Hornok Sándor, Corduneanu Alexandra, Kontschán Jenő, Bekő Katinka, Szőke Krisztina, Görföl Tamás, Gyuranecz Miklós, Sándor Attila D
1 Department of Parasitology and Zoology, University of Veterinary Medicine , István u. 2, H-1078 Budapest , Hungary.
2 Department of Parasitology and Parasitic Diseases, University of Agricultural Sciences and Veterinary Medicine , Cluj-Napoca , Romania.
Acta Vet Hung. 2018 Mar;66(1):107-115. doi: 10.1556/004.2018.010.
Babesia vesperuginis is the only piroplasm known to infect bats. Unlike most members of the genus Babesia, it is probably transmitted by a soft tick species (i.e. Argas vespertilionis). Recently, two studies have been conducted to clarify the phylogenetic status of this species, and both agreed on placing it into a basal position among Babesia sensu stricto (s.s.). However, several important groups of piroplasms were not included in the already reported phylogenetic trees of B. vesperuginis isolates. Therefore, the aim of the present study was to amplify an approx. 950-bp fragment of the cytochrome c oxidase subunit 1 (cox1) gene of B. vesperuginis from A. vespertilionis specimens, and to compare its sequences with those from other piroplasmid groups in a broader phylogenetic context. Sequence comparisons focusing on either 18S rRNA or cox1 genes, as well as phylogenetic analyses involving separate and concatenated 18S rRNA and cox1 sequences indicate that B. vesperuginis is more closely related to the phylogenetic group of Theileriidae than to Babesia s.s. In particular, B. vesperuginis clustered closest to Cytauxzoon felis and the 'prototheilerid' B. conradae. The results of this study highlight that B. vesperuginis is a unique and taxonomically important species, which should be included in future studies aimed at resolving the comprehensive phylogeny of Piroplasmida.
蝙蝠巴贝斯虫(Babesia vesperuginis)是已知唯一能感染蝙蝠的梨形虫。与巴贝斯虫属的大多数成员不同,它可能由一种软蜱(即蝙蝠锐缘蜱,Argas vespertilionis)传播。最近,开展了两项研究以阐明该物种的系统发育地位,两项研究均同意将其置于狭义巴贝斯虫(Babesia sensu stricto,s.s.)中的基部位置。然而,已报道的蝙蝠巴贝斯虫分离株的系统发育树中未包含几个重要的梨形虫类群。因此,本研究的目的是从蝙蝠锐缘蜱标本中扩增出蝙蝠巴贝斯虫细胞色素c氧化酶亚基1(cox1)基因的一个约950 bp的片段,并在更广泛的系统发育背景下将其序列与其他梨形虫类群的序列进行比较。聚焦于18S rRNA或cox1基因的序列比较,以及涉及单独和串联的18S rRNA和cox1序列的系统发育分析表明,蝙蝠巴贝斯虫与泰勒科(Theileriidae)的系统发育类群的关系比与狭义巴贝斯虫的关系更为密切。特别是,蝙蝠巴贝斯虫与猫细胞内原虫(Cytauxzoon felis)和“原泰勒虫属”的康氏巴贝斯虫(Babesia conradae)聚类最接近。本研究结果突出表明,蝙蝠巴贝斯虫是一个独特且在分类学上很重要的物种,应纳入未来旨在解析梨形虫纲全面系统发育的研究中。