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首页> 外文期刊>Plant Cell Reports >CarNAC4, a NAC-type chickpea transcription factor conferring enhanced drought and salt stress tolerances in Arabidopsis
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CarNAC4, a NAC-type chickpea transcription factor conferring enhanced drought and salt stress tolerances in Arabidopsis

机译:CarNAC4,一种NAC型鹰嘴豆转录因子,可提高拟南芥的干旱和盐胁迫耐受性

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Chickpea (Cicer arietinum L.) is relatively vulnerable to abiotic stress conditions, but the tolerance mechanisms for such stresses in chickpea are largely unknown. To identify stress-related factors in chickpea, we previously constructed a cDNA library of chickpea leaves exposed to drought stress conditions. A cDNA encoding a putative NAC transcription factor (CarNAC4) was identified as a putative stress-responsive gene. Our study indicated that the transcript levels of CarNAC4 were enhanced in response to several abiotic stresses and phytohormones. Promoter analysis demonstrated that multiple stress-related cis-acting elements exist in promoter region of CarNAC4. CarNAC4 is localized in the nucleus and binds to the DNA sequence containing CGT[G/A], while the C-terminal region of CarNAC4 contains a transcriptional activation domain. Over-expression of CarNAC4 in Arabidopsis plants improved tolerance to drought and salt stresses. Transgenic plants exhibited greater reduced rates of water loss and more proline accumulation than Col-0 plants under drought stress and less MDA contents than Col-0 plants under salt stress. In addition, over-expression of CarNAC4 enhanced the expression of stress-responsive genes such as RD29A, ERD10, COR15A, COR47, KIN1 and DREB2A. These results indicated that CarNAC4 functions as a transcription factor involved in the regulation of drought and salt stress response.
机译:鹰嘴豆(Cicer arietinum L.)在非生物胁迫条件下相对较弱,但是在鹰嘴豆中这种胁迫的耐受机制尚不清楚。为了鉴定鹰嘴豆中与胁迫相关的因子,我们先前构建了暴露于干旱胁迫条件下的鹰嘴豆叶片cDNA文库。编码推定的NAC转录因子(CarNAC4)的cDNA被确定为推定的应激反应基因。我们的研究表明,响应几种非生物胁迫和植物激素,CarNAC4的转录水平得到了提高。启动子分析表明,在CarNAC4的启动子区域中存在多个与应力相关的顺式作用元件。 CarNAC4位于细胞核中并与包含CGT [G / A]的DNA序列结合,而CarNAC4的C端区域包含一个转录激活域。 CarNAC4在拟南芥植物中的过表达提高了对干旱和盐胁迫的耐受性。与干旱胁迫下的Col-0植物相比,转基因植物表现出更大的水分减少率降低和脯氨酸积累,而在盐胁迫下,Col-0植物的MDA含量更低。此外,CarNAC4的过表达增强了应激反应基因的表达,如RD29A,ERD10,COR15A,COR47,KIN1和DREB2A。这些结果表明,CarNAC4作为转录因子参与干旱和盐胁迫响应的调节。

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