Suppr超能文献

赤边鲦鱼耐热性的季节变化。

Seasonal variation in thermal tolerance of redside dace .

作者信息

Leclair Alexandra T A, Drake D Andrew R, Pratt Thomas C, Mandrak Nicholas E

机构信息

Department of Biological Sciences, University of Toronto Scarborough, 1265 Military Trail, Scarborough, Ontario M1C 1A4, Canada.

Department of Ecology and Evolutionary Biology, University of Toronto, 25 Wilcox Street, Toronto, Ontario M5S3B2, Canada.

出版信息

Conserv Physiol. 2020 Aug 28;8(1):coaa081. doi: 10.1093/conphys/coaa081. eCollection 2020.

Abstract

Organisms living in environments with oscillating temperatures may rely on plastic traits to sustain thermal tolerance during high temperature periods. Phenotypic plasticity in critical thermal maximum (CT) is a powerful thermoregulative strategy that enables organisms to adjust CT when ambient temperatures do not match thermal preference. Given that global temperatures are increasing at an unprecedented rate, identifying factors that affect the plastic response in CT can help predict how organisms are likely to respond to changes in their thermal landscape. Using an experimental thermal chamber in the field, we investigated the effect of short-term acclimation on the CT and thermal safety margin (TSM) of wild-caught redside dace, , ( = 197) in a northern population in Two Tree River, Ontario. Streamside CT trials were used to identify the maximum temperature at which redside dace maintain equilibrium, providing a powerful tool for understanding how thermal stress affects individual performance. CT and TSM of redside dace were sensitive to changes in temperature, regardless of season, suggesting that temperature pulses caused by climate change or urban activities can impose negative fitness consequences year round. Interestingly, an individual's recent thermal history was more influential to its thermal tolerance than the current ambient water temperature. While the CT of redside dace increased with body size, the effect of body size on TSM remains unclear based on our models. The results provide insight into the thermal performance of redside dace that, to date, has been difficult to assess due to the species' rarity and lack of suitable streamside protocols.

摘要

生活在温度波动环境中的生物可能依靠可塑性特征在高温时期维持耐热性。临界热最大值(CT)的表型可塑性是一种强大的体温调节策略,使生物能够在环境温度与热偏好不匹配时调整CT。鉴于全球气温正以前所未有的速度上升,识别影响CT可塑性反应的因素有助于预测生物如何应对其热环境的变化。我们在安大略省两棵树河的一个北方种群中,使用野外实验热室,研究了短期驯化对野生捕获的红边鲦鱼(Fundulus rubrifrons,n = 197)的CT和热安全边际(TSM)的影响。河边CT试验用于确定红边鲦鱼维持平衡的最高温度,这为理解热应激如何影响个体表现提供了一个有力工具。红边鲦鱼的CT和TSM对温度变化敏感,无论季节如何,这表明气候变化或城市活动引起的温度脉冲可能全年都会对适应性产生负面影响。有趣的是,个体最近的热历史对其耐热性的影响比当前的环境水温更大。虽然红边鲦鱼的CT随体型增加,但根据我们的模型,体型对TSM的影响仍不清楚。这些结果为红边鲦鱼的热性能提供了见解,迄今为止,由于该物种稀有且缺乏合适的河边实验方案,其热性能一直难以评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bf6/7456563/5c62cb3e09e3/coaa081f1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验