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Costs of resistance and infection by a generalist pathogen

机译:普通病原体抵抗和感染的成本

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Abstract Pathogen infection is typically costly to hosts, resulting in reduced fitness. However, pathogen exposure may also come at a cost even if the host does not become infected. These fitness reductions, referred to as ?¢????resistance costs?¢????, are inducible physiological costs expressed as a result of a trade-off between resistance to a pathogen and aspects of host fitness (e.g., reproduction). Here, we examine resistance and infection costs of a generalist fungal pathogen ( Metschnikowia bicuspidata ) capable of infecting a number of host species. Costs were quantified as reductions in host lifespan, total reproduction, and mean clutch size as a function of pathogen exposure (resistance cost) or infection (infection cost). We provide empirical support for infection costs and modest support for resistance costs for five Daphnia host species. Specifically, only one host species examined incurred a significant cost of resistance. This species was the least susceptible to infection, suggesting the possibility that host susceptibility to infection is associated with the detectability and size of resistance cost. Host age at the time of pathogen exposure did not influence the magnitude of resistance or infection cost. Lastly, resistant hosts had fitness values intermediate between unexposed control hosts and infected hosts. Although not statistically significant, this could suggest that pathogen exposure does come at some marginal cost. Taken together, our findings suggest that infection is costly, resistance costs may simply be difficult to detect, and the magnitude of resistance cost may vary among host species as a result of host life history or susceptibility.
机译:摘要病原体感染通常会使宿主付出高昂的代价,从而导致健康降低。但是,即使宿主没有被感染,病原体暴露也可​​能要付出一定的代价。这些适应性降低,称为“抵抗力成本”,是由于对病原体的抵抗力与宿主适应性(例如生殖)方面之间权衡而得出的可诱导的生理成本。 。在这里,我们研究了能够感染多种宿主物种的多能真菌病原体(Metschnikowia bicuspidata)的抗药性和感染成本。成本量化为宿主寿命减少,总繁殖量和平均离体大小随病原体暴露(抵抗成本)或感染(感染成本)的函数。我们为5种水蚤的寄主提供了感染费用的经验支持和抗药性的适度支持。具体而言,仅检查的一种寄主物种产生了巨大的抗性成本。该物种最不容易被感染,这表明宿主对感染的易感性与可检测性和抗性成本的大小有关。病原体暴露时的宿主年龄不影响耐药性或感染成本的大小。最后,抗药性寄主的适应度介于未暴露的对照寄主和被感染的寄主之间。尽管没有统计学意义,但这可能表明病原体暴露确实付出了一些边际成本。两者合计,我们的发现表明感染是昂贵的,耐药成本可能很难检测,并且由于宿主的生活史或易感性,耐药成本的大小在宿主物种之间可能会有所不同。

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