吸血蝙蝠中螺质粒和血孢子虫的分子研究,以及巴西亚马逊地区圆齿蛾中螺质粒不同谱系的证据

Victória Valente Califre de Mello, A. C. Calchi, Laryssa Borges de Oliveira, T. F. S. B. Coelho, Daniel Antônio Braga Lee, Eliz Oliveira Franco, R. Z. Machado, M. André
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引用次数: 0

摘要

尽管蝙蝠可以作为几种病毒和细菌的宿主,但对这类哺乳动物中属于梨形虫目和血孢子虫目的顶端复合体原生动物的多样性知之甚少。本研究旨在调查从巴西北部帕拉州、罗赖马州、阿马帕州和亚马孙州的229只吸血蝙蝠(228只圆斑蝙蝠和1只幼斑蝙蝠)采集的脾脏样本中螺旋体和血孢子虫的发生和系统发育评估。在229份蝙蝠脾脏样本中,43份(18.77%)在基于18S rRNA基因的螺旋体嵌套PCR中检测呈阳性。部分18S rRNA基因的13个序列(从474到828个碱基对)与之前在鹿、貘、负鼠和食蟹浣熊中检测到的泰勒虫、巴贝虫和梨形虫具有91.04–100%的同一性。基于接近完整的18S rRNA基因的系统发育分析将获得的三个圆腹蛛的序列定位在不同的分支中(严格意义上的泰勒虫、terrestris Tapirus和“南美有袋动物”)。在基于cytB基因的血孢子虫嵌套PCR检测中,所有蝙蝠脾脏DNA样本均呈阴性。本研究首次报道了圆管藻中存在巴贝虫和泰勒虫DNA。18S rRNA基因序列在不同分支中的不同定位表明吸血蝙蝠中存在不同的螺旋体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular Survey of Piroplasmids and Hemosporidians in Vampire Bats, with Evidence of Distinct Piroplasmida Lineages Parasitizing Desmodus rotundus from the Brazilian Amazon
Although bats can serve as reservoirs for several viruses and bacteria, there is limited knowledge regarding the diversity of apicomplexan protozoan belonging to the Piroplasmida and Haemosporida orders within this group of mammals. The present study aimed to investigate the occurrence and phylogenetic assessment of piroplasmids and hemosporidians in spleen samples collected from 229 vampire bats (228 Desmodus rotundus and 1 Diaemus youngii) in the states of Pará, Roraima, Amapá, and Amazonas, northern Brazil. Out of 229 bat spleen samples, 43 (18.77%) tested positive in a nested PCR for piroplasmids based on the 18S rRNA gene. Thirteen sequences (ranging from 474 to 828 base pairs) of the partial 18S rRNA gene showed 91.04–100% identity to Theileria sp., Babesia sp., and Piroplasmida previously detected in deer, tapirs, opossums, and crab-eating raccoons. The phylogenetic analysis based on the near-complete 18S rRNA gene positioned the obtained sequences from three D. rotundus in distinct clades (Theileria sensu stricto, Tapirus terrestris, and “South America Marsupialia”). All bat spleen DNA samples tested negative in a nested PCR assay for hemosporidians based on the cytB gene. The present study reported, for the first time, the presence Babesia sp. and Theileria sp. DNA in D. rotundus. The distinct positioning of the 18S rRNA gene sequences within different clades demonstrates the occurrence of different piroplasmid species in vampire bats.
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