茶树4CL基因家族的全基因组鉴定及表达分析
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福建农林大学 园艺学院/茶学福建省高校重点实验室 福建福州 350002

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安溪茶叶重大科技创新专项(AX2021001);福建农林大学茶产业链科技创新与服务体系建设项目(K1520005A01);福建张天福茶叶发展基金会科技创新基金项目(FJZTF01)


Genome-wide Identification and Expression Analysis of 4CL Gene Family in Camellia sinensis
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    摘要:

    4-香豆酸辅酶A连接酶(4CL)是茶树苯丙烷代谢途径的核心酶,是类黄酮和木质素生物合成的关键酶,对茶树抗胁迫及茶叶品质形成有重要作用。本研究通过生物信息学分析,从黄棪和铁观音茶树中分别鉴定出8和9个4CL基因家族成员,命名为HD-Cs4CL1~8和TGY-Cs4CL1~9。系统发育分析将其分为A和B两组,A组中第Ⅰ亚家族的HD-Cs4CL3、HD-Cs4CL7、TGY-Cs4CL2和第Ⅱ亚家族的HD-Cs4CL2和TGY-Cs4CL5可能分别参与木质素和类黄酮合成。启动子顺式元件分析发现4CL基因中存在大量与植物发育、激素和胁迫响应相关的顺式作用元件。不同组织转录组数据分析表明,Cs4CL基因在茶树特定发育时期具有重要作用。实时荧光定量检测发现,HD-Cs4CL6和HD-Cs4CL8在GA、MeJA、ABA、低温和干旱处理下表达量均显著上调;HD-Cs4CL7在ABA处理和干旱处理下表达量上调,HD-Cs4CL2和HD-Cs4CL3在ABA处理下表达量上调。本研究为进一步探究茶树4CL基因家族参与响应多种环境的生物学机制提供参考。

    Abstract:

    4-Coumaric acid coA ligase (4CL) is the core enzyme in the phenylpropane metabolic pathway of tea tree, the key enzyme in the biosynthesis of flavonoids and lignin, and plays an important role in the resistance to stress and the formation of tea quality. In this study, through bioinformatics analysis, 8 and 9 4CL gene family members were identified from the C.sinensis ‘Huangdan’ and C.sinensis ‘Tie-guanyin’, which were named HD-Cs4CL1-8 and TGY-Cs4CL1-9, respectively. Phylogenetic analysis classified them into two groups A and B. HD-Cs4CL3, HD-Cs4CL7, TGY-Cs4CL2 of subfamily Ⅰ and HD-Cs4CL2, TGY-Cs4CL5 of subfamily Ⅱ in group A may be involved in lignin and flavonoid synthesis, respectively. A large number of cis-acting elements related to plant development, hormone, and stress response were found in 4CL gene. Analysis of transcriptome data from different tissues showed that Cs4CL gene plays an important role in the specific development stage of tea tree. Real-time fluorescence quantitative detection showed that the expressions of HD-Cs4CL6 and HD-Cs4CL8 were significantly up-regulated under GA, MeJA, ABA, 4℃, and drought treatment. The expression of HD-Cs4CL7 was up-regulated under ABA drought treatment. The expressions of HD-Cs4CL2 and HD-Cs4CL3 were up-regulated under ABA treatment. This study provides a reference for further exploring the biological mechanism of tea 4CL gene family involved in responding to various environments.

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任卫威,高婷,邵淑贤,等.茶树4CL基因家族的全基因组鉴定及表达分析[J].西北植物学报,2023,43(9):1459-1469

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  • 收稿日期:2023-04-06
  • 最后修改日期:2023-05-25
  • 录用日期:2023-07-05
  • 在线发布日期: 2023-09-26
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