National engineering Laboratory of Marine Germplasm Resources Exploration and Utilization, Zhejiang Ocean University, Zhoushan, 316022, China.
National engineering research center for facilitated marine aquaculture, Marine science and technology college, Zhejiang Ocean University, Zhoushan, 316022, China.
Mol Biol Rep. 2021 Jan;48(1):677-689. doi: 10.1007/s11033-020-06120-z. Epub 2021 Jan 13.
The vertebrate mitochondrial genome is typically circular molecules made up of 14,000 to 16,000 bp, including 13 protein-coding genes (PCGs), 22 transfer RNA genes (tRNAs), two ribosomal RNA genes (12 s rRNA and 16 s rRNA) and a control region. Compared with nuclear DNA, mitochondrial DNA has a higher mutation rate, so it is one of the most effective and reliable molecular markers in fish phylogeny. Macrotocinclus affinis was the only species in Macrotocinclus (it was classified as Otocinclus in the past) and currently lacks genetic information. Most of the current researches are based on the mitochondrial Cytb gene and RAG1 and RAG2 nuclear genes to study the phylogenetic analysis of Siluriformes. So, the study provides the characteristic features of the Macrotocinclus affinis mitochondrial genome and this is the first time that the phylogenetic relationship of Siluriformes has been reconstructed based on COI. We aimed to sequence the entire mitochondrial genome of Macrotocinclus affinis using conventional PCR techniques and to clarify its phylogenetic status in Siluriformes by using the COI sequence of mitochondria. In this study, we sequenced the whole mitochondrial genome of this species yielding a 16,632 bp circular assembly composed of the typical vertebrate mitochondrial features. It contains 13 protein-coding genes, two rRNA genes, 22 tRNA genes, a putative control region, and one origin of replication on the light-strand. The overall base composition includes A (30.07%), T (24.43%), C (29.43%) and G (16.01%). The genome composition is A + T biased (54.5%), and exhibits AT-skew (0.1036) and GC-skew (-0.2962). Moreover, the 13 PCGs encode 3850 amino acids in total. The result of the phylogenetic tree supports Macrotocinclus affinis has a closest relationship with Otocinclus cf. hoppei far. These results will help to understand the characteristics of the mitochondrial genome of Macrotocinclus affinis and provide molecular basis for the evolutionary relationship of Loricariidae.
脊椎动物的线粒体基因组通常是由 14000 到 16000bp 组成的圆形分子,包含 13 个蛋白编码基因(PCGs)、22 个转移 RNA 基因(tRNAs)、2 个核糖体 RNA 基因(12s rRNA 和 16s rRNA)和一个调控区。与核 DNA 相比,线粒体 DNA 的突变率更高,因此它是鱼类系统发育中最有效和可靠的分子标记之一。阿菲尼氏大吻脂鲤是大吻脂鲤属(过去被归类为副口脂鲤属)中唯一的物种,目前缺乏遗传信息。目前的大多数研究都是基于线粒体 Cytb 基因和 RAG1 和 RAG2 核基因来研究 Siluriformes 的系统发育分析。因此,本研究提供了阿菲尼氏大吻脂鲤线粒体基因组的特征,并首次基于 COI 重建了 Siluriformes 的系统发育关系。我们旨在使用常规 PCR 技术对阿菲尼氏大吻脂鲤的整个线粒体基因组进行测序,并使用线粒体 COI 序列阐明其在 Siluriformes 中的系统发育地位。在这项研究中,我们对该物种的整个线粒体基因组进行了测序,得到了一个由 16632bp 组成的圆形组装体,包含典型的脊椎动物线粒体特征。它包含 13 个蛋白编码基因、两个 rRNA 基因、22 个 tRNA 基因、一个假定的调控区和一个轻链上的复制起点。总的碱基组成包括 A(30.07%)、T(24.43%)、C(29.43%)和 G(16.01%)。基因组组成偏向 A+T(54.5%),并表现出 AT 倾斜(0.1036)和 GC 倾斜(-0.2962)。此外,13 个 PCGs 总共编码 3850 个氨基酸。系统发育树的结果支持阿菲尼氏大吻脂鲤与远缘的副口脂鲤 cf. hoppei 关系最密切。这些结果将有助于了解阿菲尼氏大吻脂鲤线粒体基因组的特征,并为脂鲤科的进化关系提供分子基础。