智利南部有尾目动物热性能和临界极限的种内和种间差异

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-04-01 DOI:10.1016/j.jtherbio.2024.103851
Marcela A. Vidal , Enrico L. Rezende , Leonardo D. Bacigalupe
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引用次数: 0

摘要

温度与性能之间的关系可以通过热性能曲线(TPC)来说明,该曲线已被证明有助于描述外温动物热生态学和进化的各个方面。由于环境条件的大规模变化,热性能曲线的参数也会随地域而变化。然而,只有一些研究试图量化热性能在相对较小的空间尺度上的变化,即使是在同一地点或同一物种的不同个体之间。在这里,我们量化了智利南部温带雨林中发现的五种两栖动物栉水母(Eupsophus)在运动性能热敏感性方面的个体差异和物种差异,并将它们的估计值与分布范围更广的共生物种进行了比较。我们测量了临界温度极限和五种不同温度下的跳跃表现。我们的研究结果表明,在系统发育过程中,热反应是相对保守的,因为在与Batrachyla taeniata和Rhinella spinulosa的研究结果相比时,Eupsophus物种的运动性能和活动热窗口仍然很窄。此外,我们还发现大多数物种的运动表现存在显著的个体差异,在不同温度下个体的运动表现具有一致性。进一步的分析探讨了在物种内部和物种之间,体型对运动表现和临界温度极限的影响。我们的研究结果表明,在耐热广度和运动性能之间存在一种权衡情景,即耐热范围更广的物种的运动性能可能会受到影响。有趣的是,这些特征似乎部分受体型变化的影响,这就提出了潜在生态影响的问题。
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Intra and interspecific variation in thermal performance and critical limits in anurans from southern Chile

The relationship between temperature and performance can be illustrated through a thermal performance curve (TPC), which has proven useful in describing various aspects of ectotherms' thermal ecology and evolution. The parameters of the TPC can vary geographically due to large-scale variations in environmental conditions. However, only some studies have attempted to quantify how thermal performance varies over relatively small spatial scales, even in the same location or consistently among individuals within a species. Here, we quantified individual and species variation in thermal sensitivity of locomotor performance in five amphibia Eupsophus species found in the temperate rainforests of southern Chile and compared their estimates against co-occurring species that exhibit a substantially more extensive distributional range. We measured critical thermal limits and jumping performance under five different temperatures. Our results suggest that thermal responses are relatively conserved along the phylogeny, as the locomotor performance and thermal windows for activity remained narrow in Eupsophus species when compared against results observed for Batrachyla taeniata and Rhinella spinulosa. Additionally, we found significant individual differences in locomotor performance within most species, with individual consistency in performance observed across varied temperatures. Further analyses explored the influence of body size on locomotor performance and critical thermal limits within and between species. Our results suggest a trade-off scenario between thermal tolerance breadth and locomotor performance, where species exhibiting broader thermal ranges might have compromised performance. Interestingly, these traits seem partly mediated by body size variations, raising questions about potential ecological implications.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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