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马鹿的主要组织相容性复合体、寄生虫与鹿茸发育:对汉密尔顿和祖克假说的否定

MHC, parasites and antler development in red deer: no support for the Hamilton & Zuk hypothesis.

作者信息

Buczek M, Okarma H, Demiaszkiewicz A W, Radwan J

机构信息

Institute of Environmental Sciences, Jagiellonian University, Krakow, Poland.

Institute of Nature Conservation, Polish Academy of Sciences, Kraków, Poland.

出版信息

J Evol Biol. 2016 Mar;29(3):617-32. doi: 10.1111/jeb.12811. Epub 2016 Jan 8.

Abstract

The Hamilton-Zuk hypothesis proposes that the genetic benefits of preferences for elaborated secondary sexual traits have their origins in the arms race between hosts and parasites, which maintains genetic variance in parasite resistance. Infection, in turn, can be reflected in the expression of costly sexual ornaments. However, the link between immune genes, infection and the expression of secondary sexual traits has rarely been investigated. Here, we explored whether the presence and identity of functional variants (supertypes) of the highly polymorphic major histocompatibility complex (MHC), which is responsible for the recognition of parasites, predict the load of lung and gut parasites and antler development in the red deer (Cervus elaphus). While we found MHC supertypes to be associated with infection by a number of parasite species, including debilitating lung nematodes, we did not find support for the Hamilton-Zuk hypothesis. On the contrary, we found that lung nematode load was positively associated with antler development. We also found that the supertypes that were associated with resistance to certain parasites at the same time cause susceptibility to others. Such trade-offs may undermine the potential genetic benefits of mate choice for resistant partners.

摘要

汉密尔顿-祖克假说提出,对精致的第二性征的偏好所带来的遗传益处源于宿主与寄生虫之间的军备竞赛,这种竞赛维持了寄生虫抗性的遗传变异。反过来,感染可以反映在代价高昂的性装饰的表达上。然而,免疫基因、感染与第二性征表达之间的联系很少被研究。在这里,我们探究了负责识别寄生虫的高度多态的主要组织相容性复合体(MHC)功能变体(超型)的存在和特性,是否能预测马鹿( Cervus elaphus )肺部和肠道寄生虫的负荷以及鹿角的发育。虽然我们发现MHC超型与多种寄生虫物种的感染有关,包括使人衰弱的肺线虫,但我们没有找到支持汉密尔顿-祖克假说的证据。相反,我们发现肺线虫负荷与鹿角发育呈正相关。我们还发现,与对某些寄生虫的抗性相关的超型同时也会导致对其他寄生虫的易感性。这种权衡可能会削弱选择抗性伴侣的潜在遗传益处。

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