首页> 外文期刊>Molecular Plant >TRANSLUCENT GREEN, an ERF family transcription factor, controls water balance in Arabidopsis by activating the expression of aquaporin genes.
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TRANSLUCENT GREEN, an ERF family transcription factor, controls water balance in Arabidopsis by activating the expression of aquaporin genes.

机译:ERF家族转录因子TRANSLUCENT GREEN通过激活水通道蛋白基因的表达来控制拟南芥中的水平衡。

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摘要

Water is the most abundant molecule in almost all living organisms. Aquaporins are channel proteins that play critical roles in controlling the water content of cells. Here, we report the identification of an AP2/EREBP family transcription factor in Arabidopsis thaliana, TRANSLUCENT GREEN (TG), whose overexpression in transgenic plants gave enhanced drought tolerance and vitrified leaves. TG protein is localized in the nucleus, binds DRE and GCC elements in vitro, and acts as a transcriptional activator in yeast cells. Microarray analysis revealed a total of 330 genes regulated by TG, among which five genes encode aquaporins. A transient expression assay showed that TG directly binds to the promoters of three aquaporin genes, such as AtTIP1;1, AtTIP2;3, and AtPIP2;2, indicating that TG directly regulates the expression of these genes. Moreover, overexpression of AtTIP1;1 resulted in vitrified phenotypes in transgenic Arabidopsis plants, similar to those observed in TG overexpression lines. Water injection into wild-type leaves recapitulated the vitrified leaf phenotypes, which was reversed by cutting off the water supply from vascular bundles. Taken together, our data support that TG controls water balance in Arabidopsis through directly activating the expression of aquaporin genes.
机译:水是几乎所有生物中最丰富的分子。水通道蛋白是通道蛋白,在控制细胞水分中起关键作用。在这里,我们报告在拟南芥中的AP2 / EREBP家族转录因子的鉴定,TRANSLUCENT GREEN(TG),其在转基因植物中的过表达赋予增强的耐旱性和玻璃化叶片。 TG蛋白位于细胞核中,在体外结合DRE和GCC元素,并在酵母细胞中充当转录激活因子。基因芯片分析显示,共有330个基因受TG调控,其中5个基因编码水通道蛋白。瞬时表达分析表明,TG直接与三个水通道蛋白基因的启动子结合,例如AtTIP1; 1,AtTIP2; 3和AtPIP2; 2,表明TG直接调节这些基因的表达。此外,AtTIP1; 1的过表达导致转基因拟南芥植物的玻璃化表型,类似于在TG过表达株系中观察到的表型。向野生型叶片中注水重现了玻璃化的叶片表型,通过切断血管束中的水来逆转这种现象。两者合计,我们的数据支持TG通过直接激活水通道蛋白基因的表达来控制拟南芥中的水平衡。

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