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牛蜱 C 群的完整线粒体基因组揭示了硬蜱属 Rhipicephalus microplus 复合种内的遗传关系。

The complete mitochondrial genome of cattle tick clade C reveals the genetic relationship within Rhipicephalus microplus complex.

机构信息

Research Center for Parasites & Vectors, College of Veterinary Medicine, Hunan Agricultural University, Changsha, 410128, Hunan Province, China.

出版信息

Parasitol Res. 2024 Mar 22;123(3):168. doi: 10.1007/s00436-024-08185-2.

Abstract

Cattle ticks (Rhipicephalus microplus) are important economic ectoparasites causing direct and indirect damage to cattle and leading to severe economic losses in cattle husbandry. It is common knowledge that R. microplus is a species complex including five clades; however, the relationships within the R. microplus complex remain unresolved. In the present study, we assembled the complete mitochondrial genome of clade C by next-generation sequencing and proved its correctness based on long PCR amplification. It was 15,004 bp in length and consisted of 13 protein genes, 22 transfer genes, and two ribosomal genes located in the two strains. There were two copies of the repeat region (pseudo-nad1 and tRNA-Glu). Data revealed that cox1, cox2, and cox3 genes were conserved within R. microplus with small genetic differences. Ka/Ks ratios suggested that 12 protein genes (excluding nad6) may be neutral selection. The genetic and phylogenetic analyses indicated that clade C was greatly close to clade B. Findings in the current study provided more data for the identification and differentiation of the R. microplus complex and made up for the lack of information about R. microplus clade C.

摘要

牛蜱(Rhipicephalus microplus)是一种重要的经济外寄生虫,会对牛造成直接和间接的损害,导致养牛业严重的经济损失。众所周知,R. microplus 是一个包括五个进化枝的种系复合体;然而,R. microplus 复合体内部的关系仍未得到解决。在本研究中,我们通过下一代测序组装了进化枝 C 的完整线粒体基因组,并通过长 PCR 扩增证明了其正确性。它长 15004bp,由 13 个蛋白基因、22 个转移基因和两个位于两个菌株中的核糖体基因组成。有两个重复区域(pseudo-nad1 和 tRNA-Glu)的副本。数据表明,cox1、cox2 和 cox3 基因在 R. microplus 内具有保守性,遗传差异较小。Ka/Ks 比值表明 12 个蛋白基因(除 nad6 外)可能是中性选择。遗传和系统发育分析表明,进化枝 C 与进化枝 B 非常接近。本研究的结果为 R. microplus 复合体的鉴定和分化提供了更多的数据,并弥补了关于 R. microplus 进化枝 C 的信息不足。

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