Fisheries College of Ji Mei University, Xiamen 361000, China.
Fujian Provincial Key Laboratory of Marine Fishery Resources and Eco-Environment, Xiamen 361000, China.
Genes (Basel). 2023 Aug 11;14(8):1612. doi: 10.3390/genes14081612.
Controversies surrounding the phylogenetic relationships within the family Apogonidae have persisted due to the limited molecular data, obscuring the evolution of these diverse tropical marine fishes. This study presents the first complete mitochondrial genome of , a previously unrepresented genus, using high-throughput Illumina sequencing. Through a comparative mitogenomic analysis, was shown to exhibit a typical genome architecture and composition, including 13 protein-coding, 22 tRNA and 2 rRNA genes and a control region, consistent with studies of other Apogonidae species. Nearly all protein-coding genes started with ATG, while stop codons TAA/TAG/T were observed, along with evidence of strong functional constraints imposed via purifying selection. Phylogenetic reconstruction based on maximum likelihood and Bayesian approaches provided robust evidence that forms a basal lineage closely related to P. trimaculatus within Apogonidae, offering novel perspectives into the molecular evolution of this family. By generating new mitogenomic resources and evolutionary insights, this study makes important headway in elucidating the phylogenetic relationships and mitogenomic characteristics of Apogonidae fishes. The findings provide critical groundwork for future investigations into the drivers of diversification, speciation patterns, and adaptive radiation underlying the extensive ecological diversity and biological success of these marine fishes using phylogenomics and population genomics approaches.
由于分子数据有限,雀鲷科内部的系统发育关系一直存在争议,这使得这些多样化的热带海洋鱼类的进化过程变得模糊不清。本研究首次使用高通量 Illumina 测序技术,提供了 的完整线粒体基因组, 是一个以前未被描述的属。通过比较线粒体基因组分析, 表现出典型的基因组结构和组成,包括 13 个蛋白编码基因、22 个 tRNA 和 2 个 rRNA 基因以及一个控制区,与其他雀鲷科物种的研究一致。几乎所有的蛋白质编码基因都以 ATG 开头,而观察到的终止密码子是 TAA/TAG/T,同时也有证据表明强烈的功能约束是通过纯化选择施加的。基于最大似然法和贝叶斯法的系统发育重建提供了强有力的证据,表明 在雀鲷科中形成了一个与 P. trimaculatus 密切相关的基础谱系,为该科鱼类的分子进化提供了新的视角。通过生成新的线粒体基因组资源和进化见解,本研究在阐明雀鲷科鱼类的系统发育关系和线粒体基因组特征方面取得了重要进展。这些发现为利用系统基因组学和群体基因组学方法研究这些海洋鱼类广泛的生态多样性和生物成功背后的多样化、物种形成模式和适应性辐射的驱动因素提供了重要的基础。