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一种多态淡水物种的代谢率、栖息地选择和资源利用之间的相互作用。

The interaction between metabolic rate, habitat choice, and resource use in a polymorphic freshwater species.

作者信息

Andersson Matilda L, Scharnweber Kristin, Eklöv Peter

机构信息

Department of Ecology and Genetics Uppsala University Uppsala Sweden.

Department of Aquatic Sciences and Assessment Swedish University of Agricultural Sciences Uppsala Sweden.

出版信息

Ecol Evol. 2022 Jul 31;12(8):e9129. doi: 10.1002/ece3.9129. eCollection 2022 Aug.

Abstract

Resource polymorphism is common across taxa and can result in alternate ecotypes with specific morphologies, feeding modes, and behaviors that increase performance in a specific habitat. This can result in high intraspecific variation in the expression of specific traits and the extent to which these traits are correlated within a single population. Although metabolic rate influences resource acquisition and the overall pace of life of individuals it is not clear how metabolic rate interacts with the larger suite of traits to ultimately determine individual fitness.We examined the relationship between metabolic rates and the major differences (habitat use, morphology, and resource use) between littoral and pelagic ecotypes of European perch ( from a single lake in Central Sweden.Standard metabolic rate (SMR) was significantly higher in pelagic perch but did not correlate with resource use or morphology. Maximum metabolic rate (MMR) was not correlated with any of our explanatory variables or with SMR. Aerobic scope (AS) showed the same pattern as SMR, differing across habitats, but contrary to expectations, was lower in pelagic perch.This study helps to establish a framework for future experiments further exploring the drivers of intraspecific differences in metabolism. In addition, since metabolic rates scale with temperature and determine predator energy requirements, our observed differences in SMR across habitats will help determine ecotype-specific vulnerabilities to climate change and differences in top-down predation pressure across habitats.

摘要

资源多态性在各个分类群中都很常见,并且可能导致具有特定形态、摄食方式和行为的不同生态型,这些生态型在特定栖息地中的表现会更好。这可能导致特定性状表达的种内差异很大,以及这些性状在单个种群中的相关程度。尽管代谢率会影响资源获取和个体的整体生活节奏,但目前尚不清楚代谢率如何与更大的一系列性状相互作用,从而最终决定个体的适合度。我们研究了瑞典中部一个湖泊中欧洲鲈鱼的沿岸和中上层生态型之间的代谢率与主要差异(栖息地利用、形态和资源利用)之间的关系。中上层鲈鱼的标准代谢率(SMR)显著更高,但与资源利用或形态无关。最大代谢率(MMR)与我们的任何解释变量或SMR均无关联。有氧代谢范围(AS)与SMR表现出相同的模式,在不同栖息地有所不同,但与预期相反,中上层鲈鱼的有氧代谢范围较低。这项研究有助于建立一个框架,用于未来进一步探索种内代谢差异驱动因素的实验。此外,由于代谢率随温度变化且决定捕食者的能量需求,我们观察到的不同栖息地之间SMR的差异将有助于确定生态型对气候变化的特定脆弱性以及不同栖息地自上而下捕食压力的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/228c/9339753/f1ece53c3259/ECE3-12-e9129-g006.jpg

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