Xia Meng, Tu Lichan, Liu Yuan, Jiang Zhouqian, Wu Xiaoyi, Gao Wei, Huang Luqi
School of Traditional Chinese Medicine Capital Medical University Beijing China.
Department of Pharmacy, School of Medicine Zhejiang University City College Hangzhou China.
Plant Direct. 2022 Jul 22;6(7):e424. doi: 10.1002/pld3.424. eCollection 2022 Jul.
Terpenoids are a class of significant bioactive components in the woody vine of . Previous studies have shown that MYB transcription factors play important roles in plant secondary metabolism, growth, and developmental processes. However, the MYB involved in terpenoid biosynthesis in are unknown. To identify MYB (TwMYB) genes that are involved in terpenoid biosynthesis, we conducted the genome-wide analysis of the TwMYB gene family. A total of 207 TwMYBs were identified including 84 1R-TwMYB, 117 R2R3-TwMYB, four 3R-TwMYB, and two 4R-TwMYB genes. The most abundant R2R3-TwMYBs together with their Arabidopsis homologs were categorized into 26 subgroups. Intraspecific collinearity analysis found that the 74.9% of the TwMYBs may be generated by segmental duplication events, and 36.7% of duplicated gene pairs were derived from the specific whole genome duplication (WGD) event in . In addition, interspecies collinearity analysis found that 16 TwMYB genes formed homologous gene pairs with MYB genes in seven representative species, which indicated they may have a key role in evolution. Notably, we found that the TwMYB genes were differentially expressed in various tissues by expression pattern analysis. In order to further select the candidate genes related to terpenoid biosynthesis, the assay of Methyl jasmonate (MeJA) induction and analysis of phylogenetic tree was conducted. It was speculated that six candidate TwMYB genes (, , , , , and ) are involved in regulating terpenoid biosynthesis. This study is the first systematic analysis of the TwMYB gene family and will lay a foundation for the functional characterization of TwMYB genes in the regulation of terpenoid biosynthesis.
萜类化合物是[木本藤本植物名称]中的一类重要生物活性成分。先前的研究表明,MYB转录因子在植物次生代谢、生长和发育过程中发挥着重要作用。然而,参与[木本藤本植物名称]中萜类生物合成的MYB尚不清楚。为了鉴定参与萜类生物合成的MYB(TwMYB)基因,我们对TwMYB基因家族进行了全基因组分析。共鉴定出207个TwMYB基因,包括84个1R-TwMYB、117个R2R3-TwMYB、4个3R-TwMYB和2个4R-TwMYB基因。最丰富的R2R3-TwMYB及其拟南芥同源物被分为26个亚组。种内共线性分析发现,74.9%的TwMYB可能由片段重复事件产生,36.7%的重复基因对来自[木本藤本植物名称]中的特定全基因组复制(WGD)事件。此外,种间共线性分析发现,16个TwMYB基因与7个代表性物种中的MYB基因形成同源基因对,这表明它们可能在进化中起关键作用。值得注意的是,通过表达模式分析,我们发现TwMYB基因在不同组织中差异表达。为了进一步筛选与萜类生物合成相关的候选基因,进行了茉莉酸甲酯(MeJA)诱导试验和系统发育树分析。推测有6个候选TwMYB基因([基因名称1]、[基因名称2]、[基因名称3]、[基因名称4]、[基因名称5]和[基因名称6])参与调控萜类生物合成。本研究是对TwMYB基因家族的首次系统分析,将为TwMYB基因在萜类生物合成调控中的功能鉴定奠定基础。