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生理特征的独立性表明了表型在面对生态需求时的灵活性。

Independence among physiological traits suggests flexibility in the face of ecological demands on phenotypes.

机构信息

Ecology and Evolutionary Biology, University of Toronto, Toronto, Ontario, Canada.

出版信息

J Evol Biol. 2012 Aug;25(8):1600-13. doi: 10.1111/j.1420-9101.2012.02543.x. Epub 2012 Jun 11.

Abstract

Phenotypic flexibility allows animals to adjust their physiology to diverse environmental conditions encountered over the year. Examining how these varying traits covary gives insights into potential constraints or freedoms that may shape evolutionary trajectories. In this study, we examined relationships among haematocrit, baseline corticosterone concentration, constitutive immune function and basal metabolic rate in red knot Calidris canutus islandica individuals subjected to experimentally manipulated temperature treatments over an entire annual cycle. If covariation among traits is constrained, we predict consistent covariation within and among individuals. We further predict consistent correlations between physiological and metabolic traits if constraints underlie species-level patterns found along the slow-fast pace-of-life continuum. We found no consistent correlations among haematocrit, baseline corticosterone concentration, immune function and basal metabolic rate either within or among individuals. This provides no evidence for constraints limiting relationships among these measures of the cardiovascular, endocrine, immune and metabolic systems in individual red knots. Rather, our data suggest that knots are free to adjust individual parts of their physiology independently. This makes good sense if one places the animal within its ecological context where different aspects of the environment might put different pressures on different aspects of physiology.

摘要

表型可塑性使动物能够根据一年中遇到的各种环境条件来调整其生理机能。研究这些不同特征的相互关系可以深入了解可能塑造进化轨迹的潜在限制或自由度。在这项研究中,我们研究了在整个年度周期内经历实验性温度处理的红腹滨鹬 Calidris canutus islandica 个体的血细胞比容、基础皮质酮浓度、固有免疫功能和基础代谢率之间的关系。如果特征之间的协变受到限制,我们预测个体内部和个体之间的协变是一致的。如果限制是物种水平上沿慢-快生活节奏连续体上发现的模式的基础,我们还预测生理和代谢特征之间存在一致的相关性。我们没有发现个体内部或个体之间的血细胞比容、基础皮质酮浓度、免疫功能和基础代谢率之间存在一致的相关性。这表明个体红腹滨鹬的心血管、内分泌、免疫和代谢系统的这些测量值之间不存在限制关系的证据。相反,我们的数据表明,红腹滨鹬可以自由地独立调节其生理机能的各个部分。如果将动物置于其生态环境中,其中环境的不同方面可能对生理的不同方面施加不同的压力,那么这是有意义的。

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