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血吸虫病的生物媒介双壳类蜗牛的血淋巴支持多样化的微生物组。

The hemolymph of Biomphalaria snail vectors of schistosomiasis supports a diverse microbiome.

机构信息

Texas Biomedical Research Institute, PO Box 760549, San Antonio, TX, 78258, USA.

出版信息

Environ Microbiol. 2020 Dec;22(12):5450-5466. doi: 10.1111/1462-2920.15303. Epub 2020 Nov 20.

DOI:10.1111/1462-2920.15303
PMID:33169917
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8023393/
Abstract

The microbiome - the microorganism community that is found on or within an organism's body - is increasingly recognized to shape many aspects of its host biology and is a key determinant of health and disease. Microbiomes modulate the capacity of insect disease vectors (mosquitoes, tsetse flies, sandflies) to transmit parasites and disease. We investigate the diversity and abundance of microorganisms within the hemolymph (i.e. blood) of Biomphalaria snails, the intermediate host for Schistosoma mansoni, using Illumina MiSeq sequencing of the bacterial 16S V4 rDNA. We sampled hemolymph from five snails from six different laboratory populations of B. glabrata and one population of B. alexandrina. We observed 279.84 ± 0.79 amplicon sequence variants per snail. There were significant differences in microbiome composition at the level of individual snails, snail populations and species. Snail microbiomes were dominated by Proteobacteria and Bacteroidetes while water microbiomes from snail tank were dominated by Actinobacteria. We investigated the absolute bacterial load using qPCR: hemolymph samples contained 2784 ± 339 bacteria/μl. We speculate that the microbiome may represent a critical, but unexplored intermediary in the snail-schistosome interaction as hemolymph is in very close contact with the parasite at each step of its development.

摘要

微生物组 - 存在于生物体体表或体内的微生物群落 - 越来越被认为可以塑造其宿主生物学的许多方面,是健康和疾病的关键决定因素。微生物组调节昆虫病媒(蚊子、采采蝇、沙蝇)传播寄生虫和疾病的能力。我们使用 Illumina MiSeq 对细菌 16S V4 rDNA 进行测序,研究了曼氏血吸虫中间宿主玻利维亚蜗牛血液(即血液)中的微生物多样性和丰度。我们从六个不同玻利维亚蜗牛实验室种群的五只蜗牛和一个亚历山大蜗牛种群中采集了血液样本。我们观察到每只蜗牛有 279.84 ± 0.79 个扩增子序列变体。个体蜗牛、蜗牛种群和物种的微生物组组成存在显著差异。蜗牛微生物组主要由变形菌门和拟杆菌门组成,而蜗牛水箱中的水微生物组主要由放线菌门组成。我们使用 qPCR 研究了绝对细菌负荷:血液样本中含有 2784 ± 339 个细菌/μl。我们推测,微生物组可能代表蜗牛 - 血吸虫相互作用中一个关键但尚未探索的中间环节,因为血液在寄生虫发育的每个阶段都与寄生虫密切接触。

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