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感染结果的异质性:来自黄蜂-锥虫系统的经验教训。

Heterogeneity in infection outcome: lessons from a bumblebee-trypanosome system.

作者信息

Sadd B M, Barribeau S M

机构信息

Experimental Ecology, Institute of Integrative Biology, ETH Zürich, Zürich, Switzerland.

出版信息

Parasite Immunol. 2013 Nov;35(11):339-49. doi: 10.1111/pim.12043.

Abstract

Interactions between insect hosts and their parasites are significant because their parasites can also be parasites of humans and of species that we utilize. Host-parasite interactions are complex, even in insects, and there can be heterogeneous outcomes in infection success, load, virulence and transmission, with consequences for the evolution of hosts and their parasites, and also for epidemiology. A comprehension that the triad of host, parasite and environment interact to dictate infection outcome is key for anyone interested in host-parasite research. Studies in model systems used to good effect to characterize insect immunity and infection rarely scrutinize such heterogeneity. Evolutionary ecology studies addressing natural variation offer a window on the causes and consequences of such heterogeneity. A system at the forefront in this area is that of bumblebees and their trypanosome parasite Crithidia. Placing results and interpretations in a broader context we synthesize the plethora of work on bumblebee immunity and parasite interactions. We describe and discuss the sources of heterogeneity that should also be considered in human-relevant insect-parasite systems, including genotypic variation in both parasites and hosts, the mediating role of the environment, and explore the emerging evidence for microbiota modulating defence against parasites.

摘要

昆虫宿主与其寄生虫之间的相互作用意义重大,因为这些寄生虫也可能寄生于人类以及我们所利用的物种。宿主与寄生虫之间的相互作用十分复杂,即便在昆虫中也是如此,在感染成功率、感染量、毒力和传播方面可能会出现不同的结果,这对宿主及其寄生虫的进化以及流行病学都会产生影响。理解宿主、寄生虫和环境三者相互作用以决定感染结果,对于任何从事宿主 - 寄生虫研究的人来说都是关键。用于有效表征昆虫免疫力和感染情况的模型系统研究很少仔细审视这种异质性。针对自然变异的进化生态学研究为这种异质性的成因及后果提供了一个窗口。在这一领域处于前沿的一个系统是大黄蜂及其锥虫寄生虫克氏锥虫。我们将研究结果和解释置于更广泛的背景下,综合了大量关于大黄蜂免疫力和寄生虫相互作用的研究。我们描述并讨论了在与人类相关的昆虫 - 寄生虫系统中也应考虑的异质性来源,包括寄生虫和宿主的基因型变异、环境的介导作用,并探讨了微生物群调节对寄生虫防御的新证据。

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