首页> 外文期刊>Plant Molecular Biology >Two cotton Cys2/His2-type zinc-finger proteins, GhDi19-1 and GhDi19-2, are involved in plant response to salt/drought stress and abscisic acid signaling
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Two cotton Cys2/His2-type zinc-finger proteins, GhDi19-1 and GhDi19-2, are involved in plant response to salt/drought stress and abscisic acid signaling

机译:两种棉花Cys2 / His2型锌指蛋白GhDi19-1和GhDi19-2参与植物对盐/干旱胁迫和脱落酸信号的响应

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Cotton (Gossypium hirsutum) often encounters abiotic stress such as drought and high salinity during its development, and its productivity is significantly limited by those adverse factors. To investigate the molecular adaptation mechanisms of this plant species to abiotic stress, we identified two genes encoding Di19-like Cys2/His2 zinc-finger proteins in cotton. GFP fluorescence assay demonstrated that GhDi19-1 and GhDi19-2 are two nuclear-localized proteins. Quantitative RT-PCR and Northern blot analyses revealed that mRNA accumulation of both GhDi19-1 and GhDi19-2 was significantly promoted by salinity and drought. Expression of GUS gene driven by the GhDi19-1 and GhDi19-2 promoters, respectively, was intensively induced in cotyledons under NaCl and mannitol stresses. Overexpression of GhDi19-1 and GhDi19-2 in Arabidopsis resulted in the seedlings displaying hypersensitivity to high salinity and abscisic acid (ABA). Seed germination and seedling growth of the transgenic Arabidopsis were dramatically inhibited by salinity and ABA, compared with wild type. In addition, expression levels of the ABA-responsive genes ABF3, ABF4, ABI5 and KIN1 were also remarkably altered in the transgenic plants under ABA treatment. Collectively, our results suggested that both GhDi19-1 and GhDi19-2 may be involved in response to salt/drought stress and ABA signaling during early stages of plant development.
机译:棉花在发育过程中经常遇到非生物胁迫,例如干旱和高盐度,其生产力受到这些不利因素的严重限制。为了研究该植物物种对非生物胁迫的分子适应机制,我们鉴定了两个编码棉花中Di19样Cys2 / His2锌指蛋白的基因。 GFP荧光分析表明,GhDi19-1和GhDi19-2是两个核定位蛋白。定量RT-PCR和Northern印迹分析表明,盐分和干旱显着促进了GhDi19-1和GhDi19-2的mRNA积累。在NaCl和甘露醇的胁迫下,在子叶中强烈诱导了分别由GhDi19-1和GhDi19-2启动子驱动的GUS基因的表达。 GhDi19-1和GhDi19-2在拟南芥中的过表达导致幼苗对高盐度和脱落酸(ABA)表现出超敏性。与野生型相比,盐度和ABA显着抑制了转基因拟南芥的种子发芽和幼苗生长。另外,在ABA处理的转基因植物中,ABA响应基因ABF3,ABF4,ABI5和KIN1的表达水平也显着改变。总的来说,我们的结果表明,GhDi19-1和GhDi19-2可能参与植物发育早期对盐/干旱胁迫和ABA信号的响应。

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