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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >The durum wheat plasma membrane Na+/H+ antiporter SOS1 is involved in oxidative stress response
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The durum wheat plasma membrane Na+/H+ antiporter SOS1 is involved in oxidative stress response

机译:硬质小麦等离子体膜Na + / H +炔醇SOS1参与氧化应激反应

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We have shown previously that the durum wheat TdSOS1 excludes Na+ and Li+ ions outside cells. Moreover, this protein is activated by Arabidopsis kinase SOS2 through phosphorylation. The elimination of both SOS2 phosphorylation sites and the auto-inhibitory domain produces a hyperactive TdSOS1a dagger 972 form, which have a maximal activity independent from the regulatory SOS2/SOS3 complex. We demonstrated that the expression of TdSOS1 enhances salt tolerance of the transgenic Arabidopsis plants. In this study, we analyzed the response to H2O2-induced oxidative stress of the transgenic Arabidopsis expressing one of the two TdSOS1 forms. Firstly, we showed that the exogenous H2O2 treatment leads to an accumulation of SOS1 transcripts in leaves and roots of the durum wheat and also in the transgenic plants. These transgenic plants showed significant oxidative stress tolerance compared to control plants, especially the plants expressing the hyperactive form. This tolerance was manifested by high proline accumulation and low malonyldialdehyde (MDA), O2E (TM)(-) and H2O2 contents. Furthermore, the activities of three essential ROS scavenging enzymes (SOD, CAT, and POD) were higher in the transgenic plants under oxidative stress, as compared to control plants. Taken together, these data suggested that TdSOS1 plays a crucial role in response to oxidative stress.
机译:我们之前已经证明,硬粒小麦TdSOS1排除细胞外的Na+和Li+离子。此外,该蛋白通过磷酸化被拟南芥激酶SOS2激活。SOS2磷酸化位点和自身抑制结构域的消除产生了过度活跃的TdSOS1a dagger 972形式,其具有独立于调节性SOS2/SOS3复合物的最大活性。我们证明了TdSOS1的表达增强了转基因拟南芥植株的耐盐性。在本研究中,我们分析了表达两种TdSOS1形式之一的转基因拟南芥对H2O2诱导的氧化应激的反应。首先,我们发现外源H2O2处理导致硬粒小麦叶片和根系以及转基因植株中SOS1转录物的积累。与对照植物相比,这些转基因植物表现出显著的氧化应激耐受性,尤其是表达过活性形式的植物。这种耐性表现为高脯氨酸积累和低丙二醛(MDA)、O2E(TM)和H2O2含量。此外,与对照植物相比,氧化胁迫下转基因植物中三种必需的活性氧清除酶(SOD、CAT和POD)的活性更高。综上所述,这些数据表明TdSOS1在氧化应激反应中起着关键作用。

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