首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >A cotton NAC transcription factor GhirNAC2 plays positive roles in drought tolerance via regulating ABA biosynthesis
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A cotton NAC transcription factor GhirNAC2 plays positive roles in drought tolerance via regulating ABA biosynthesis

机译:棉NAC转录因子Ghirnac2通过调节ABA Biosynespess在旱灾耐受中起着正面作用

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摘要

NAC protein is a large plant specific transcription factor family, which plays important roles in the response to abiotic stresses. However, the regulation mechanism of most NAC proteins in drought stress remains to be further uncovered. In this study, we elucidated the molecular functions of a NAC protein, GhirNAC2, in response to drought stress in cotton. GhirNAC2 was greatly induced by drought and phytohormone abscisic acid (ABA). Subcellular localization demonstrated that GhirNAC2 was located in the nucleus. Co-suppression of GhirNAC2 in cotton led to larger stomata aperture, elevated water loss and finally reduced transgenic plants tolerance to drought stress. Furthermore, the endogenous ABA content was significantly lower in GhirNAC2-suppressed transgenic plant leaves compared to wild type. in vivo and in vitro studies showed that GhirNAC2 directly binds to the promoter of GhNCED3a/3c, key genes in ABA biosynthesis, which were both down-regulated in GhirNAC2suppressed transgenic lines. Transient silencing of GhNCED3a/3c also significantly reduced the resistance to drought stress in cotton plants. However, ectopic expression of GhirNAC2 in tobacco significantly enhanced seed germination, root growth and plant survival under drought stress. Taken together, GhirNAC2 plays a positive role in cotton drought tolerance, which functions by modulating ABA biosynthesis and stomata closure via regulating GhNCED3a/3c expression.
机译:NAC蛋白是一种大型植物特异性转录因子家族,其在对非生物胁迫的反应中起重要作用。然而,干旱胁迫下大多数NAC蛋白的调节机制仍未进一步揭示。在这项研究中,我们阐明了NAC蛋白Ghirnac2的分子功能,以应对棉花的干旱胁迫。 Ghirnac2受到干旱和植物激素脱落酸(ABA)的大大大。亚细胞定位证明Ghirnac2位于细胞核中。棉花中Ghirnac2的共同抑制导致较大的气孔孔径,水分升高,最终降低转基因植物对干旱胁迫的耐受性。此外,与野生型相比,Ghirnac2抑制的转基因植物叶中内源性ABA含量显着降低。体内和体外研究表明,Ghirnac2直接与GHNCED3A / 3C的启动子,ABA生物合成中的关键基因的启动子,其在Ghirnac2 Supstress的转基因中均下调。 GHNCED3A / 3C的瞬态沉默也显着降低了棉花植物中干旱胁迫的抵抗力。然而,在烟草中Ghirnac2的异位表达显着增强了干旱胁迫下的种子萌发,根生长和植物存活。 Ghirnac2一起参加棉花耐腐蚀作用,通过调节ABA生物合成和气孔闭合来调节GHNCED3A / 3C表达来发挥作用。

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