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基因组范围内鉴定和表达分析花椒中的 AP2/ERF 转录因子,揭示萜类化合物生物合成的候选基因。

Genomic-wide identification and expression analysis of AP2/ERF transcription factors in Zanthoxylum armatum reveals the candidate genes for the biosynthesis of terpenoids.

机构信息

School of Modern Industry for Selenium Science and Engineering, National R&D Center for Se-rich Agricultural Products Processing Technology, Wuhan Polytechnic University, Wuhan, China.

College of Horticulture and Gardening, Yangtze University, Jingzhou, China.

出版信息

Plant Genome. 2024 Mar;17(1):e20422. doi: 10.1002/tpg2.20422. Epub 2023 Dec 21.

Abstract

Terpenoids are the main active components in the Zanthoxylum armatum leaves, which have extensive medicinal value. The Z. armatum leaf is the main by-product in the Z. armatum industry. However, the transcription factors involved in the biosynthesis of terpenoids are rarely reported. This study was performed to identify and classify the APETALA2/ethylene-responsive factor (AP2/ERF) gene family of Z. armatum. The chromosome distribution, gene structure, conserved motifs, and cis-acting elements of the promoter of the species were also comprehensively analyzed. A total of 214 ZaAP2/ERFs were identified. From the obtained transcriptome and terpenoid content data, four candidate ZaAP2/ERFs involved in the biosynthesis of terpenoids were selected via correlation and weighted gene co-expression network analysis. A phylogenetic tree was constructed using 13 AP2/ERFs related to the biosynthesis of terpenoids in other plants. ZaERF063 and ZaERF166 showed close evolutionary relationships with the ERFs in other plant species and shared a high AP2-domain sequence similarity with the two closest AP2/ERF proteins, namelySmERF8 from Salvia miltiorrhiza and AaERF4 from Artemisia annua. Further investigation into the effects of methyl jasmonate (MeJA) treatment on the content of terpenoids in Z. armatum leaves revealed that MeJA significantly induced the upregulation of ZaERF166 and led to a significant increase in the terpenoids content in Z. armatum leaves, indicating that ZaERF166 might be involved in the accumulation of terpenoids of Z. armatum. Results will be beneficial for the functional characterization of AP2/ERFs in Z. armatum and establishment of the theoretical foundation to increase the production of terpenoids via the manipulation of the regulatory elements and strengthen the development and utilization of Z. armatum leaves.

摘要

植物烯萜是花椒叶片中的主要活性成分,具有广泛的药用价值。花椒叶片是花椒产业的主要副产物。然而,参与烯萜生物合成的转录因子很少有报道。本研究旨在鉴定和分类花椒的 APETALA2/ethylene-responsive factor (AP2/ERF) 基因家族。还综合分析了物种的染色体分布、基因结构、保守基序和启动子的顺式作用元件。共鉴定出 214 个 ZaAP2/ERFs。从获得的转录组和萜类化合物含量数据中,通过相关性和加权基因共表达网络分析,选择了四个与萜类化合物生物合成相关的候选 ZaAP2/ERFs。使用其他植物中与萜类化合物生物合成相关的 13 个 AP2/ERFs 构建了一个系统发育树。ZaERF063 和 ZaERF166 与其他植物物种的 ERFs 具有密切的进化关系,并与两个最接近的 AP2/ERF 蛋白,即丹参的 SmERF8 和黄花蒿的 AaERF4,共享高的 AP2 结构域序列相似性。进一步研究茉莉酸甲酯 (MeJA) 处理对花椒叶片萜类化合物含量的影响表明,MeJA 显著诱导 ZaERF166 的上调,并导致花椒叶片萜类化合物含量显著增加,表明 ZaERF166 可能参与花椒叶片中萜类化合物的积累。结果将有助于对花椒中 AP2/ERFs 的功能进行表征,并为通过调控元件的操作增加萜类化合物的产量和加强花椒叶片的开发利用奠定理论基础。

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