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郭珺珺,伊亮辉,肖清,等. 茶树WRKY19基因的克隆及其抗寒功能研究[J]. 茶叶学报,2024,65(1):20−27. DOI: 10.20045/j.cnki.issn.2096-0220.2024.01.003
引用本文: 郭珺珺,伊亮辉,肖清,等. 茶树WRKY19基因的克隆及其抗寒功能研究[J]. 茶叶学报,2024,65(1):20−27. DOI: 10.20045/j.cnki.issn.2096-0220.2024.01.003
GUO Jun-jun, YI Liang-hui, XIAO Qing, XIA En-hua, TONG Wei. Identification of CsWRKY19 Involving Cold Tolerance of Tea Plants[J]. ACTA TEA SINICA, 2024, 65(1): 20-27. DOI: 10.20045/j.cnki.issn.2096-0220.2024.01.003
Citation: GUO Jun-jun, YI Liang-hui, XIAO Qing, XIA En-hua, TONG Wei. Identification of CsWRKY19 Involving Cold Tolerance of Tea Plants[J]. ACTA TEA SINICA, 2024, 65(1): 20-27. DOI: 10.20045/j.cnki.issn.2096-0220.2024.01.003

茶树WRKY19基因的克隆及其抗寒功能研究

Identification of CsWRKY19 Involving Cold Tolerance of Tea Plants

  • 摘要:
    目的 茶树作为一种喜温畏寒植物,低温严重制约茶产业的发展。茶树WRKY19基因的克隆及抗寒功能研究为其抗逆工程育种提供重要理论依据。
    方法 基于前期对茶树WRKY基因家族的鉴定,本研究筛选并克隆得到一个受低温诱导显著上调表达的WRKY转录因子,将其命名为CsWRKY19。对CsWRKY19进行序列特征分析并结合基因表达抑制试验初步研究其在茶树抗寒中的功能。
    结果 CsWRKY19基因 CDS全长为1680 bp,编码559个氨基酸;包含2个典型的WRKYGQK保守基序;定量PCR分析表明CsWRKY19表达具有组织特异性,在根和幼嫩芽叶中高表达并受冷驯化诱导显著上调表达;经反义寡核苷酸抑制CsWRKY19表达后,茶树叶片在低温下的损伤程度显著加剧、丙二醛含量显著增加、超氧化物歧化酶活性降低,初步证明CsWRKY19在茶树应答低温胁迫中可能具有重要作用。
    结论 本研究鉴定了一个茶树转录因子CsWRKY19,并初步验证了其在茶树应对低温胁迫中的潜在功能。

     

    Abstract:
    Objective CsWRKY19 in Camellia sinensis was cloned to study its relationship with the adaptation and survival of the normally cold sensitive plant exposed to low temperatures.
    Method Based upon previously identified WRKY family in tea plants, CsWRKY19 showing significant upregulation by low temperatures was screened and cloned. Sequence and expressions of the gene in different tissues under cold stress were determined. By suppressing the expression, the ability of a tea plant to tolerate low temperatures was examined for verification.
    Result CsWRKY19 had a full CDS of 1,680 bp encoding 559 amino acids and containing 2 typical WRKYGQK conserved motifs. The tissue-specific expression of the gene was relatively high in the buds, young leaves, and roots of a plant. Exposing the plant to low temperatures significantly upregulated the gene expression, and if the expression was suppressed at the same time, worse damage on the leaves resulted. Meanwhile, as the surrounding temperature was lowered, the malondialdehyde content rose significantly and the superoxide dismutase activity declined in the plant.
    Conclusion The transcription factor of WRKY19 in tea plant was identified as CsWRKY19, which appeared to be significantly associated with the response of a tea plant to cold stress.

     

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