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The CCCH-Type Zinc Finger Proteins AtSZF1 and AtSZF2 Regulate Salt Stress Responses in Arabidopsis

机译:CCCH型锌指蛋白AtSZF1和AtSZF2调节拟南芥中的盐胁迫响应

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摘要

The molecular mechanism governing the response of plants to salinity stress, one of the most significant limiting factors for agriculture worldwide, has just started to be revealed. Here, we report AtSZF1 and AtSZF2, two closely related CCCH-type zinc finger proteins, involved in salt stress responses in Arabidopsis. The expression of AtSZF1 and AtSZF2 is quickly and transiently induced by NaCl treatment. Mutants disrupted in the expression of AtSZF1 or AtSZF2 exhibit increased expression of a group of salt stress-responsive genes in response to high salt. Significantly, the atszf1-1/atszf2-1 double mutant displays more sensitive responses to salt stress than the atszf1-1 or atszf2-1 single mutants and wild-type plants. On the other hand, transgenic plants overexpressing AtSZF1 show reduced induction of salt stress-responsive genes and are more tolerant to salt stress. We also showed that AtSZF1 is localized in the nucleus. Taken together, these results demonstrated that AtSZF1 and AtSZF2 negatively regulate the expression of salt-responsive genes and play important roles in modulating the tolerance of Arabidopsis plants to salt stress.
机译:控制植物对盐分胁迫的反应的分子机制是全球农业最重要的限制因素之一,这一机制刚刚开始被揭示。在这里,我们报告AtSZF1和AtSZF2,这两个密切相关的CCCH型锌指蛋白,参与拟南芥的盐胁迫响应。通过NaCl处理可以快速而短暂地诱导AtSZF1和AtSZF2的表达。 AtSZF1或AtSZF2表达被破坏的突变体表现出一组对高盐胁迫的盐胁迫响应基因的表达增加。值得注意的是,与atszf1-1或atszf2-1单突变体和野生型植物相比,atszf1-1 / atszf2-1双突变体对盐胁迫表现出更敏感的响应。另一方面,过表达AtSZF1的转基因植物显示出减少的盐胁迫响应基因诱导,并且更耐盐胁迫。我们还表明,AtSZF1位于细胞核中。综上所述,这些结果表明AtSZF1和AtSZF2负调节盐反应基因的表达,并在调节拟南芥植物对盐胁迫的耐受性中起重要作用。

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