Variability in the summer movements, habitat use and thermal biology of two fish species in a temperate river

IF 2 3区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Aquatic Sciences Pub Date : 2024-04-25 DOI:10.1007/s00027-024-01073-y
Fatima Amat-Trigo, Ali Serhan Tarkan, Demetra Andreou, Sadi Aksu, Jonathan D. Bolland, Phillipa K. Gillingham, Catherine Gutmann Roberts, Mark I. A. Yeldham, J. Robert Britton
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Abstract

The ability of fish to cope with warm water temperatures in summer depends on factors including their thermal traits and the ability of individuals to access cool-water refugia. Knowledge is highly limited on the in situ responses of many fishes to elevated summer temperatures, including whether they express behavioural thermoregulation. The responses of two riverine species to summer water temperatures were tested here using the movement metrics, spatial habitat use and body temperatures of individual European barbel Barbus barbus (‘barbel’) and common bream Abramis brama (‘bream’) versus river temperatures. Acoustic biotelemetry was applied in the lower River Severn basin, western Britain, in summer 2021 (barbel) and 2022 (bream), where individuals could move across > 150 km of river, including a tributary of cooler water. Across all individuals, bream occupied 37 km of river length (mainstem only), with low inter-individual variability in their spatial habitat use, movements and body temperatures. In contrast, barbel occupied 62 km of river (main river/tributary), with relatively high inter-individual variability in spatial habitat use, movements and body temperatures, with higher variation in body temperatures as river temperatures increased (maximum mean daily temperature difference between individuals on the same day: 4.2 °C). Although warmer individuals generally moved more, their activity was greatest at relatively low temperatures and higher flows, and neither species revealed any evidence of behavioural thermoregulation during elevated temperatures. Enabling phenotypically diverse fish populations to express their natural behaviours and thermal preferences in summer water temperatures thus requires maintaining their free-ranging in thermally heterogenous habitats.

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温带河流中两种鱼类夏季活动、栖息地利用和热生物学特性的变化
鱼类应对夏季温暖水温的能力取决于各种因素,包括它们的热特征和个体进入凉水避难所的能力。关于许多鱼类对夏季温度升高的原位反应,包括它们是否表现出行为体温调节,目前的知识非常有限。本研究利用欧洲鲃(Barbus barbus)和普通鳊鱼(Abramis brama)个体的运动指标、空间栖息地利用和体温与河流温度的关系,测试了两种河流鱼类对夏季水温的反应。2021 年夏季(鲃鱼)和 2022 年夏季(鳊鱼),在英国西部塞文河下游流域应用了声学生物遥测技术,个体可在 150 千米的河流中移动,包括一条水温较低的支流。在所有个体中,鳊鱼占据了37千米长的河流(仅主干),其栖息地空间利用、移动和体温的个体间变异性较低。相比之下,鲃占据了 62 千米长的河段(主河道/支流),个体间在栖息地利用、移动和体温方面的变异性相对较高,随着河水温度的升高,体温的变异性更高(同一天个体间的最大平均日温差为 4.2 °C):4.2 °C).虽然体温较高的个体一般活动较多,但它们在相对较低的温度和较高的水流条件下活动量最大,而且这两种鱼在温度升高时都没有行为体温调节的迹象。因此,要使表型多样化的鱼类种群在夏季水温条件下表现出它们的自然行为和热偏好,就需要保持它们在热异质生境中的自由活动。
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来源期刊
Aquatic Sciences
Aquatic Sciences 环境科学-海洋与淡水生物学
CiteScore
3.90
自引率
4.20%
发文量
60
审稿时长
1 months
期刊介绍: Aquatic Sciences – Research Across Boundaries publishes original research, overviews, and reviews dealing with aquatic systems (both freshwater and marine systems) and their boundaries, including the impact of human activities on these systems. The coverage ranges from molecular-level mechanistic studies to investigations at the whole ecosystem scale. Aquatic Sciences publishes articles presenting research across disciplinary and environmental boundaries, including studies examining interactions among geological, microbial, biological, chemical, physical, hydrological, and societal processes, as well as studies assessing land-water, air-water, benthic-pelagic, river-ocean, lentic-lotic, and groundwater-surface water interactions.
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