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Salt stress-induced FERROCHELATASE 1 improves resistance to salt stress by limiting sodium accumulation in Arabidopsis thaliana

机译:盐胁迫诱导的FERROCHELATASE 1通过限制拟南芥中的钠积累来提高对盐胁迫的抗性

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摘要

Ferrochelatase-1 as a terminal enzyme of heme biosynthesis regulates many essential metabolic and physiological processes. Whether FC1 is involved in plant response to salt stress has not been described. This study shows that Arabidopsis overexpressing AtFC1 displays resistance to high salinity, whereas a T-DNA insertion knock-down mutant fc1 was more sensitive to salt stress than wild-type plants. AtFC1 conferred plant salt resistance by reducing Na+ concentration, enhancing K+ accumulation and preventing lysis of the cell membrane. Such observations were associated with the upregulation of SOS1, which encodes a plasma membrane Na+/H+ antiporter. AtFC1 overexpression led to a reduced expression of several well known salt stress-responsive genes such as NHX1 and AVP1, suggesting that AtFC1-regulated low concentration of Na+ in plants might not be through the mechanism for Na+ sequestration. To investigate the mechanism leading to the role of AtFC1 in mediating salt stress response in plants, a transcriptome of fc1 mutant plants under salt stress was profiled. Our data show that mutation of AtFC1 led to 490 specific genes up-regulated and 380 specific genes down-regulated in fc1 mutants under salt stress. Some of the genes are involved in salt-induced oxidative stress response, monovalent cation-proton (Na+/H+) exchange, and Na+ detoxification.
机译:Ferrochelatase-1作为血红素生物合成的末端酶,调节许多重要的代谢和生理过程。尚未描述FC1是否参与植物对盐胁迫的反应。这项研究表明,过表达AtFC1的拟南芥显示出对高盐度的抗性,而与野生型植物相比,T-DNA插入敲低突变体fc1对盐胁迫更敏感。 AtFC1通过降低Na + 浓度,增强K + 积累并防止细胞膜溶解而赋予植物抗盐性。这些观察结果与SOS1的上调有关,SOS1编码质膜Na + / H + 反向转运蛋白。 AtFC1的过表达导致几种著名的盐胁迫响应基因(例如NHX1和AVP1)的表达减少,这表明AtFC1调控植物中低浓度的Na + 可能不是通过Na < sup> + 隔离。为了研究导致AtFC1介导植物盐胁迫响应的机制,分析了盐胁迫下fc1突变植物的转录组。我们的数据表明,在盐胁迫下,fc1突变体中AtFC1的突变导致490个特定基因上调,而380个特定基因下调。一些基因参与盐诱导的氧化应激反应,单价阳离子质子(Na + / H + )交换和Na + 排毒。

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