College of Life Science, Henan Normal University, Xinxiang, 453007, China.
Hebi Polytechnic, Hebi, China.
Parasitol Res. 2024 Oct 29;123(10):363. doi: 10.1007/s00436-024-08385-w.
Cylicostephanus longibursatus is a common parasite in equine animals. Hosts infected by these nematodes might face disease or death. This study utilized next-generation sequencing technology to sequence the complete mitochondrial genome (mt genome) of C. longibursatus. Through bioinformatics techniques, the genomic base composition, codon usage, tRNA secondary structures, evolutionary relationships, and taxonomic status were analyzed. The results revealed that the mitochondrial genome of C. longibursatus is a double-stranded, 13,807-bp closed circular molecule with an AT content of 76.0%, indicating a clear preference for AT bases. The mitochondrial genome consisted of a total of 12 protein-coding genes, 22 tRNA genes, 2 rRNA genes, and 2 non-coding regions. Among the 12 protein-coding genes, TTG and ATT were the common start codons. TAA was the predominant termination codon, except for the ND3 and ND6 coding genes, and the COШ genes used TAG and "T" as termination codons, respectively. All tRNAs exhibited atypical clover-leaf secondary structures, except for tRNA and tRNA, where two tRNA genes lacked DHU arms and DHU loops, tRNA lacked the TΨC-arm, tRNA lacked the TΨC-loop, and the remaining 16 tRNAs lacked the TΨC-arm and TΨC loop, which were substituted by the "TV-replacement loop". Phylogenetic analyses, based on the 12 protein-coding genes and utilizing maximum likelihood (ML) and Bayesian inference (BI) analyses, indicated that C. longibursatus did not form a monophyletic group with other Cylicostephanus but was instead more closely related to Cyathostomum. These research findings provide fundamental data for exploring the population classification and phylogeny of strongylid nematodes.
旋毛虫是马属动物的常见寄生虫。感染这些线虫的宿主可能面临疾病或死亡。本研究利用下一代测序技术对旋毛虫的完整线粒体基因组(mt 基因组)进行测序。通过生物信息学技术,分析了基因组碱基组成、密码子使用、tRNA 二级结构、进化关系和分类地位。结果表明,旋毛虫的线粒体基因组是一条双链、13807bp 的闭合环状分子,其 AT 含量为 76.0%,表明其对 AT 碱基有明显的偏好。线粒体基因组共包含 12 个蛋白质编码基因、22 个 tRNA 基因、2 个 rRNA 基因和 2 个非编码区。在 12 个蛋白质编码基因中,TTG 和 ATT 是常见的起始密码子。TAA 是主要的终止密码子,但 ND3 和 ND6 编码基因除外,COШ 基因分别使用 TAG 和“T”作为终止密码子。所有 tRNA 均表现出非典型的三叶草叶二级结构,除了 tRNA和 tRNA,其中两个 tRNA 基因缺乏 DHU 臂和 DHU 环,tRNA 缺乏 TΨC-臂,tRNA 缺乏 TΨC 环,其余 16 个 tRNA 缺乏 TΨC 臂和 TΨC 环,由“TV-替代环”取代。基于 12 个蛋白质编码基因,利用最大似然法(ML)和贝叶斯推断法(BI)进行的系统发育分析表明,旋毛虫没有与其他旋毛虫形成单系群,而是与 Cyathostomum 关系更为密切。这些研究结果为探索强线虫种群分类和系统发育提供了基础数据。