Schistosome species, parasite development, and co-infection combinations determine microbiome dynamics in the snail Biomphalaria glabrata.

IF 4.4 Q1 MICROBIOLOGY
Ruben Schols, Cyril Hammoud, Karen Bisschop, Isabel Vanoverberghe, Tine Huyse, Ellen Decaestecker
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引用次数: 0

Abstract

Background: Schistosomiasis is a snail-borne disease affecting over 200 million people worldwide. Despite dedicated control efforts and effective diagnostic tools, schistosomiasis remains prevalent. Novel and sustainable control measures are urgently needed. Bacteria might offer such a solution as links between bacteria, disease resistance and transmission potential of intermediate hosts have been established in other systems. To better understand the tripartite interaction potentially driving snail-schistosome compatibility patterns, microbial communities must be investigated throughout and across various parasite exposure conditions. Therefore, we studied Biomphalaria glabrata snails exposed to a high- and low-shedder population of Schistosoma mansoni and Schistosoma rodhaini in single and co-exposure experiments. Snails were sacrificed at different time points post-exposure and their bacterial communities and trematode (co-)infection status were determined through metabarcoding tools.

Results: Snails infected by low- and high-shedder S. mansoni populations were more likely to have bacterial community dysbiosis than those infected by S. rodhaini but this was also affected by miracidial load. Moreover, the single-infection hierarchical effect on the bacterial component of the microbiome is not maintained under co-infection with S. rodhaini, which appears to stabilize the snail's bacterial profile even after being outcompeted by high-shedder S. mansoni. Finally, alpha diversity differed significantly between infected and uninfected snails around the onset period of shedding at 30 days post-miracidial exposure.

Conclusion: The timing of this bacterial shift suggests an intricate parasite-snail interaction around key parasite development moments. Future studies investigating the tripartite interaction are advised to consider the effect of outcompeted or prepatent infections on the snail's microbiome.

血吸虫的种类、寄生虫的发育和共同感染的组合决定了光螺的微生物组动力学。
背景:血吸虫病是一种由蜗牛传播的疾病,影响全世界2亿多人。尽管有专门的控制努力和有效的诊断工具,血吸虫病仍然普遍存在。迫切需要新的和可持续的控制措施。细菌可能提供这样的解决方案,因为在其他系统中已经建立了细菌、疾病抗性和中间宿主传播潜力之间的联系。为了更好地了解可能驱动蜗牛-血吸虫相容性模式的三方相互作用,必须在整个和不同寄生虫暴露条件下调查微生物群落。因此,我们采用单暴露和共暴露两种实验方法,研究了暴露于高、低脱毛量曼氏血吸虫和罗氏血吸虫种群的光螺。在暴露后的不同时间点处死钉螺,通过元条形码工具测定其细菌群落和吸虫(共)感染情况。结果:低脱毛和高脱毛曼氏梭菌感染的钉螺比罗德海梭菌感染的钉螺更容易发生细菌群落失调,但这也受微生物负荷的影响。此外,在与螺杆线虫共同感染的情况下,对微生物组细菌成分的单一感染等级效应并没有维持,这似乎在螺杆线虫被高脱毛的曼氏线虫打败后也能稳定螺杆线虫的细菌分布。最后,α多样性在感染和未感染的蜗牛在暴露后30天开始脱落时显著不同。结论:这种细菌转变的时间表明,在寄生虫发育的关键时刻,寄生虫-蜗牛之间存在着复杂的相互作用。未来研究三方相互作用的建议是考虑竞争对手或专利前感染对蜗牛微生物组的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
0.00%
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审稿时长
13 weeks
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