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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Phylogeny influences the relationships linking key ecological thermal metrics for North American freshwater fish species
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Phylogeny influences the relationships linking key ecological thermal metrics for North American freshwater fish species

机译:系统发育影响与北美淡水鱼物种关键生态温度指标相关的关系

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摘要

Habitat temperature is a major determinant of performance and activity in fish. We summarize published studies of 173 North American freshwater fish species to examine the interrelationships among thermal response metrics associated with three types of individual performance: growth (optimal growth temperature (OGT), final temperature preferendum (FTP)), survival (upper incipient lethal temperature (UILT), critical thermal maximum (CTMax)), and reproduction (optimum spawning temperature (OS), optimum egg development temperature (OE)). We found that all metrics were highly correlated, especially those associated with a specific performance type. Differences in thermal metrics were also significantly linked to traditional thermal guild classifications, spawning season, and strategy. We found an overall decline in correlation strength when we used phylogenetically independent contrasts to control for the effect of phylogeny. This decline was much greater for growth and survival metrics than for reproduction. This suggests that the role of evolutionary history in determining thermal sensitivity at the species level varies greatly across the range of performance types that can be used to characterize the behaviour of an individual.
机译:生境温度是鱼类生长和活动的主要决定因素。我们总结了已发表的对173种北美淡水鱼物种的研究,以研究与三种类型的个体表现相关的热响应指标之间的相互关系:生长(最佳生长温度(OGT),最终温度偏好菌落(FTP)),生存率(最高初期致死温度) (UILT),临界热最大值(CTMax))和繁殖(最佳产卵温度(OS),最佳卵子发育温度(OE))。我们发现所有指标都是高度相关的,尤其是那些与特定性能类型相关的指标。热量指标的差异也与传统的热量行会分类,产卵季节和策略密切相关。当我们使用系统发育独立对比来控制系统发育的影响时,我们发现相关强度总体下降。对于增长和生存指标而言,这种下降要比对繁殖的下降要大得多。这表明,进化史在确定物种水平的热敏感性中的作用在可用于表征个体行为的各种性能类型范围内变化很大。

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