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XX中BAHD基因家族的全基因组鉴定与表达分析 (原文中“in.”后面内容缺失)

Genome-wide identification and expression analysis of the BAHD gene family in .

作者信息

Wang Qing, Guo Tongtong, Yi Yuxiao, Zhang Jiaxin, Lv Wenhan, Yang Fengtang, Xu Jianing

机构信息

School of Life Sciences and Medicine, Shandong University of Technology, Zibo, Shandong, China.

出版信息

Front Genet. 2024 Dec 19;15:1512692. doi: 10.3389/fgene.2024.1512692. eCollection 2024.

Abstract

Acylation represents a pivotal biochemical process that is instrumental in the modification of secondary metabolites throughout the growth and developmental stages of plants. The BAHD acyltransferase family within the plant kingdom predominantly utilizes coenzyme A thioester as the acyl donor, while employing alcohol or amine compounds as the acceptor substrates to facilitate acylation reactions. Using bioinformatics approaches, the gene family members in the genome of () were identified and characterized including gene structure, conserved motifs, -acting elements, and potential gene functions. To elucidate the roles of BAHD genes in various tissues of , the expression profiles of family members across different organs were scrutinized. Under drought stress treatment, some were upregulation, suggesting their potential involvement in drought response. Notably, a detailed study was conducted on a specific HCT gene (i.e., 25) within the BAHD gene family. Analysis of its expression patterns suggested a role for 25 in the phenylpropanoid metabolism pathway in , contributing to the biosynthesis of secondary metabolites with unique bioactivity. The findings of this study have established a scientific foundation for the subsequent development and functional validation of the BAHD gene family in

摘要

酰化作用是一个关键的生化过程,在植物的整个生长和发育阶段对次生代谢产物的修饰起着重要作用。植物界的BAHD酰基转移酶家族主要利用辅酶A硫酯作为酰基供体,同时利用醇类或胺类化合物作为受体底物来促进酰化反应。利用生物信息学方法,对()基因组中的基因家族成员进行了鉴定和表征,包括基因结构、保守基序、顺式作用元件和潜在的基因功能。为了阐明BAHD基因在()各种组织中的作用,对该家族成员在不同器官中的表达谱进行了详细研究。在干旱胁迫处理下,一些基因上调,表明它们可能参与干旱响应。值得注意的是,对BAHD基因家族中的一个特定HCT基因(即25)进行了详细研究。对其表达模式的分析表明,25在()的苯丙烷代谢途径中发挥作用,有助于具有独特生物活性的次生代谢产物的生物合成。本研究结果为后续()中BAHD基因家族的开发和功能验证奠定了科学基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcdf/11693612/0f05fb05c82a/fgene-15-1512692-g001.jpg

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