Zeng Juan, Long Yu-Qing, Fu Xue-Sen, Wang Ling, Liu Zi-Xuan, Zhou Ri-Bao, Liu Xiang-Dan
School of Pharmacy, Hunan University of Chinese Medicine Changsha 410208, China Key Laboratory of Germplasm Resources and Standardized Planting of Bulk Authentic Medicinal Materials Changsha 410208, China.
School of Pharmacy, Hunan University of Chinese Medicine Changsha 410208, China Key Laboratory of Germplasm Resources and Standardized Planting of Bulk Authentic Medicinal Materials Changsha 410208, China Key Laboratory of Traditional Chinese Medicine Modernization Research in General Colleges and Universities of Hunan Province Changsha 410208, China.
Zhongguo Zhong Yao Za Zhi. 2023 Apr;48(8):2103-2115. doi: 10.19540/j.cnki.cjcmm.20230115.103.
As a large family of transcription factors, the MYB family plays a vital role in regulating flower development. We studied the MYB family members in Lonicera macranthoides for the first time and identified three sequences of 1R-MYB, 47 sequences of R2R3-MYB, two sequences of 3R-MYB, and one sequence of 4R-MYB from the transcriptome data. Further, their physicochemical properties, conserved domains, phylogenetic relationship, protein structure, functional information, and expression were analyzed. The results show that the 53 MYB transcription factors had different conserved motifs, physicochemical properties, structures, and functions in wild type and 'Xianglei' cultivar of L. macranthoides, indicating their conservation and diversity in evolution. The transcript level of LmMYB was significantly different between the wild type and 'Xianglei' cultivar as well as between flowers and leaves, and some genes were specifically expressed. Forty-three out of 53 LmMYB sequences were expressed in both flowers and leaves, and 9 of the LmMYB members showed significantly different transcript levels between the wild type and 'Xianglei' cultivar, which were up-regulated in the wild type. The results provide a theoretical basis for further studying the specific functional mechanism of the MYB family.
作为一个庞大的转录因子家族,MYB家族在调控花发育过程中起着至关重要的作用。我们首次对忍冬属植物大花忍冬中的MYB家族成员进行了研究,并从转录组数据中鉴定出3个1R-MYB序列、47个R2R3-MYB序列、2个3R-MYB序列和1个4R-MYB序列。此外,还对它们的理化性质、保守结构域、系统发育关系、蛋白质结构、功能信息及表达情况进行了分析。结果表明,53个MYB转录因子在大花忍冬野生型和‘湘蕾’品种中具有不同的保守基序、理化性质、结构和功能,表明它们在进化过程中的保守性和多样性。LmMYB的转录水平在野生型和‘湘蕾’品种之间以及花和叶之间存在显著差异,且部分基因呈特异性表达。53个LmMYB序列中有43个在花和叶中均有表达,其中9个LmMYB成员在野生型和‘湘蕾’品种之间的转录水平存在显著差异,在野生型中上调。这些结果为进一步研究MYB家族的具体功能机制提供了理论依据。