Variation in Embryonic Metabolic Reaction Norms and the Role of the Environment.

IF 1.8 3区 生物学 Q3 PHYSIOLOGY Physiological and Biochemical Zoology Pub Date : 2023-07-01 DOI:10.1086/725236
Alexandra G Cones, David F Westneat
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Abstract

AbstractEarly developmental environments can shape how organisms respond to later environments, but despite the potential for this phenomenon to alter the evolution of phenotypes and their underlying mechanisms in variable environments, details of this process are not understood. For example, both temperature and parental age can alter offspring metabolic plasticity and growth within species, yet the extent of such effects is unknown. We measured the reaction norms of embryonic heart rate in response to egg temperature and the change in egg mass over the incubation period in wild house sparrows. Using Bayesian linear mixed models, we estimated covariation in the intercepts and slopes of these reaction norms among clutches and eggs. We found that heart rate intercepts, not slopes, varied among clutches and that neither intercepts nor slopes varied among eggs within clutches. In contrast, egg mass intercepts and slopes varied among clutches and eggs. Ambient temperature did not explain variance in reaction norms. Instead, individuals from older mothers were more metabolically sensitive to egg temperature and lost less mass over the incubation period than individuals from younger mothers. Nevertheless, heart rate reaction norms and egg mass reaction norms did not covary. Our results suggest that early environments influenced by parents may contribute to variation in embryonic reaction norms. The structure of variation in embryonic reaction norms that exists both among clutches and among eggs demonstrates a complexity in plastic phenotypes that should be explored in future work. Furthermore, the potential for the embryonic environment to shape the reaction norms of other traits has implications for the evolution of plasticity more broadly.

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胚胎代谢反应规范的变异及环境的作用。
早期发育环境可以塑造生物体对后期环境的反应,但尽管这种现象有可能改变表型的进化及其在可变环境中的潜在机制,但这一过程的细节尚不清楚。例如,温度和父母年龄都可以改变后代的代谢可塑性和物种内的生长,但这种影响的程度尚不清楚。我们测量了野生家雀胚胎心率对卵温的反应规范和卵质量在孵化期间的变化。使用贝叶斯线性混合模型,我们估计了这些反应规范的截距和斜率在卵和卵之间的协变。我们发现,不同卵群的心率截距而不是斜率是不同的,而且不同卵群的心率截距和斜率都没有变化。相反,卵质量截距和斜率在不同的窝和卵之间是不同的。环境温度不能解释反应规范的差异。相反,与年轻母亲的个体相比,年长母亲的个体对卵子温度的代谢更敏感,在孵化期间体重损失更少。然而,心率反应规范和鸡蛋质量反应规范没有协变。我们的研究结果表明,受父母影响的早期环境可能有助于胚胎反应规范的变化。胚胎反应规范的变异结构既存在于卵群之间,也存在于卵群之间,这表明了可塑性表型的复杂性,应该在未来的工作中加以探索。此外,胚胎环境塑造其他性状反应规范的潜力对可塑性的进化具有更广泛的影响。
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来源期刊
CiteScore
3.20
自引率
6.20%
发文量
62
审稿时长
6-12 weeks
期刊介绍: Physiological and Biochemical Zoology: Ecological and Evolutionary Approaches primarily publishes original research in animal physiology and biochemistry as considered from behavioral, ecological, and/or evolutionary perspectives. Studies at all levels of biological organization from the molecular to the whole organism are welcome, and work that integrates across levels of organization is particularly encouraged. Studies that focus on behavior or morphology are welcome, so long as they include ties to physiology or biochemistry, in addition to having an ecological or evolutionary context. Subdisciplines of interest include nutrition and digestion, salt and water balance, epithelial and membrane transport, gas exchange and transport, acid-base balance, temperature adaptation, energetics, structure and function of macromolecules, chemical coordination and signal transduction, nitrogen metabolism and excretion, locomotion and muscle function, biomechanics, circulation, behavioral, comparative and mechanistic endocrinology, sensory physiology, neural coordination, and ecotoxicology ecoimmunology.
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