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Evidence for strong host clone-parasite species interactions in the Daphnia microparasite system

机译:水蚤微寄生虫系统中强烈的宿主克隆-寄生虫物种相互作用的证据

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Organisms are often confronted with multiple enemy species. Defenses against different parasite species may be traded off against each other. However, if resistance is based on (potentially costly) general defense mechanisms, it may be positively correlated among parasites. In an experimental study, we confronted 19 clones from one Daphnia magna population with two bacterial and three microsporidian parasite species. All parasites were isolated from the same pond as the hosts. Host clones were specific in their susceptibility towards different parasite species, and parasite species were host-clone specific in their infectivity, spore production, and virulence, resulting in highly significant host-parasite interactions. Since the Daphnia's resistance to different parasite species showed no obvious correlation, neither general defense mechanisms nor trade-offs in resistance explain our findings. None of the Daphnia clones were resistant to all parasite species, and the average level of resistance was quite similar among clones. This may reflect a cost of defense, so that the cumulative cost of being resistant to all parasite species might be too high. [References: 53]
机译:有机体经常面临多种敌人。对不同寄生虫物种的防御可能会相互折衷。但是,如果抗药性基于(可能代价高昂的)一般防御机制,则寄生虫之间可能呈正相关。在一项实验研究中,我们遇到了来自一个大型水蚤种群的19个克隆,其中有两个细菌和三个微孢子虫寄生虫种。所有寄生虫均与寄主同一个池塘隔离。寄主克隆对不同的寄生虫物种具有特异性,而寄生虫种在感染力,孢子产生和毒力方面对宿主-克隆具有特异性,从而导致寄主与寄生虫之间的相互作用极为显着。由于水蚤对不同寄生虫的抗性没有明显的相关性,因此一般防御机制和抗性的权衡都不能解释我们的发现。蚤的克隆没有一个对所有寄生虫物种有抗性,并且克隆之间的平均抗性水平非常相似。这可能反映了防御成本,因此对所有寄生虫物种产生抗性的累积成本可能太高。 [参考:53]

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