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Temperature-mediated feeding between spring-associated and riverine-associated congeners with implications for community segregation

机译:春季相关和河流相关同源物之间的温度介导的取食对社区隔离具有影响

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摘要

Freshwater fish communities segregate along water temperature gradients attributed in part to temperature-mediated physiological processes that affect species fitness. In spring complexes of southwest USA, spring complexes with narrow range of water temperatures are dominated by a community of fishes (i.e., spring-associated fishes), whereas riverine habitats with wide-range of water temperatures are dominated by a different community of fishes (i.e., riverine-associated fishes). The purpose of this study was to test a prediction of the concept that temperature-mediated species performance is a mechanism in maintaining community segregation. We predicted that a spring-associated fish (Largespring Gambusia Gambusia geiseri) would feed first and more often in a pairing with a riverine-associated fish (Western Mosquitofish G. affinis) at an average spring temperature (23 °C) and that the riverine-associated fish would feed first and more often in a pairing with the spring-associated fish at a warm riverine temperature (30 °C). Among four trails consisting of 30 pairings, at the spring complex temperature (23 °C), Largespring Gambusia had a greater number of first feeds (mean ± 1 SD, 5.0 ± 0.82) than Western Mosquitofish (2.5 ± 1.73) and had greater mean number of total feeds (1.9 ± 0.31) than Western Mosquitofish (0.81 ± 0.70). At the riverine environment temperature (30 °C), Western Mosquitofish had a greater number of first feeds (5.25 ± 1.71) than Largespring Gambusia (2.5 ± 1.73) and had greater mean number of total feeds (2.78 ± 1.05) than Largespring Gambusia (0.94 ± 0.68). Our findings suggest that temperature-mediated species performance could be maintaining segregation between the two fish communities. This study benefits our understanding of distributional patterns and improves threat assessments of stenothermal aquatic organisms.
机译:淡水鱼群落沿水温梯度分离,部分原因是温度介导的生理过程影响了物种的适应性。在美国西南部的春季综合体中,水温范围较窄的春季综合体以鱼类(即与春季相关的鱼类)群落为主,而水温范围较广的河沿生境则由不同的鱼类群落(即与河流相关的鱼类)。这项研究的目的是检验对温度介导的物种表现是维持社区隔离的机制这一概念的预测。我们预测,春季平均温度(23°C)下,与春季相关的鱼类(Largespring Gambusia Gambusia geiseri)将与与河流相关的鱼类(Western Mosquitofish G. affinis)成对繁殖,并且繁殖频率更高。在温暖的河水温度(30°C)下,与鱼类相关的鱼类会首先和更频繁地与成年鱼类一起觅食。在春季配对温度(23°C)下的30条配对的4条小径中,大型春季辉耳猴的初次捕食数量(平均±1 SD,5.0±0.82)比西部蚊鱼(2.5±1.73)多,且均值更大总饲料数量(1.9±0.31)比西部蚊子(0.81±0.70)多。在河流环境温度(30°C)下,西部蚊子的第一饲料(5.25±1.71)数量多于大泉豚鼠(2.5±1.73),并且平均总饲料数量(2.78±1.05)比大泉豚鼠( 0.94±0.68)。我们的发现表明,温度介导的物种表现可能会维持两个鱼类群落之间的隔离。这项研究有益于我们对分布模式的理解,并改善了嗜热水生生物的威胁评估。

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