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首页> 外文期刊>Journal of Experimental Botany >The Arabidopsis Cys2/His2 zinc finger transcription factor ZAT18 is a positive regulator of plant tolerance to drought stress
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The Arabidopsis Cys2/His2 zinc finger transcription factor ZAT18 is a positive regulator of plant tolerance to drought stress

机译:拟南芥Cys2 / His2锌指转录因子Zat18是对干旱胁迫的植物耐受性的正调节因子

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Environmental stress poses a global threat to plant growth and reproduction, especially drought stress. Zinc finger proteins comprise a family of transcription factors that play essential roles in response to various abiotic stresses. Here, we found that ZAT18 (At3g53600), a nuclear C2H2 zinc finger protein, was transcriptionally induced by dehydration stress. Overexpression (OE) of ZAT18 in Arabidopsis improved drought tolerance while mutation of ZAT18 resulted in decreased plant tolerance to drought stress. ZAT18 was preferentially expressed in stems, siliques, and vegetative rosette leaves. Subcellular location results revealed that ZAT18 protein was predominantly localized in the nucleus. ZAT18 OE plants exhibited less leaf water loss, lower content of reactive oxygen species (ROS), higher leaf water content, and higher antioxidant enzyme activities after drought treatment when compared with the wild type (WT). RNA sequencing analysis showed that 423 and 561 genes were transcriptionally modulated by the ZAT18 transgene before and after drought treatment, respectively. Pathway enrichment analysis indicated that hormone metabolism, stress, and signaling were over-represented in ZAT18 OE lines. Several stress-responsive genes including COR47, ERD7, LEA6, and RAS1, and hormone signaling transduction-related genes including JAZ7 and PYL5 were identified as putative target genes of ZAT18. Taken together, ZAT18 functions as a positive regulator and plays a crucial role in the plant response to drought stress.
机译:环境压力对植物生长和繁殖,特别是干旱压力构成了全球威胁。锌指蛋白包含一种转录因子系列,其响应于各种非生物应激而起到基本作用。在这里,我们发现通过脱水应力转录ZAT18(AT3G53600),核C2H2锌指蛋白质。拟南芥Zat18的过度表达(OE)改善了抗旱耐受性,而Zat18的突变导致植物耐受降低的抗旱胁迫。 Zat18优先用茎,单体和植物玫瑰花叶表达。亚细胞位置结果显示,Zat18蛋白主要局部地局部地在核中局部地定位。与野生型(WT)相比,Zat18 OE植物展现较少的叶水分,反应性氧物质(ROS),更高的叶片含水量和较高的抗氧化酶活性。 RNA测序分析表明,在干旱处理之前和之后分别通过Zat18转基因转录423和561个基因。途径浓缩分析表明,激素代谢,应力和信号在Zat18 OE线中过于代表。将包括COR47,ERD7,lea6和RAS1的几种应激响应基因,以及包括JAZ7和PYL5在内的激素信号传递相关基因被鉴定为ZAT18的推定靶基因。 Zat18一起携带Zat18作为正调节因子,并在植物反应对干旱胁迫中起着至关重要的作用。

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