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使用高通量扩增子测序对蜗牛和感染性吸虫寄生虫进行同步基因分型。

Simultaneous genotyping of snails and infecting trematode parasites using high-throughput amplicon sequencing.

作者信息

Hammoud Cyril, Mulero Stephen, Van Bocxlaer Bert, Boissier Jérôme, Verschuren Dirk, Albrecht Christian, Huyse Tine

机构信息

Limnology Unit, Department of Biology, Ghent University, Gent, Belgium.

Department of Biology, Royal Museum for Central Africa, Tervuren, Belgium.

出版信息

Mol Ecol Resour. 2022 Feb;22(2):567-586. doi: 10.1111/1755-0998.13492. Epub 2021 Sep 6.

Abstract

Several methodological issues currently hamper the study of entire trematode communities within populations of their intermediate snail hosts. Here we develop a new workflow using high-throughput amplicon sequencing to simultaneously genotype snail hosts and their infecting trematode parasites. We designed primers to amplify four snail and five trematode markers in a single multiplex PCR. While also applicable to other genera, we focused on medically and economically important snail genera within the superorder Hygrophila and targeted a broad taxonomic range of parasites within the class Trematoda. We tested the workflow using 417 Biomphalaria glabrata specimens experimentally infected with Schistosoma rodhaini, two strains of Schistosoma mansoni and combinations thereof. We evaluated the reliability of infection diagnostics, the robustness of the workflow, its specificity related to host and parasite identification, and the sensitivity to detect co-infections, immature infections and changes of parasite biomass during the infection process. Finally, we investigated its applicability in wild-caught snails of other genera naturally infected with a diverse range of trematodes. After stringent quality control the workflow allows the identification of snails to species level, and of trematodes to taxonomic levels ranging from family to strain. It is sensitive to detect immature infections and changes in parasite biomass described in previous experimental studies. Co-infections were successfully identified, opening the possibility to examine parasite-parasite interactions such as interspecific competition. Together, these results demonstrate that our workflow provides a powerful tool to analyse the processes shaping trematode communities within natural snail populations.

摘要

目前,几个方法学问题阻碍了对中间螺宿主种群内整个吸虫群落的研究。在此,我们开发了一种新的工作流程,利用高通量扩增子测序同时对螺宿主及其感染的吸虫寄生虫进行基因分型。我们设计了引物,以便在单个多重PCR中扩增四个螺和五个吸虫标记。虽然该方法也适用于其他属,但我们重点关注了水栖亚目内具有医学和经济重要性的螺属,并针对吸虫纲内广泛的寄生虫分类范围。我们使用417个实验感染了罗氏血吸虫、两株曼氏血吸虫及其组合的光滑双脐螺标本对该工作流程进行了测试。我们评估了感染诊断的可靠性、工作流程的稳健性、其与宿主和寄生虫鉴定相关的特异性,以及检测共感染、未成熟感染和感染过程中寄生虫生物量变化的敏感性。最后,我们研究了其在自然感染多种吸虫的其他属野生捕获螺中的适用性。经过严格的质量控制后,该工作流程能够将螺鉴定到物种水平,将吸虫鉴定到从科到菌株的分类水平。它对检测先前实验研究中描述的未成熟感染和寄生虫生物量变化很敏感。成功鉴定了共感染,为研究寄生虫间相互作用(如种间竞争)提供了可能性。总之,这些结果表明,我们的工作流程为分析自然螺种群内吸虫群落形成过程提供了一个强大的工具。

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