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首页> 外文期刊>BMC Plant Biology >GhWRKY15, a member of the WRKY transcription factor family identified from cotton (Gossypium hirsutum L.), is involved in disease resistance and plant development
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GhWRKY15, a member of the WRKY transcription factor family identified from cotton (Gossypium hirsutum L.), is involved in disease resistance and plant development

机译:GhWRKY15是从棉花(Gossypium hirsutum L.)中鉴定的WRKY转录因子家族的成员,参与抗病性和植物发育

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Background As a large family of regulatory proteins, WRKY transcription factors play essential roles in the processes of adaptation to diverse environmental stresses and plant growth and development. Although several studies have investigated the role of WRKY transcription factors during these processes, the mechanisms underlying the function of WRKY members need to be further explored, and research focusing on the WRKY family in cotton crops is extremely limited. Results In the present study, a gene encoding a putative WRKY family member, GhWRKY15, was isolated from cotton. GhWRKY15 is present as a single copy gene, and a transient expression analysis indicated that GhWRKY15 was localised to the nucleus. Additionally, a group of cis-acting elements associated with the response to environmental stress and plant growth and development were detected in the promoter. Consistently, northern blot analysis showed that GhWRKY15 expression was significantly induced in cotton seedlings following fungal infection or treatment with salicylic acid, methyl jasmonate or methyl viologen. Furthermore, GhWRKY15-overexpressing tobacco exhibited more resistance to viral and fungal infections compared with wild-type tobacco. The GhWRKY15-overexpressing tobacco also exhibited increased RNA expression of several pathogen-related genes, NONEXPRESSOR OF PR1, and two genes that encode enzymes involved in ET biosynthesis. Importantly, increased activity of the antioxidant enzymes POD and APX during infection and enhanced expression of NtAPX1 and NtGPX in transgenic tobacco following methyl viologen treatment were observed. Moreover, GhWRKY15 transcription was greater in the roots and stems compared with the expression in the cotyledon of cotton, and the stems of transgenic plants displayed faster elongation at the earlier shooting stages compared with wide type tobacco. Additionally, exposure to abiotic stresses, including cold, wounding and drought, resulted in the accumulation of GhWRKY15 transcripts. Conclusion Overall, our data suggest that overexpression of GhWRKY15 may contribute to the alteration of defence resistance to both viral and fungal infections, probably through regulating the ROS system via multiple signalling pathways in tobacco. It is intriguing that GhWRKY15 overexpression in tobacco affects plant growth and development, especially stem elongation. This finding suggests that the role of the WRKY proteins in disease resistance may be closely related to their function in regulating plant growth and development.
机译:背景技术作为一大类调节蛋白,WRKY转录因子在适应各种环境胁迫以及植物生长发育的过程中起着至关重要的作用。尽管有几项研究调查了WRKY转录因子在这些过程中的作用,但仍需要进一步探索WRKY成员功能的潜在机制,而且针对棉花作物中WRKY家族的研究非常有限。结果在本研究中,从棉花中分离出一个编码假定的WRKY家族成员GhWRKY15的基因。 GhWRKY15作为单拷贝基因存在,并且瞬时表达分析表明GhWRKY15定位于细胞核。另外,在启动子中检测到一组与对环境胁迫和植物生长发育的反应有关的顺式作用元件。一致地,RNA印迹分析表明,在真菌感染或水杨酸,茉莉酸甲酯或甲基紫精处理后,棉花幼苗中GhWRKY15的表达被显着诱导。此外,与野生型烟草相比,过量表达GhWRKY15的烟草对病毒和真菌感染表现出更大的抵抗力。高表达GhWRKY15的烟草还表现出几种病原体相关基因,PR1的NONEXPRESSOR和两个编码与ET生物合成有关的酶的基因的RNA表达增加。重要的是,观察到甲基紫精处理后转基因烟草中感染过程中抗氧化酶POD和APX的活性增加以及NtAPX1和NtGPX的表达增强。此外,与棉花子叶中的表达相比,根和茎中的GhWRKY15转录更高,与宽型烟草相比,转基因植物的茎在较早的射击阶段显示出更快的伸长。另外,暴露于非生物胁迫下,包括寒冷,受伤和干旱,导致GhWRKY15转录本的积累。结论总体而言,我们的数据表明,GhWRKY15的过表达可能通过改变烟草中的多种信号通路来调节ROS系统,从而可能导致病毒和真菌感染的防御力发生变化。有趣的是,烟草中GhWRKY15的过表达影响植物的生长发育,尤其是茎的伸长。该发现表明,WRKY蛋白在抗病性中的作用可能与其在调节植物生长和发育中的功能密切相关。

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