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寄生虫感染与氧化状态相关,并随塞舌尔莺的繁殖活动而变化。

Parasitic infection and oxidative status are associated and vary with breeding activity in the Seychelles warbler.

作者信息

van de Crommenacker Janske, Richardson David S, Koltz Amanda M, Hutchings Kimberly, Komdeur Jan

机构信息

Behavioural Ecology and Self-organization, University of Groningen, PO Box 11103, 9700 CC, Groningen, The Netherlands.

出版信息

Proc Biol Sci. 2012 Apr 22;279(1733):1466-76. doi: 10.1098/rspb.2011.1865. Epub 2011 Nov 2.

Abstract

Parasites can have detrimental effects on host fitness, and infection typically results in the stimulation of the immune system. While defending against infection, the immune system generates toxic oxidants; if these are not sufficiently counteracted by the antioxidant system, a state of oxidative stress can occur. Here, we investigated the relationship between parasitic infection-using malarial infection as a model-and oxidative status in a natural population of the Seychelles warbler, while taking into account potentially interacting environmental covariates. We found that malaria is associated with increased susceptibility to oxidative stress, but this depends on the breeding stage: only during the energetically demanding provisioning stage did infected birds have higher oxidative stress susceptibility than non-infected birds. The imbalance in oxidative status was caused by a marked increase in oxidant levels observed only in infected birds during provisioning and by an overall reduction in antioxidant capacity observed in all birds across the breeding cycle. This finding implies that higher workload while dealing with an infection could aggravate oxidative repercussions. Malarial infection was not associated with body condition loss, suggesting that even when conditional effects are not directly visible, detrimental effects may still manifest themselves over the longer term through the oxidative consequences.

摘要

寄生虫会对宿主健康产生有害影响,感染通常会导致免疫系统受到刺激。在抵御感染的过程中,免疫系统会产生有毒的氧化剂;如果这些氧化剂不能被抗氧化系统充分抵消,就可能会出现氧化应激状态。在此,我们以疟疾感染为模型,研究了塞舌尔莺自然种群中寄生虫感染与氧化状态之间的关系,同时考虑了可能相互作用的环境协变量。我们发现,疟疾与氧化应激易感性增加有关,但这取决于繁殖阶段:只有在能量需求较高的育雏阶段,感染的鸟类才比未感染的鸟类具有更高的氧化应激易感性。氧化状态的失衡是由仅在育雏期感染鸟类中观察到的氧化剂水平显著升高以及在整个繁殖周期中所有鸟类中观察到的抗氧化能力总体下降所导致的。这一发现表明,在应对感染时更高的工作量可能会加剧氧化反应。疟疾感染与身体状况下降无关,这表明即使条件效应不直接明显,有害影响仍可能通过氧化后果在长期内显现出来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c09/3282338/4e09d2c41c42/rspb20111865-g1.jpg

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