Thermal Traits Vary with Mass and across Populations of the Marsh Periwinkle, Littoraria irrorata.

IF 2.1 4区 生物学 Q2 BIOLOGY
Biological Bulletin Pub Date : 2022-06-01 Epub Date: 2022-05-20 DOI:10.1086/719850
Rebecca L Atkins, Kathleen M Clancy, William T Ellis, Craig W Osenberg
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引用次数: 0

Abstract

AbstractPhysiological processes influence how individuals perform in various environmental contexts. The basis of such processes, metabolism, scales allometrically with body mass and nonlinearly with temperature, as described by a thermal performance curve. Past studies of thermal performance curves tend to focus on effects of temperature on a single body size or population, rather than variation in the thermal performance curve across sizes and populations. Here, we estimate intraspecific variation in parameters of the thermal performance curve in the salt marsh gastropod Littoraria irrorata. First, we quantify the thermal performance curve for respiration rate as a function of both temperature and body size in Littoraria and evaluate whether the thermal parameters and body size scaling are interdependent. Next, we quantify how parameters in the thermal performance curve for feeding rate vary between three Littoraria populations that occur along a latitudinal gradient. Our work suggests that the thermal traits describing Littoraria respiration are dependent on body mass and that both the thermal traits and the mass scaling of feeding vary across sites. We found limited evidence to suggest that mass scaling of Littoraria feeding or respiration rates depends on temperature. Variation in the thermal performance curves interacts with the size structure of the Littoraria population to generate divergent population-level responses to temperature. These results highlight the importance of considering variation in population size structure and physiological allometry when attempting to predict how temperature change will affect physiological responses and consumer-resource interactions.

沼泽长春花(Littoraria irorata)的热特性随质量和种群的不同而变化。
生理过程影响个体在不同环境下的表现。这些过程的基础,新陈代谢,与体重呈异速变化,与温度呈非线性变化,如热性能曲线所描述的那样。以往的热性能曲线研究倾向于关注温度对单一体型或种群的影响,而不是热性能曲线在不同体型和种群之间的变化。在此,我们估计了盐沼腹足动物Littoraria irorata的热性能曲线参数的种内变化。首先,我们将呼吸速率的热性能曲线量化为温度和体型的函数,并评估热参数和体型缩放是否相互依赖。接下来,我们量化了取食率的热性能曲线参数在沿纬度梯度发生的三个Littoraria种群之间的变化。我们的研究表明,描述Littoraria呼吸的热特征依赖于体重,并且热特征和摄食的质量比例在不同的地点都是不同的。我们发现有限的证据表明,Littoraria的摄食或呼吸速率的大规模缩放取决于温度。热性能曲线的变化与Littoraria种群的大小结构相互作用,产生不同的种群水平对温度的响应。这些结果强调了在试图预测温度变化如何影响生理反应和消费者-资源相互作用时,考虑种群大小结构和生理异速变化的重要性。
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来源期刊
Biological Bulletin
Biological Bulletin 生物-海洋与淡水生物学
CiteScore
3.30
自引率
6.20%
发文量
47
审稿时长
6-12 weeks
期刊介绍: The Biological Bulletin disseminates novel scientific results in broadly related fields of biology in keeping with more than 100 years of a tradition of excellence. The Bulletin publishes outstanding original research with an overarching goal of explaining how organisms develop, function, and evolve in their natural environments. To that end, the journal publishes papers in the fields of Neurobiology and Behavior, Physiology and Biomechanics, Ecology and Evolution, Development and Reproduction, Cell Biology, Symbiosis and Systematics. The Bulletin emphasizes basic research on marine model systems but includes articles of an interdisciplinary nature when appropriate.
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