辣椒CaNAC36转录因子耐盐性分析
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1.江苏省农业科学院蔬菜研究所;2.安徽农业大学

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现代农业产业技术体系建设专项资金项目


Analysis of Salt Tolerance of CaNAC36 Transcription Factor in Pepper
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China Agriculture Research System

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    摘要:

    【目的】辣椒是中国种植面积最大的蔬菜作物,随着土地盐碱化问题的日趋严重,加强辣椒耐盐机制研究对促进产业可持续发展具有重要意义。因而,急需加快辣椒耐盐相关关键基因的功能研究。【方法】研究组前期挖掘到与辣椒耐盐性相关的转录因子CaNAC36,在此基础上,以耐盐辣椒PI201224和敏盐辣椒PI438643为供试品种,克隆获得CaNAC36全长gDNA和cDNA序列,通过荧光定量分析CaNAC36及可能的互作基因在盐胁迫条件下不同组织部位的表达情况,并进一步结合生物信息学分析探究CaNAC36及其互作基因之间存在的潜在关系。【结果】结果表明,CaNAC36序列在耐盐和敏盐材料中DNA和cDNA同源性分别为99.86%和100%;荧光定量的结果表明,CaNAC36在耐盐材料根和茎组织中表现为诱导上调表达,在敏盐材料根和叶中表现为诱导下调表达;对可能与CaNAC36存在互作关系的48个基因的注释信息进行分析后,发现跨膜蛋白、转运蛋白、水孔蛋白、氯离子通道蛋白、解毒蛋白等14个基因可能与CaNAC36存在功能互作。进一步分析发现,在PI201224和PI438643盐胁迫处理不同时间点、不同组织中,5个相关基因(Capana08g002748、Capana00g004514、Capana09g000275、Capana07g001450、Capana02g001031)的表达呈现显著差异。同时发现,CaNAC36及5个关联基因启动子域含有大量的逆境相关顺式作用元件。【结论】结合基因克隆、基因表达水平分析以及生物信息学分析,表明CaNAC36是辣椒响应盐胁迫的重要转录因子,并可能与其他基因相互作用以提高植株的耐盐性,可为深度研究辣椒耐盐性以及选育耐盐品种提供数据支撑。

    Abstract:

    [Objective] Pepper is the largest vegetable crop planted in China. With the increasingly serious salinization of land in China, it is of great significance to strengthen the research of pepper salt tolerance mechanism to promote the sustainable development of pepper industry. Therefore, it is urgent to accelerate the functional study of key genes related to pepper salt tolerance. [Methods] In the early stage of this study, the transcription factor CaNAC36 related to pepper salt tolerance was excavated. On this basis, the full-length gDNA and cDNA sequences of CaNAC36 were cloned using salt-tolerant capsicum PI201224 and salt-sensitive capsicum PI438643 as test varieties. The expression of CaNAC36 and its interacting genes in different tissues under salt stress was quantitatively analyzed by fluorescence, and the potential relationship between CaNAC36 and its interacting genes was further explored by bioinformatics analysis. [Results] The results showed that the DNA and cDNA sequence homology of the CaNAC36 in salt-tolerant and salt-sensitive materials were 99.86% and 100%, respectively. The results of fluorescence quantification showed that the CaNAC36 showed an up-expression of in roots and stems salt-tolerant pepper, and a down-expression in salt-sensitive roots and leaves. After analyzing the annotation information of 48 genes that may interact with CaNAC36, it was found that 14 genes belonging to transmembrane protein, transporter protein, water porin, chloride channel protein, detoxifying protein and other genes may have functional interaction with CaNAC36. Further analysis revealed that PI201224 and PI438643 exhibited significant differences in the expression of five related genes (Capana08g002748, Capana00g004514, Capana09g000275, Capana07g001450, Capana02g001031) at different time points and tissues under salt stress treatment. Meanwhile, the promoter domains of CaNAC36 and 5 associated genes were found to contain a large number of stress-related cis-acting elements. [Conclusion] This study combined with gene cloning, gene expression level analysis and bioinformatics analysis, found that CaNAC36 was an important transcription factor in pepper response to salt stress, and may interact with other genes to improve plant salt tolerance. This study provides data support for in-depth research on pepper salt tolerance and breeding of salt-tolerant varieties.

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龚成胜,郑雨晴,潘宝贵,等.辣椒CaNAC36转录因子耐盐性分析[J].西北植物学报,2024,44(4):593-601

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  • 收稿日期:2023-10-17
  • 最后修改日期:2023-12-14
  • 录用日期:2024-01-05
  • 在线发布日期: 2024-03-28
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