Key Laboratory of Coastal Biology and Bioresource Utilization, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai, 264003, China.
Key Laboratory of Ecological Warning, Protection and Restoration for Bohai Sea, Ministry of Natural Resources, Qingdao, 266061, China.
Sci Rep. 2023 May 11;13(1):7664. doi: 10.1038/s41598-023-34819-z.
The Dmrt (Doublesex-mab3-related transcription factor) gene family is a class of crucial transcription factors characterized by one or several conserved DM (Doublesex/Mab-3) domains. Dmrt family genes can participate in various physiological developmental processes, especially in sex determination/differentiation. Echinoderms are extremely important research objects in various fields, such as sex determination/differentiation and neuroscience. However, to date, the genome-wide characterization and analysis of Dmrt genes in echinoderms have not been investigated. In this study, the identification and analysis of Dmrt genes in 11 representative echinoderms were performed using bioinformatics methods. A total of 43 Dmrt genes have been found in the studied echinoderms, and the number of Dmrt genes in different species ranges from 2 to 5. The phylogenetic tree showed that all Dmrt genes from echinoderms can be subdivided into 5 classes, the Dmrt2-like class, Dmrt3-like class, Dmrt4/5-like class, Dsx-like class, and a novel Dmrt (starfish-specific) class. Furthermore, selective pressure assessment suggested that the Dmrt genes underwent purifying selection pressure. In general, this study provides a molecular basis for echinoderm Dmrt genes and may serve as a reference for in-depth phylogenomics.
DMRT(双性畸形相关转录因子)基因家族是一类具有一个或多个保守 DM(双性畸形/Mab-3)结构域的关键转录因子。DMRT 家族基因可参与多种生理发育过程,特别是性别决定/分化。棘皮动物是在性别决定/分化和神经科学等各个领域的重要研究对象。然而,迄今为止,尚未对棘皮动物中的 DMRT 基因进行全基因组鉴定和分析。在这项研究中,我们使用生物信息学方法对 11 种代表性棘皮动物中的 DMRT 基因进行了鉴定和分析。总共在研究的棘皮动物中发现了 43 个 DMRT 基因,不同物种中的 DMRT 基因数量从 2 到 5 不等。系统发育树表明,所有来自棘皮动物的 DMRT 基因可分为 5 类,即 DMRT2 样类、DMRT3 样类、DMRT4/5 样类、DSX 样类和一个新的 DMRT(海星特异性)类。此外,选择压力评估表明,DMRT 基因经历了纯化选择压力。总的来说,本研究为棘皮动物 DMRT 基因提供了分子基础,并可能为深入的系统发生基因组学提供参考。