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Phylogenetic Approach to the Variability of the Microsporidian Enterocytozoon bieneusi and Its Implications for Inter- and Intrahost Transmission

机译:系统发育方法对微孢子虫Enterocytozoon bieneusi的变异性及其对宿主间和宿主内传播的影响

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Enterocytozoon bieneusi is a microsporidian parasite that infects many vertebrate animals, including humans. The rDNA internal transcribed spacer (ITS) shows a hypervariable sequence; however, so far no clear information has been inferred about strain evolution in this species. We reviewed all the sequences described and performed a phylogenetic study. Four groups of sequences strongly differentiated from each other were detected, although most of the isolates (94%) corresponded to group I. The highly diverse sequences of this group were analyzed using median-joining networks. The host species (humans, pets, swine, cattle, birds, and wild animals) and the continents of origin of the isolates were considered. Central haplotypes in the network were obtained from very diverse hosts and geographical origins. The results show that although E. bieneusi has a broad host specificity, transmission is not completely free: some strains were able to circulate within a given host species and were only occasionally transmitted to another host. Additionally, while not relevant for swine or cattle hosts, geography seems to be a relevant factor for human infection by E. bieneusi .
机译:Enterocytozoon bieneusi是一种微孢子虫寄生虫,可感染包括人在内的许多脊椎动物。 rDNA内部转录间隔区(ITS)显示高变序列;但是,到目前为止,尚没有关于该物种中菌株进化的明确信息。我们审查了所有描述的序列,并进行了系统发育研究。尽管大多数分离株(94%)对应于I组,但检测到四组彼此高度分化的序列。使用中位数连接网络分析了该组的高度多样化的序列。考虑了寄主物种(人类,宠物,猪,牛,鸟类和野生动物)和分离株的起源大陆。网络中的中心单倍型来自非常多样的宿主和地理起源。结果表明,尽管比氏大肠杆菌具有广泛的宿主特异性,但传播并非完全自由:某些菌株能够在给定宿主物种内循环,仅偶尔传播给另一宿主。另外,虽然与猪或牛寄主无关,但地理似乎是比埃希氏大肠杆菌感染人类的​​重要因素。

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