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首页> 外文期刊>Plant signaling & behavior >Further analysis of XBAT32, an Arabidopsis RING E3 ligase, involved in ethylene biosynthesis.
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Further analysis of XBAT32, an Arabidopsis RING E3 ligase, involved in ethylene biosynthesis.

机译:XBAT32,一种拟南芥的RING E3连接酶,参与乙烯生物合成的进一步分析。

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摘要

The Arabidopsis RING E3 ligase, XBAT32, was previously characterized as a regulator of lateral root initiation. However, how XBAT32 function to modulate lateral root initiation was unknown. In our recent paper, we demonstrated that XBAT32 is involved in ethylene biosynthesis and it is through this function that XBAT32 is able to regulate lateral root production. Here we discuss a few other findings, observed in the ethylene overproducing mutant, xbat32, that reflect the effect of elevated ethylene levels on plant growth and development. Ethylene signaling also regulates plant responses to adverse environmental conditions such as high salinity. Consistent with ethylene's role as a stress hormone, xbat32 exhibited increased sensitivity to salt stress during seed germination and postgerminative growth. Thus, XBAT32 may also play a role in ethylene mediated response to abiotic stresses.
机译:拟南芥RING E3连接酶XBAT32以前被认为是侧根起始的调节剂。但是,尚不清楚XBAT32如何调节侧向根部启动。在我们最近的论文中,我们证明了XBAT32参与乙烯的生物合成,并且通过该功能XBAT32能够调节侧根的生产。在这里,我们讨论了在乙烯过量生产突变体xbat32中观察到的其他一些发现,这些发现反映了乙烯水平升高对植物生长和发育的影响。乙烯信号还调节植物对不利环境条件(例如高盐度)的反应。与乙烯作为胁迫激素的作用一致,xbat32在种子发芽和发芽后生长期间对盐胁迫表现出更高的敏感性。因此,XBAT32也可能在乙烯介导的非生物胁迫响应中发挥作用。

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