生物技术通报 ›› 2025, Vol. 41 ›› Issue (8): 255-266.doi: 10.13560/j.cnki.biotech.bull.1985.2025-0013

• 研究报告 • 上一篇    

薄荷UV-B受体基因McUVR8的克隆与表达分析

康琴1(), 汪霞1, 谌明洋1, 徐静天1, 陈诗兰1, 廖平杨1, 许文志2, 吴卫1, 徐东北1()   

  1. 1.四川农业大学农学院,成都 611100
    2.四川省农业科学院经济作物研究所,成都 610300
  • 收稿日期:2025-01-08 出版日期:2025-08-26 发布日期:2025-08-14
  • 通讯作者: 徐东北,男,博士,副教授,研究方向 :植物资源利用、植物逆境生物学与代谢调控;E-mail: xudongbei2006@126.com
  • 作者简介:康琴,女,硕士研究生,研究方向 :特用植物品质改良及逆境机制解析;E-mail: 1787482623@qq.com
  • 基金资助:
    四川省科技教育联合基金面上项目(2024NSFSC2114);天府峨眉计划(1649),四川农业大学科研兴趣项目(20251838)

Cloning and Expression Analysis of the UV-B Receptor Gene McUVR8 in Mentha canadensis L.

KANG Qin1(), WANG Xia1, SHEN Ming-yang1, XU Jing-tian1, CHEN Shi-lan1, LIAO Ping-yang1, XU Wen-zhi2, WU Wei1, XU Dong-bei1()   

  1. 1.College of Agronomy, Sichuan Agricultural University, Chengdu 611100
    2.Industrial Crop Research Institute, Sichuan Academy of Agricultural Sciences, Chengdu 610300
  • Received:2025-01-08 Published:2025-08-26 Online:2025-08-14

摘要:

目的 紫外(UV-B)受体UVR8在调控植物生长发育、响应逆境胁迫等过程中发挥关键作用。探究薄荷(Mentha canadensis L.)UV-B受体基因McUVR8的蛋白特性和表达特征,预测其互作蛋白,为后续探究McUVR8功能提供理论参考。 方法 通过RT-PCR技术获得McUVR8基因,利用多种生物信息学工具对其理化性质、蛋白结构和亚细胞定位、互作蛋白进行分析预测。利用RT-qPCR分析McUVR8的组织、叶序表达模式及其在不同激素、胁迫下的表达变化。 结果 McUVR8全长1 353 bp,编码450个氨基酸,在细胞核和细胞质中均有分布,具有保守的呈螺旋环状的RCC1核心结构域和C17、C27结构域,与同为唇形科的一串红(Salvia splendens)SsUVR8、迷幻鼠尾草(Salvia divinorum)SdBUR8和西班牙鼠尾草(Salvia hispanica)ShUVR8同源性较高。McUVR8在薄荷不同组织和叶序中均表达,并具有一定差异,其中在根中表达量最低,花中表达量最高,不同叶序中其表达在第一片叶中最高。此外,McUVR8基因在叶片和根中均响应MeJA、ABA以及干旱、NaCl和2种重金属和铝胁迫处理。最后,筛选并验证到McUVR8与McCOP1互作。 结论 McUVR8可能在调节薄荷的生长发育、响应激素或逆境信号中具有重要作用,并且其可能通过与COP1、WRKY等蛋白互作,参与调控薄荷次生代谢、逆境响应等过程。

关键词: 薄荷, UV-B受体McUVR8, 蛋白特征, 蛋白互作, 表达模式, 生信分析, 基因克隆

Abstract:

Objective The ultraviolet-B (UV-B) receptor UVR8 plays a key role in regulating plant growth and development in response to adversity stress. The aim is to explore the protein properties and expression characteristics of McUVR8, a UV-B receptor gene in mint (Mentha canadensis L.), and to predict its interacting proteins, thus to provide theoretical references for the subsequent probing of the function of McUVR8. Method The McUVR8 gene was obtained by RT-PCR, and its physicochemical properties, protein structure and subcellular localization, and interacting proteins were analyzed and predicted using a variety of bioinformatics tools. Tissue and leaf sequence expression patterns of McUVR8 and its expression changes under different hormones and stresses were analyzed using RT-qPCR. Result McUVR8 is 1 353 bp in length, encoding 450 amino acids, distributed in both nucleus and cytoplasm, with conserved helix-looped RCC1 core domain and C17 and C27 domains, and there is high homology with SsUVR8 of Salvia splendens, SdBUR8 of Salvia divinorum and ShUVR8 of Salvia hispanica, which are also in the Labiaceae family. McUVR8 was expressed in different tissues and leaf sequences of M. canadensis, with some differences, with the lowest expression in the roots, the highest expression in the flowers, and the highest expression in the first leaf in different leaf sequences. In addition, the McUVR8 gene responded to MeJA, ABA, and drought, NaCl, and two heavy metal and aluminum stress treatments in both leaves and roots. Finally, McUVR8 was screened and verified to interact with McCOP1. Conclusion McUVR8 may have important roles in regulating mint growth and development, responding to hormonal or adversity signals, and it may be involved in regulating mint secondary metabolism, adversity response, and other processes by binding to COP1, WRKYs, and other interacting proteins.

Key words: Mentha canadensis L, UV-B receptor McUVR8, protein characterization, protein interactions, expression pattern, raw letter analysis, gene cloning