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Arabidopsis YL1/BPG2 Is Involved in Seedling Shoot Response to Salt Stress through ABI4

机译:拟南芥YL1 / BPG2通过ABI4参与幼苗对盐胁迫的响应

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摘要

The chloroplast-localized proteins play roles in plant salt stress response, but their mechanisms remain largely unknown. In this study, we screened a yellow leaf mutant, yl1-1, whose shoots exhibited hypersensitivity to salt stress. We mapped YL1 to AT3G57180, which encodes a YqeH-type GTPase. YL1, as a chloroplast stroma-localized protein, could be markedly reduced by high salinity. Upon exposure to high salinity, seedling shoots of yl1-1 and yl1-2 accumulated significantly higher levels of Na+ than wild type. Expression analysis of factors involved in plant salt stress response showed that the expression of ABI4 was increased and HKT1 was evidently suppressed in mutant shoots compared with the wild type under normal growth conditions. Moreover, salinity effects on ABI4 and HKT1 were clearly weakened in the mutant shoots, suggesting that the loss of YL1 function impairs ABI4 and HKT1 expression. Notably, the shoots of yl1-2 abi4 double mutant exhibited stronger resistance to salt stress and accumulated less Na+ levels after salt treatment compared with the yl1-2 single mutant, suggesting the salt-sensitive phenotype of yl1-2 seedlings could be rescued via loss of ABI4 function. These results reveal that YL1 is involved in the salt stress response of seedling shoots through ABI4.
机译:叶绿体定位蛋白在植物盐胁迫响应中发挥作用,但其机理仍不清楚。在这项研究中,我们筛选了一个黄色的叶突变体yl1-1,其芽对盐胁迫表现出超敏性。我们将YL1映射到AT3G57180,它编码YqeH型GTPase。 YL1作为叶绿体基质定位蛋白,可被高盐度显着降低。暴露于高盐度条件下,yl1-1和yl1-2幼苗的Na + 积累的水平明显高于野生型。在正常生长条件下,与野生型相比,植物盐胁迫响应中相关因子的表达分析表明,与野生型相比,突变体芽中ABI4的表达增加,HKT1明显被抑制。此外,在突变体芽中,盐度对ABI4和HKT1的作用明显减弱,表明YL1功能的丧失削弱了ABI4和HKT1的表达。值得注意的是,与yl1-2单突变体相比,yl1-2 abi4双突变体的芽对盐胁迫表现出较强的抗盐性,并且在盐处理后积累的Na + 水平较低,表明yl1的盐敏感性表型可通过丧失ABI4功能来挽救-2幼苗。这些结果表明YL1通过ABI4参与苗芽的盐胁迫响应。

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