Comparative mitochondrial genomics analysis of selected species of Schizothoracinae sub family to explore the differences at mitochondrial DNA level

IF 2.6 4区 生物学 Q2 BIOLOGY Computational Biology and Chemistry Pub Date : 2024-07-26 DOI:10.1016/j.compbiolchem.2024.108165
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Abstract

A comprehensive analysis of the whole mitochondrial genomes of the Schizothoracinae subfamily of the family Cyprinidae has been revealed for the first time. The species analyzed include Schizothorax niger, Schizothorax esocinus, Schizothorax labiatus and Schizothorax plagoistomus. The total mitochondrial DNA (mtDNA) length was determined to be 16585 bp, 16583 bp, 16582 bp and 16576 bp, respectively with 13 protein-coding genes, 2 rRNA genes, 22 tRNA genes and 2 non-coding area genes. The combined mean base compositions of the four species were as follows: A: 29.91 % T: 25.47 % G: 17.65 % C 27.01 %. The range of the GC content is 45–44 %, respectively. All protein coding genes (PCGs) commenced with the typical ATG codon, except for the cytochrome c oxidase subunit 1 (COX1) gene with GTG. The analysis of vital amino acid biosynthesis genes (COX1, ATPase 6, ATPase 8) in four different species revealed no significant differences. All 13 PCGs had Ka/Ks ratios that were all lesser than one, demonstrating purifying selection on those molecules. These tRNA genes were predicted to fold into the typical cloverleaf secondary structures with normal base pairing and ranged in size from 66 to 75 nucleotides. Additionally, the phylogenetic tree analysis revealed that S. esocinus species that was most alike to S. labiatus. This study provides critical data for phylogenetic analysis of the Schizothoracinae subfamily, which will help to resolve taxonomic difficulties and identify evolutionary links. Detailed mtDNA data are an invaluable resource for studying genetic diversity, population structure, and gene flow. Understanding genetic makeup can help inform conservation plans, identify unique populations, and track genetic variation to ensure effective preservation.

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对五步蛇亚科部分物种进行线粒体基因组学比较分析,探索线粒体 DNA 水平的差异
对鲤科Schizothoracinae亚科的整个线粒体基因组的全面分析首次被揭示。被分析的物种包括黑鲷(Schizothorax niger)、埃索鲷(Schizothorax esocinus)、马唇鲈(Schizothorax labiatus)和鲈鱼(Schizothorax plagoistomus)。经测定,线粒体 DNA(mtDNA)总长度分别为 16585 bp、16583 bp、16582 bp 和 16576 bp,包括 13 个蛋白质编码基因、2 个 rRNA 基因、22 个 tRNA 基因和 2 个非编码区基因。这四个物种的碱基组成组合平均值如下:A: 29.91 % T: 25.47 % G: 17.65 % C 27.01 %。GC 含量范围分别为 45-44%。除细胞色素 c 氧化酶亚基 1(COX1)基因为 GTG 外,所有蛋白质编码基因(PCGs)均以典型的 ATG 密码子开始。对四个不同物种的重要氨基酸生物合成基因(COX1、ATPase 6、ATPase 8)的分析表明,它们之间没有显著差异。所有 13 个 PCG 的 Ka/Ks 比值均小于 1,这表明这些分子具有纯化选择作用。据预测,这些 tRNA 基因折叠成典型的苜蓿叶二级结构,碱基配对正常,大小从 66 个核苷酸到 75 个核苷酸不等。此外,系统发生树分析表明,S. esocinus 与 S. labiatus 的相似度最高。这项研究为五步蛇亚科的系统发育分析提供了关键数据,有助于解决分类上的困难和确定进化上的联系。详细的mtDNA数据是研究遗传多样性、种群结构和基因流的宝贵资源。了解基因构成有助于为保护计划提供信息,确定独特的种群,并跟踪基因变异以确保有效保护。
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来源期刊
Computational Biology and Chemistry
Computational Biology and Chemistry 生物-计算机:跨学科应用
CiteScore
6.10
自引率
3.20%
发文量
142
审稿时长
24 days
期刊介绍: Computational Biology and Chemistry publishes original research papers and review articles in all areas of computational life sciences. High quality research contributions with a major computational component in the areas of nucleic acid and protein sequence research, molecular evolution, molecular genetics (functional genomics and proteomics), theory and practice of either biology-specific or chemical-biology-specific modeling, and structural biology of nucleic acids and proteins are particularly welcome. Exceptionally high quality research work in bioinformatics, systems biology, ecology, computational pharmacology, metabolism, biomedical engineering, epidemiology, and statistical genetics will also be considered. Given their inherent uncertainty, protein modeling and molecular docking studies should be thoroughly validated. In the absence of experimental results for validation, the use of molecular dynamics simulations along with detailed free energy calculations, for example, should be used as complementary techniques to support the major conclusions. Submissions of premature modeling exercises without additional biological insights will not be considered. Review articles will generally be commissioned by the editors and should not be submitted to the journal without explicit invitation. However prospective authors are welcome to send a brief (one to three pages) synopsis, which will be evaluated by the editors.
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