Effects of water temperature on swimming performance of Siniperca knerii Garman under the Yuanshui River cascade development

IF 0.5 4区 农林科学 Q4 FISHERIES
Bolan Song, Liangguo Liu, Xiangen Su, Tianbao Li
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Abstract

We examined the swimming parameters and oxygen consumption rate at four temperature levels (15,20,25 and 30°C) of Siniperca knerii Garman (11.81 ±2.21 cm, 26.4 ± 6.28g) from Yuanshui River for 30 days to analyze the ecological adaptability of the typical fish and the conservation of fishery resources from the Dongting Lake water system. Their relationship was also analyzed, and the results showed an approximately linear increasing trend of the fish’s critical swimming speed and preferred swimming speed with the change of temperature (P<0.05). In contrast, the induction velocity of fish decreased with the increase in water temperature. The relative induction velocities of the fish at four temperatures were (1.16±0.07), (0.94±0.06), (0.86±0.07), and (0.70±0.09) BL/s (Body Length/s). The preferred swimming speed was (1.86±0.04), (2.23±0.35), (2.65±0.28), and (2.74±0.33) BL/s. The relative critical speed was (2.58 ±0.32), (3.31±0.41), (4.31±0.52), and (5.22±0.48) BL/s. According to oxygen consumption rate at different temperatures, four nonlinear function models of the relationship between oxygen consumption rate of water temperature and swimming speed behavior parameters were obtained by nonlinear fitting. The model proved that the oxygen consumption rate, tail beating frequency, and respiratory rate increased with the increase in swimming speed. The higher the temperature, the more significant the changes were. The results showed that water temperature significantly affected the swimming characteristics of juvenile Siniperca knerii Garman. The changes were due to physiological and biochemical regulation with temperature and environmental changes. This experiment provided essential data support for the adaptive mechanism of sports physiology and ecology of typical fishes in the Yuanshui River.
沅水河梯级发育条件下水温对鳜鱼游泳性能的影响
为了分析洞庭湖水系中典型鱼类(11.81±2.21 cm, 26.4±6.28g)在15、20、25和30℃4种温度水平下的生态适应性和渔业资源保护情况,研究了元水河中典型鱼类(11.81±2.21 cm, 26.4±6.28g)的游泳参数和耗氧量。结果表明,鱼的临界游动速度和偏好游动速度随温度的变化呈近似线性增长趋势(P<0.05)。相反,鱼的感应速度随着水温的升高而降低。4种温度下的相对感应速度分别为(1.16±0.07)、(0.94±0.06)、(0.86±0.07)和(0.70±0.09)BL/s(体长/s)。首选游泳速度分别为(1.86±0.04)、(2.23±0.35)、(2.65±0.28)、(2.74±0.33)BL/s。相对临界速度分别为(2.58±0.32)、(3.31±0.41)、(4.31±0.52)、(5.22±0.48)BL/s。根据不同温度下的耗氧量,通过非线性拟合得到水温耗氧量与游泳速度行为参数关系的4个非线性函数模型。该模型证明,随着游泳速度的增加,耗氧量、尾跳动频率和呼吸频率均有所增加。温度越高,变化越显著。结果表明,水温对克氏鳜幼鱼的游泳特性有显著影响。这种变化是由于温度和环境变化对生理生化的调节。本实验为沅水河典型鱼类的运动生理生态适应机制提供了必要的数据支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.90
自引率
16.70%
发文量
49
审稿时长
3 months
期刊介绍: Information not localized
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