Evolutionary trade-off between innate and acquired immune defences in birds.

IF 2.6 2区 生物学 Q1 ZOOLOGY
Piotr Minias, Wei-Xuan V-H Peng, Kevin D Matson
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引用次数: 0

Abstract

Background: The development, maintenance, and use of immune defences are costly. Therefore, animals face trade-offs in terms of resource allocation within their immune system and between their immune system and other physiological processes. To maximize fitness, evolution may favour investment in one immunological defence or subsystem over another in a way that matches a species broader life history strategy. Here, we used phylogenetically-informed comparative analyses to test for relationships between two immunological components. Natural antibodies and complement were used as proxies for the innate branch; structural complexity of the major histocompatibility complex (MHC) region was used for the acquired branch.

Results: We found a negative association between the levels of natural antibodies (i.e., haemagglutination titre) and the total MHC gene copy number across the avian phylogeny, both at the species and family level. The family-level analysis indicated that this association was apparent for both MHC-I and MHC-II, when copy numbers within these two MHC regions were analysed separately. The association remained significant after controlling for basic life history components and for ecological traits commonly linked to pathogen exposure.

Conclusion: Our results provide the first phylogenetically robust evidence for an evolutionary trade-off within the avian immune system, with a more developed acquired immune system (i.e., more complex MHC architecture) in more derived bird lineages (e.g., passerines) being accompanied by an apparent downregulation of the innate immune system.

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鸟类先天和获得性免疫防御之间的进化权衡。
背景:免疫防御的发展、维护和使用是昂贵的。因此,动物在其免疫系统内部以及免疫系统与其他生理过程之间的资源分配方面面临权衡。为了最大限度地提高适应性,进化可能倾向于投资于一种免疫防御或子系统,而不是另一种免疫防御或子系统,以一种与物种更广泛的生活史策略相匹配的方式。在这里,我们使用系统发育的比较分析来测试两种免疫成分之间的关系。天然抗体和补体作为先天分支的替代物;主要组织相容性复合体(MHC)区域的结构复杂性用于获得性分支。结果:我们发现天然抗体(即血凝滴度)水平与整个鸟类系统发育中MHC基因总拷贝数呈负相关,无论是在物种还是科水平上。家族水平分析表明,当分别分析这两个MHC区域内的拷贝数时,MHC- i和MHC- ii的这种关联都很明显。在控制了基本生活史成分和通常与病原体暴露相关的生态性状后,这种关联仍然显著。结论:我们的研究结果为鸟类免疫系统的进化权衡提供了第一个系统发育上强有力的证据,在更多衍生的鸟类谱系中(如雀鸟),获得性免疫系统更发达(即MHC结构更复杂)伴随着先天免疫系统的明显下调。
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来源期刊
CiteScore
4.90
自引率
0.00%
发文量
29
审稿时长
>12 weeks
期刊介绍: Frontiers in Zoology is an open access, peer-reviewed online journal publishing high quality research articles and reviews on all aspects of animal life. As a biological discipline, zoology has one of the longest histories. Today it occasionally appears as though, due to the rapid expansion of life sciences, zoology has been replaced by more or less independent sub-disciplines amongst which exchange is often sparse. However, the recent advance of molecular methodology into "classical" fields of biology, and the development of theories that can explain phenomena on different levels of organisation, has led to a re-integration of zoological disciplines promoting a broader than usual approach to zoological questions. Zoology has re-emerged as an integrative discipline encompassing the most diverse aspects of animal life, from the level of the gene to the level of the ecosystem. Frontiers in Zoology is the first open access journal focusing on zoology as a whole. It aims to represent and re-unite the various disciplines that look at animal life from different perspectives and at providing the basis for a comprehensive understanding of zoological phenomena on all levels of analysis. Frontiers in Zoology provides a unique opportunity to publish high quality research and reviews on zoological issues that will be internationally accessible to any reader at no cost. The journal was initiated and is supported by the Deutsche Zoologische Gesellschaft, one of the largest national zoological societies with more than a century-long tradition in promoting high-level zoological research.
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