞中都可检测到高水平的ROS。值得注意的是,卵子中的卵器细胞显示出中央细胞特征,表明高水平的ROS导致中央细胞特征基因的表达。值得注意的是,授粉后在协同细胞中检测到ROS。 ROS的爆发取决于柱头授粉,但在受精之前,这表明胚囊感觉到花粉管即将到来并通过产生氧化环境做出反应。总而言之,我们表明ROS在女性配子发生和受精过程中起着至关重要的作用。 MSD1活性似乎对维持ROS的定位至关重要,对胚胎囊的形成也很重要。

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