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Sympatric versus allopatric evolutionary contexts shape differential immune response in Biomphalaria / Schistosoma interaction

机译:Sympatric与异地疏水性进化语境形状在生物骨髓/血吸虫互动中的差异免疫应答

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摘要

Selective pressures between hosts and their parasites can result in reciprocal evolution or adaptation of specific life history traits. Local adaptation of resident hosts and parasites should lead to increase parasite infectivity/virulence (higher compatibility) when infecting hosts from the same location (in sympatry) than from a foreign location (in allopatry). Analysis of geographic variations in compatibility phenotypes is the most common proxy used to infer local adaptation. However, in some cases, allopatric host-parasite systems demonstrate similar or greater compatibility than in sympatry. In such cases, the potential for local adaptation remains unclear. Here, we study the interaction between Schistosoma and its vector snail Biomphalaria in which such discrepancy in local versus foreign compatibility phenotype has been reported. Herein, we aim at bridging this gap of knowledge by comparing life history traits (immune cellular response, host mortality, and parasite growth) and molecular responses in highly compatible sympatric and allopatric Schistosoma/Biomphalaria interactions originating from different geographic localities (Brazil, Venezuela and Burundi). We found that despite displaying similar prevalence phenotypes, sympatric schistosomes triggered a rapid immune suppression (dual-RNAseq analyses) in the snails within 24h post infection, whereas infection by allopatric schistosomes (regardless of the species) was associated with immune cell proliferation and triggered a non-specific generalized immune response after 96h. We observed that, sympatric schistosomes grow more rapidly. Finally, we identify miRNAs differentially expressed by Schistosoma mansoni that target host immune genes and could be responsible for hijacking the host immune response during the sympatric interaction. We show that despite having similar prevalence phenotypes, sympatric and allopatric snail-Schistosoma interactions displayed strong differences in their immunobiological molecular dialogue. Understanding the mechanisms allowing parasites to adapt rapidly and efficiently to new hosts is critical to control disease emergence and risks of Schistosomiasis outbreaks.
机译:主机及其寄生虫之间的选择性压力会导致相互演变或具体生活史特征的适应。居民主机和寄生虫的地方适应应该引起比从外国位置(在allopatry)从相同位置(在同域)感染主机时增加寄生虫感染/毒性(更高的兼容性)。在兼容性表型地理差异分析是用来推断适应当地最常见的代理。然而,在某些情况下,异域主机寄生虫系统表现出比同域相似或更大的兼容性。在这种情况下,为当地适应潜力仍不清楚。在这里,我们研究血吸虫及其载体蜗牛贝罗其中在本地与外国兼容性表型差异等已报告之间的相互作用。在这里,我们的目标是在高度兼容同域,并从不同的地理地区异域血吸虫/贝罗相互作用原产比较生活史(免疫细胞反应,主机死亡率和寄生虫的生长)和分子反应(巴西,委内瑞拉弥合知识的这一空白,布隆迪)。我们发现,尽管显示发病率相似的表型,同域血吸虫通过异地血吸虫引发24小时后感染中的蜗牛快速的免疫抑制(双RNA测序分析),而感染(不分品种)与免疫细胞增殖,并引发了相关非特异性全身96小时后的免疫反应。我们观察到,同域血吸虫增长更为迅速。最后,我们确定的血吸虫差异表达的miRNA氏认为目标主机的免疫基因,可能是负责劫持同域交互过程中宿主的免疫反应。我们发现,尽管有类似的患病率表型,同域和异域蜗牛血吸虫的相互作用显示在他们的免疫生物学分子对话巨大分歧。了解使寄生虫迅速有效地适应新的宿主的机制是控制疾病发生的关键和血吸虫病疫情的风险。

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