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鸟类大脑大小与免疫力之间的协变关系:对大脑大小进化的启示

Covariation between brain size and immunity in birds: implications for brain size evolution.

作者信息

Møller A P, Erritzøe J, Garamszegi L Z

机构信息

Laboratoire de Parasitologie Evolutive, CNRS UMR 7103, Université Pierre et Marie Curie, Paris Cedex 05, France.

出版信息

J Evol Biol. 2005 Jan;18(1):223-37. doi: 10.1111/j.1420-9101.2004.00805.x.

Abstract

Parasitism can negatively affect learning and cognition, setting the scene for coevolution between brain and immunity. Greater susceptibility to parasitism by males may impair their cognitive ability, and relatively greater male investment in immunity could compensate for greater susceptibility to parasites, in particular when males have a relatively large brain. We analysed covariation between relative size of immune defence organs and brain in juvenile and adult birds. The relative size of the bursa of Fabricius and the spleen in adults covaried positively with relative brain size across bird species. The relative size of these two immune defence organs covaried with sex differences in relative size of the brain, indicating that the relationship between immune defence and brain size was stronger for males. In contrast, liver and heart size or sexual size dimorphism in size did not covary with immune defence. Thus, species in which males have relatively large brains also have relatively large immune defence organs.

摘要

寄生现象会对学习和认知产生负面影响,为大脑与免疫系统之间的协同进化创造了条件。雄性对寄生现象的易感性更高,这可能会损害它们的认知能力,而雄性在免疫方面相对更多的投入可以弥补对寄生虫更高的易感性,尤其是当雄性拥有相对较大的大脑时。我们分析了幼鸟和成鸟免疫防御器官与大脑相对大小之间的协变关系。成年鸟类中,法氏囊和脾脏的相对大小与鸟类物种的相对脑容量呈正相关。这两个免疫防御器官的相对大小与大脑相对大小的性别差异相关,表明免疫防御与脑容量之间的关系对雄性更强。相比之下,肝脏和心脏大小或大小方面的两性异形与免疫防御没有协变关系。因此,雄性大脑相对较大的物种也具有相对较大的免疫防御器官。

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