Muñoz David, Miller David, Schilder Rudolf, Campbell Grant Evan H
Department of Ecosystem Science and Management The Pennsylvania State University University Park Pennsylvania USA.
Department of Entomology Department of Biology The Pennsylvania State University University Park Pennsylvania USA.
Ecol Evol. 2022 Jan 15;12(1):e8433. doi: 10.1002/ece3.8433. eCollection 2022 Jan.
Predicted changes in global temperature are expected to increase extinction risk for ectotherms, primarily through increased metabolic rates. Higher metabolic rates generate increased maintenance energy costs which are a major component of energy budgets. Organisms often employ plastic or evolutionary (e.g., local adaptation) mechanisms to optimize metabolic rate with respect to their environment. We examined relationships between temperature and standard metabolic rate across four populations of a widespread amphibian species to determine if populations vary in metabolic response and if their metabolic rates are plastic to seasonal thermal cues. Populations from warmer climates lowered metabolic rates when acclimating to summer temperatures as compared to spring temperatures. This may act as an energy saving mechanism during the warmest time of the year. No such plasticity was evident in populations from cooler climates. Both juvenile and adult salamanders exhibited metabolic plasticity. Although some populations responded to historic climate thermal cues, no populations showed plastic metabolic rate responses to future climate temperatures, indicating there are constraints on plastic responses. We postulate that impacts of warming will likely impact the energy budgets of salamanders, potentially affecting key demographic rates, such as individual growth and investment in reproduction.
预计全球气温变化将增加变温动物的灭绝风险,主要是通过提高代谢率来实现。较高的代谢率会导致维持能量成本增加,而维持能量成本是能量预算的主要组成部分。生物通常会采用可塑性或进化性(如局部适应)机制来根据环境优化代谢率。我们研究了一个广泛分布的两栖动物物种四个种群的温度与标准代谢率之间的关系,以确定种群在代谢反应上是否存在差异,以及它们的代谢率对季节性热线索是否具有可塑性。与春季温度相比,来自温暖气候的种群在适应夏季温度时会降低代谢率。这可能是一种在一年中最温暖时期的节能机制。在来自较凉爽气候的种群中,没有明显的这种可塑性。幼年和成年蝾螈都表现出代谢可塑性。尽管一些种群对历史气候热线索有反应,但没有种群对未来气候温度表现出可塑性代谢率反应,这表明可塑性反应存在限制。我们推测,气候变暖的影响可能会影响蝾螈的能量预算,潜在地影响关键的种群统计学速率,如个体生长和繁殖投入。