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首页> 外文期刊>The Journal of Experimental Biology >The role of parasitism in the energy management of a free-ranging bird
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The role of parasitism in the energy management of a free-ranging bird

机译:寄生派对在自由量大鸟的能源管理中的作用

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摘要

Parasites often prompt sub-lethal costs to their hosts by eliciting immune responses. These costs can be hard to quantify but are crucial to our understanding of the host's ecology. Energy is a fundamental currency to quantify these costs, as energetic trade-offs often exist between key fitness-related processes. Daily energy expenditure (DEE) comprises of resting metabolic rate (RMR) and energy available for activity, which are linked via the energy management strategy of an organism. Parasitism may play a role in the balance between self-maintenance and activity, as immune costs can be expressed in elevated RMR. Therefore, understanding energy use in the presence of parasitism enables mechanistic elucidation of potential parasite costs. Using a gradient of natural parasite load and proxies for RMR and DEE in a wild population of breeding European shags (Phalacrocorax aristotelis), we tested the effect of parasitism on maintenance costs as well as the relationship between proxies for RMR and DEE. We found a positive relationship between parasite load and our RMR proxy in females but not males, and no relationship between proxies for RMR and DEE. This provides evidence for increased maintenance costs in individuals with higher parasite loads and suggests the use of an allocation energy management strategy, whereby an increase to RMR creates restrictions on energy allocation to other activities. This is likely to have fitness consequences as energy allocated to immunity is traded off against reproduction. Our findings demonstrate that understanding energy management strategies alongside fitness drivers is central to understanding the mechanisms by which these drivers influence individual fitness.
机译:寄生虫通常通过引发免疫反应来提示对其主持人的亚致死的成本。这些成本可能很难量化,但对我们对主持人的生态学的理解至关重要。能源是一种基本货币,以量化这些成本,因为在关键健身相关过程之间,能量的权衡通常存在于能量的权衡。每日能量支出(DEE)包括休息的代谢率(RMR)和可用于活动的能量,这些能量通过生物体的能量管理策略连接。寄生派可能在自我维护和活动之间的平衡中发挥作用,因为免疫成本可以以升高的RMR表达。因此,了解寄生术存在的能量使用使机械师能够阐明潜在的寄生石成本。在繁殖欧洲牡丹植物(Phalacrocorax Aristotelis)的野生群体中使用天然寄生虫载荷和RMR和DEE的梯度,我们测试了寄生觉对维护成本的影响以及RMR和DEE代理的关系。我们发现寄生虫负荷与我们的女性RMR代理之间的正面关系,但没有男性,并且RMR和DEE代理之间没有关系。这提供了具有更高寄生虫负荷的个体维护成本的证据,并建议使用分配能源管理策略,从而增加对RMR的增加对其他活动的能量分配产生了限制。这可能具有适应性后果,因为分配给免疫力的能量是对复制的交易。我们的调查结果表明,了解健身司机的能源管理战略是理解这些司机影响个人健身的机制的核心。

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