首页> 外文期刊>Plant Physiology and Biochemistry >CsWRKY46, a WRKY transcription factor from cucumber, confers cold resistance in transgenic-plant by regulating a set of cold-stress responsive genes in an ABA-dependent manner
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CsWRKY46, a WRKY transcription factor from cucumber, confers cold resistance in transgenic-plant by regulating a set of cold-stress responsive genes in an ABA-dependent manner

机译:黄瓜的WRKY转录因子CsWRKY46通过以ABA依赖的方式调节一组冷应激反应基因来赋予转基因植物抗寒性

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Plant WRKY transcription factors are trans-regulatory proteins that are involved in plant immune responses, development and senescence; however, their roles in abiotic stress are still not well understood, especially in the horticultural crop cucumber. In this study, a novel cucumber WRKY gene, CsWRKY46 was cloned and identified, which was up-regulated in response to cold stress and exogenous abscisic acid (ABA) treatment. CsWRKY46 is belonging to group II of the WRKY family, CsWRKY46 was found exclusively in the nucleus, as indicated by a transient expression assay. Yeast one-hybrid assay shown that CsWRKY46 interact with the W-box in the promoter of ABI5. Transgenic Arabidopsis lines over expressing CsWRKY46, WRK46-OE1 and WRK46-OE5 had higher seedling survival rates upon freezing treatment compared with that of the wild-type. The above over-expression lines also showed much a higher proline accumulation, less electrolyte leakage and lower malondialdehyde (MDA) levels. Furthermore, the CsWRKY46 overexpression lines were hypersensitive to ABA during seed germination, but the seedlings were not. Quantitative RT-PCR analyses revealed that the expression levels of the ABA responsive transcription factor ABI5 were higher in the WRKY46-OE lines than in wild-type and that the overexpression of CsWRKY46 increased the expression of stress-inducible genes, including RD29A and COR47. Taken together, our results demonstrated that CsWRKY46 from cucumber conferred cold tolerance to transgenic plants and positively regulated the cold signaling pathway in an ABA-dependent manner. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:植物的WRKY转录因子是参与植物免疫反应,发育和衰老的反式调节蛋白。然而,它们在非生物胁迫中的作用仍未得到很好的理解,尤其是在园艺作物黄瓜中。在这项研究中,克隆并鉴定了一种新的黄瓜WRKY基因CsWRKY46,该基因在冷胁迫和外源脱落酸(ABA)处理下被上调。 CsWRKY46属于WRKY家族的II组,如瞬时表达分析所示,CsWRKY46仅在细胞核中发现。酵母一杂交试验表明,CsWRKY46与ABI5启动子中的W-box相互作用。与野生型相比,过表达CsWRKY46,WRK46-OE1和WRK46-OE5的转基因拟南芥品系具有更高的幼苗存活率。上述过表达谱系还显示出更高的脯氨酸积累,更少的电解质泄漏和更低的丙二醛(MDA)水平。此外,CsWRKY46过表达系在种子发芽过程中对ABA敏感,而幼苗则没有。定量RT-PCR分析显示,ABA响应转录因子ABI5在WRKY46-OE系中的表达水平高于野生型,并且CsWRKY46的过表达增加了应激诱导基因的表达,包括RD29A和COR47。两者合计,我们的结果表明,黄瓜CsWRKY46赋予转基因植物耐寒性,并以ABA依赖性方式正向调节寒冷信号通路。 (C)2016 Elsevier Masson SAS。版权所有。

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