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一种行为改变吸虫宿主特异性的实验测试。

Experimental test of host specificity in a behaviour-modifying trematode.

作者信息

Hernandez R N, Fredensborg B L

机构信息

Department of Biology and Center for Subtropical Studies,The University of Texas-Pan American,1201 W University Drive,Edinburg,Texas 78539,USA.

Department of Plant and Environmental Sciences,Faculty of Science,University of Copenhagen,Thorvaldsensvej 40,1871 Frederiksberg C,Denmark.

出版信息

Parasitology. 2015 Nov;142(13):1631-9. doi: 10.1017/S0031182015001171. Epub 2015 Sep 23.

Abstract

Host behavioural modification by parasites is a common and well-documented phenomenon. However, knowledge on the complexity and specificity of the underlying mechanisms is limited, and host specificity among manipulating parasites has rarely been experimentally verified. We tested the hypothesis that the ability to infect and manipulate host behaviour is restricted to phylogenetically closely related hosts. Our model system consisted of the brain-encysting trematode Euhaplorchis sp. A and six potential fish intermediate hosts from the Order Cyprinodontiformes. Five co-occurring cyprinids were examined for naturally acquired brain infections. Then we selected three species representing three levels of taxonomic relatedness to a known host to experimentally evaluate their susceptibility to infection, and the effect of infection status on behaviours presumably linked to increased trophic transmission. We found natural brain infections of Euhaplorchis sp. A metacercariae in three cyprinids in the shallow sublittoral zone. Of the three experimentally exposed species, Fundulus grandis and Poecilia latipinna acquired infections and displayed an elevated number of conspicuous behaviours in comparison with uninfected controls. Euhaplorchis sp. A was able to infect and manipulate fish belonging to two different families, suggesting that ecological similarity rather than genetic relatedness determines host range in this species.

摘要

寄生虫对宿主行为的改变是一种常见且有充分文献记载的现象。然而,对于其潜在机制的复杂性和特异性的了解有限,而且在具有操控能力的寄生虫中,宿主特异性很少得到实验验证。我们检验了这样一个假设,即感染和操控宿主行为的能力仅限于系统发育上密切相关的宿主。我们的模型系统由脑内寄生的吸虫Euhaplorchis sp. A和鲤齿目六个潜在的鱼类中间宿主组成。对五种共生的鲤科鱼类进行了自然获得性脑部感染检查。然后,我们选择了三个代表与已知宿主分类学相关性三个水平的物种,以实验方式评估它们的感染易感性,以及感染状态对可能与增加营养传播相关行为的影响。我们发现,在浅亚潮带的三种鲤科鱼类中存在Euhaplorchis sp. A尾蚴的自然脑部感染。在三个实验暴露的物种中,与未感染的对照组相比,大底鳉和宽帆食蚊鱼感染并表现出明显增加的显著行为。Euhaplorchis sp. A能够感染并操控属于两个不同科的鱼类,这表明生态相似性而非遗传相关性决定了该物种的宿主范围。

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