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首页> 外文期刊>Frontiers in Plant Science >Involvement of Polyamine Oxidase-Produced Hydrogen Peroxide during Coleorhiza-Limited Germination of Rice Seeds
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Involvement of Polyamine Oxidase-Produced Hydrogen Peroxide during Coleorhiza-Limited Germination of Rice Seeds

机译:多胺氧化酶产生的过氧化氢参与稻瘟病菌限制的水稻种子萌发

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Seed germination is a complicated biological process that requires regulated enzymatic and non-enzymatic reactions. The action of polyamine oxidase (PAO) produces hydrogen peroxide (H_(2)O_(2)), which promotes dicot seed germination. However, whether and, if so, how PAOs regulate monocot seed germination via H_(2)O_(2)production is unclear. Herein, we report that the coleorhiza is the main physical barrier to radicle protrusion during germination of rice seed (a monocot seed) and that it does so in a manner similar to that of dicot seed micropylar endosperm. We found that H_(2)O_(2)specifically and steadily accumulated in the coleorhizae and radicles of germinating rice seeds and was accompanied by increased PAO activity as the germination percentage increased. These physiological indexes were strongly decreased in number by guazatine, a PAO inhibitor. We also identified 11 PAO homologs ( OsPAO1–11 ) in the rice genome, which could be classified into four subfamilies (I, IIa, IIb, and III). The OsPAO genes in subfamilies I, IIa, and IIb ( OsPAO1–7 ) encode PAOs, whereas those in subfamily III ( OsPAO8–11 ) encode histone lysine-specific demethylases. In silico -characterized expression profiles of OsPAO1–7 and those determined by qPCR revealed that OsPAO5 is markedly upregulated in imbibed seeds compared with dry seeds and that its transcript accumulated to a higher level in embryos than in the endosperm. Moreover, its transcriptional abundance increased gradually during seed germination in water and was inhibited by 5 mM guazatine. Taken together, these results suggest that PAO-generated H_(2)O_(2)is involved in coleorhiza-limited rice seed germination and that OsPAO5 expression accounts for most PAO expression and activity during rice seed germination. These findings should facilitate further study of PAOs and provide valuable information for functional validation of these proteins during seed germination of monocot cereals.
机译:种子发芽是一个复杂的生物学过程,需要受控的酶促反应和非酶促反应。多胺氧化酶(PAO)的作用产生过氧化氢(H_(2)O_(2)),促进双子叶植物种子发芽。但是,PAO是否以及是否通过H_(2)O_(2)产生来调节单子叶植物种子萌发尚不清楚。在本文中,我们报道了鞘翅目是水稻种子(单子叶植物种子)发芽过程中胚根突出的主要物理障碍,并且它的行为与双子叶植物种子的胚珠胚乳相似。我们发现H_(2)O_(2)特异性地和稳定地积累在发芽水稻种子的鞘翅目和胚根中,并且随着发芽率的增加,伴随着PAO活性的增加。这些生理指标的数量被PAO抑制剂guazatine大大降低了。我们还鉴定了水稻基因组中的11个PAO同源物(OsPAO1-11),可以将其分为四个亚家族(I,IIa,IIb和III)。 I,IIa和IIb子家族(OsPAO1-7)中的OsPAO基因编码PAO,而III子家族(OsPAO8-11)中的OsPAO基因编码组蛋白赖氨酸特异性脱甲基酶。在计算机上表征的OsPAO1–7的表达谱以及通过qPCR确定的表达谱表明,与干燥种子相比,OsPAO5在浸入种子中显着上调,并且其转录本在胚中的积累量高于胚乳。此外,其转录丰度在水中的种子发芽过程中逐渐增加,并被5 mM的guazatine抑制。两者合计,这些结果表明,PAO生成的H_(2)O_(2)参与了鞘翅目限制的水稻种子萌发,而OsPAO5表达占水稻种子萌发过程中大多数PAO表达和活性的原因。这些发现应有助于对PAO的进一步研究,并为单子叶谷物种子萌发期间这些蛋白质的功能验证提供有价值的信息。

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