华北农学报 ›› 2026, Vol. 41 ›› Issue (2): 63-73. doi: 10.7668/hbnxb.20195731

所属专题: 植物保护 生物技术

• 作物遗传育种·种质资源·生物技术 • 上一篇    下一篇

药用甘草C4H基因家族鉴定、表达及其调控甘草苷合成的功能解析

王睿智, 李悦涛, 程淋渊, 姚华, 沈海涛   

  1. 石河子大学 生命科学学院, 新疆 石河子 832003
  • 收稿日期:2025-01-02 出版日期:2026-04-28
  • 通讯作者:
    沈海涛(1980—),男,新疆库尔勒人,教授,博士,博士生导师,主要从事药用植物资源开发与利用研究。
  • 作者简介:

    王睿智(1999—),女,河北张家口人,在读硕士,主要从事甘草和黄芩品质提升机理研究。

  • 基金资助:
    国家自然科学基金项目(32260083); 兵团重点领域科技攻关项目(2023CB008-17); 兵团科技攻关项目(2023AB052); 科技部第三次新疆综合科学考察项目(2022xjkk0201)

Identification,Expression and Functional Analysis of Medicinal Liquorice C4H Gene Families in Liquiritin Biosynthesis

WANG Ruizhi, LI Yuetao, CHENG Linyuan, YAO Hua, SHEN Haitao   

  1. College of Life Science, Shihezi University, Shihezi 832003, China
  • Received:2025-01-02 Published:2026-04-28

摘要:

肉桂酸4-羟基化酶(C4H)是黄酮类化合物合成途径中的一个关键酶,在植物抗逆过程中发挥着重要作用。为了解3种药用甘草(乌拉尔、胀果和光果甘草)中C4H基因家族的生物信息学功能,探究其在非生物胁迫下的表达特性及与甘草苷积累的关系,利用生物信息学方法对C4H基因家族成员进行分析,同时结合转录组数据和RT-qPCR验证了解其在非生物胁迫下的表达情况及与甘草苷含量之间的关系。结果显示,在3种药用甘草全基因组中共鉴定出11个C4H基因,分别命名为GuC4H1~3GiC4H1~3GgC4H1~5。这些基因在乌拉尔和胀果甘草中分布在2条染色体上,而在光果甘草中分布在3条染色体上。各基因成员虽然在氨基酸数、等电点等理化性质上存在差异,但亚细胞预测均定位于内质网,且含有C端血红素结合域(PFGVGRRSCPG)。表达模式分析显示,11个C4H基因在3种药用甘草的不同组织中均有表达,且非生物胁迫可显著诱导地下部分中的C4H基因上调表达。其中,GgC4H5在盐胁迫24 h表达量最高,是对照组(24 h)的1.68倍;GuC4H3在干旱胁迫2 h表达量最高,是对照组(2 h)的3.03倍。此外,适度的非生物胁迫显著提升了3种甘草地下部分的甘草苷含量。NaCl胁迫2 h,胀果甘草中甘草苷含量增加最显著,是对照组(2 h)的2.92倍;PEG胁迫24 h,光果甘草中甘草苷含量增加最显著,是对照组(24 h)的2.31倍。GgC4H5在盐胁迫下表达与甘草苷含量趋势一致,GuC4H2GuC4H3GiC4H2GiC4H3在干旱胁迫下表达与甘草苷含量趋势一致。因此,这些基因可能是3种药用甘草地下部分响应非生物胁迫并参与甘草苷合成的关键基因。

关键词: 甘草, 肉桂酸4-羟基化酶基因家族, 生物信息学分析, 基因家族鉴定, 甘草苷

Abstract:

Cinnamic acid 4-hydroxylase (C4H),a key enzyme in the flavonoid synthesis pathway,plays a crucial role in plant stress resistance.To clarify the bioinformatic functions of the C4H gene family in three medicinal liquorice species (Glycyrrhiza uralensis Fisch.,Glycyrrhiza inflata Bat.,and Glycyrrhiza glabra L.),investigate their expression characteristics under abiotic stress,as well as their relationship with the synthesis and accumulation of liquiritin,we used bioinformatics methods to analyze the C4H gene family members,and combined transcriptome data and RT-qPCR validation to understand their expression under abiotic stress and their relationship with liquiritin content.Results showed that a total of 11 C4H genes were identified in the whole genomes of the three medicinal liquorice species and were named GuC4H13,GiC4H13,and GgC4H15,respectively.These genes were distributed on 2 chromosomes in G.uralensis and G.inflata and on 3 chromosomes in G.glabra.Although the gene members differed in physicochemical properties such as the number of amino acids and isoelectric points,all of them were predicted to be localized in the endoplasmic reticulum and contain a C-terminal heme-binding domain (PFGVGRRSCPG).Expression pattern analysis indicated that the 11 C4H genes were expressed in different tissues of the three medicinal liquorice species,and abiotic stress significantly induced the upregulation of C4H gene expression in the underground parts.Among them,the expression of GgC4H5 was the highest under salt stress for 24 h,which was 1.68 times that of the control group (24 h);the expression of GuC4H3 was the highest under drought stress for 2 h,which was 3.03 times that of the control group (2 h).In addition,moderate abiotic stress significantly increased the liquiritin content in the underground parts of the three liquorice species.Under NaCl stress for 2 h,the increase in liquiritin content in G.inflata was the most significant,which was 2.92 times that of the control group (2 h);under PEG stress for 24 h,the increase in liquiritin content in G.glabra was the most significant,which was 2.31 times that of the control group (24 h).GgC4H5 showed a similar expression trend to liquiritin content under salt stress,while GuC4H2,GuC4H3,GiC4H2,and GiC4H3 showed a similar expression trend to liquiritin content under drought stress.Therefore,these genes are likely to be the key genes involved in the response to abiotic stress and liquiritin synthesis in the underground parts of the three medicinal liquorice species.

Key words: Liquorice, C4H gene family, Bioinformatics ananlysis, Gene family identification, Liquiritin

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引用本文

王睿智, 李悦涛, 程淋渊, 姚华, 沈海涛. 药用甘草C4H基因家族鉴定、表达及其调控甘草苷合成的功能解析[J]. 华北农学报, 2026, 41(2): 63-73. doi: 10.7668/hbnxb.20195731.

WANG Ruizhi, LI Yuetao, CHENG Linyuan, YAO Hua, SHEN Haitao. Identification,Expression and Functional Analysis of Medicinal Liquorice C4H Gene Families in Liquiritin Biosynthesis[J]. Acta Agriculturae Boreali-Sinica, 2026, 41(2): 63-73. doi: 10.7668/hbnxb.20195731.