浙江农业科学 ›› 2025, Vol. 66 ›› Issue (12): 3026-3035.DOI: 10.16178/j.issn.0528-9017.20240700

• 观赏园艺 • 上一篇    下一篇

月季HSP20基因家族鉴定及功能分析

侯哲1(), 陈靓颖1, 姜正之2, 沈萍1, 武金翠1, 黄长兵1,*()   

  1. 1.苏州农业职业技术学院 园林工程学院,江苏 苏州 215008
    2.苏州市华冠园创园艺科技有限公司,江苏 苏州 215500
  • 收稿日期:2024-08-30 出版日期:2025-12-11 发布日期:2025-12-17
  • 通讯作者: 黄长兵(1979—),男,副研究员,硕士,研究方向为观赏植物新品种选育与抗性,E-mail: cbhuang@szai.edu.cn
  • 作者简介:侯哲(1991—),男,讲师,博士,研究方向为园林植物抗逆性分子机制,E-mail:houzhedota@163.com
  • 基金资助:
    江苏省高等学校基础科学(自然科学)研究面上项目(23KJB220008);苏州市科技计划(农业科技创新)面上项目(SNG2022025);江苏省种业振兴“揭榜挂帅”项目(JBGS〔2021〕091);苏州农业职业技术学院博士提升计划科研启动基金项目(BS〔2022〕08)

Identification and functional analysis of HSP20 gene family in Rosa chinensis

HOU Zhe1(), CHEN Liangying1, JIANG Zhengzhi2, SHEN Ping1, WU Jincui1, HUANG Changbing1,*()   

  1. 1. College of Landscape Engineering, Suzhou Polytechnic Institute of Agriculture, Suzhou 215008, Jiangsu
    2. Suzhou Huaguan Yuanchuang Horticultural Technology Co., Ltd., Suzhou 215500, Jiangsu
  • Received:2024-08-30 Online:2025-12-11 Published:2025-12-17

摘要:

热休克蛋白20(HSP20)在植物生长、发育和对非生物胁迫响应中发挥关键作用。尽管在许多植物中,HSP20基因都与热胁迫有关,但月季中HSP20(RcHSP20)基因家族却鲜有研究。为了研究 RcHSP20对热胁迫的响应机制,基于全基因组鉴定分析了月季中HSP20基因家族的所有成员,共鉴定出 31个RcHSP20基因,并对其理化性质进行了分析。系统进化分析表明,RcHSP20可分为4个亚类。重复事件分析表明,串联重复和片段化复制事件在促进RcHSP20基因家族的扩张中发挥了关键作用。共线性分析表明,月季与玫瑰的同源性最高,有21个同源基因,其次是拟南芥和水稻,分别有5个和2个同源基因。在CⅠ亚家族中,RcHSP20-7、RcHSP20-8、RcHSP20-1、RcHSP20-14、RcHSP20-2、RcHSP20-3以及RcHSP20-5的表达模式呈现出高度的相似性:在受到0.5 h的热胁迫后表达量开始上升,当热胁迫时间延长至2 h,基因表达量大幅增加,直至达到峰值。然而,热胁迫6~12 h这些基因的表达量开始逐步降低。结果表明,这些RcHSP20基因在参与热胁迫响应中可能扮演着至关重要的角色。

关键词: 月季, HSP20, 生物信息学, 基因家族

Abstract:

Heat shock protein 20 (HSP20) plays a critical role in plant growth, development, and response to abiotic stress. Although HSP20 genes have been associated with heat stress in numerous types of plants, there is little research on HSP20 (RcHSP20) gene family in Rosa chinensis. In order to investigate the response mechanism of RcHSP20 to heat stress, all members of HSP20 gene family in R. chinensis were identified and analyzed based on whole genome identification. A total of 31 RcHSP20 genes were identified and their physicochemical properties were analyzed. System evolution analysis shows that RcHSP20 can be divided into 4 subtypes. The duplicated event analysis demonstrated that tandem duplication and segment duplication events played crucial roles in promoting the expansion of RcHSP20 gene family. Collinearity analysis showed that R. chinensis shared the highest homology in 21 HSP20 gene pairs with Rosa rugosa, followed by 5 and 2 homologous gene pairs with Arabidopsis thaliana and Oryza sativa, respectively. The expression pattern of RcHSP20-7, RcHSP20-8, RcHSP20-1, RcHSP20-14, RcHSP20-2, RcHSP20-3 and RcHSP20-5 in the CⅠ subfamily showed a high degree of similarity. After being subjected to 0.5 hours of heat stress, the expression level began to increase. When the heat stress time was prolonged to 2 hours, the gene expression level increased until reaching its peak. However, the expression levels of these genes gradually decreased after 6-12 hours of heat stress. The results indicate that these RcHSP20 genes may play a crucial role in participating in heat stress response.

Key words: Rosa chinensis, HSP20, bioinformatics, gene family

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