颜色变化作为免疫能力障碍假说预测的权衡的替代解决方案。

IF 3.7 1区 生物学 Q1 ZOOLOGY
Roberto Sacchi, Alan J Coladonato, Stefano Scali, Marco A L Zuffi, Rupert Palme, Marco Mangiacotti
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引用次数: 0

摘要

多态物种的颜色变异与一系列由不同遗传位点控制的可遗传性状有关,每个位点对应于可选择的适合度峰值。激素多效性被认为是维持这些形态的一种机制,尽管缺乏实验证据。在这项研究中,我们测试了普通壁虎(Podarcis muralis)的白色和黄色变种是否采用免疫能力障碍假说(ICHH)形成的替代策略。具体来说,我们通过经皮给药实验提高了血浆睾酮水平,并测量了(i)使用植物血凝素(PHA)肿胀的免疫反应和(ii)模拟领土入侵的镜像测试反应中的攻击行为的变化。我们发现睾酮诱导的免疫抑制在白人雄性中更强,而攻击性在两种变异中都有所下降。睾酮水平升高消除了异型之间在免疫力和攻击性方面的基线差异。这些发现为普通壁虎的形态特异性生活史策略提供了第一个实验支持,与ICHH一致:黄色雄性优先考虑攻击而不是免疫,而白色雄性则以竞争力为代价更多地投资于生存。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Colour Morphs as Alternative Solutions to the Trade-Off Predicted by the Immuno-Competence Handicap Hypothesis.

Colour morphs in polymorphic species are associated with a suite of heritable traits governed by distinct genetic loci, each corresponding to alternative fitness peaks. Hormonal pleiotropy has been proposed as a mechanism maintaining these morphs, though experimental evidence is lacking. In this study, we tested whether white and yellow morphs of the common wall lizard (Podarcis muralis) adopt alternative strategies shaped by the immuno-competence handicap hypotheses (ICHH). Specifically, we experimentally elevated plasma testosterone levels via transdermal administration and measured changes in (i) immune response using phytohaemagglutinin (PHA) swelling and (ii) the aggressive behaviour in response to a mirror test simulating territorial intrusion. We found that testosterone-induced immune suppression was stronger in white males, while aggression decreased in both morphs. Elevated testosterone eliminated the baseline differences between morphs in both immunity and aggression. These findings provide the first experimental support for morph-specific life-history strategies in common wall lizards, consistent with the ICHH: Yellow males prioritize aggression over immunity, while white males invest more in survival at the cost of competitiveness.

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来源期刊
CiteScore
6.40
自引率
12.10%
发文量
81
审稿时长
>12 weeks
期刊介绍: The official journal of the International Society of Zoological Sciences focuses on zoology as an integrative discipline encompassing all aspects of animal life. It presents a broader perspective of many levels of zoological inquiry, both spatial and temporal, and encourages cooperation between zoology and other disciplines including, but not limited to, physics, computer science, social science, ethics, teaching, paleontology, molecular biology, physiology, behavior, ecology and the built environment. It also looks at the animal-human interaction through exploring animal-plant interactions, microbe/pathogen effects and global changes on the environment and human society. Integrative topics of greatest interest to INZ include: (1) Animals & climate change (2) Animals & pollution (3) Animals & infectious diseases (4) Animals & biological invasions (5) Animal-plant interactions (6) Zoogeography & paleontology (7) Neurons, genes & behavior (8) Molecular ecology & evolution (9) Physiological adaptations
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