雅鲁藏布江流域不同裂腹鱼幼鱼游泳能力研究

RESEARCH ON THE SWIMMING PERFORMANCE OF JUVENILE SCHIZOTHORAX FISH IN THE YARLUNG ZANGBO RIVER BASIN

  • 摘要: 本研究以雅鲁藏布江流域的五种裂腹鱼(Schizothorax spp.)幼鱼为对象, 探讨其个体游泳能力的种间差异, 旨在为鱼道的科学设计与流域生态保护提供基础数据。研究对象包括异齿裂腹鱼(Schizothorax oconnori)、巨须裂腹鱼(S. macropogon)、拉萨裂腹鱼(S. waltoni)、拉萨裸裂尻鱼(Schizopygopsis younghusbandi)和尖裸鲤(Oxygymnocypris stewartii), 实验鱼体长依次为(9.2±0.8)、(3.1±0.1)、(8.3±0.8)、(5.8±0.9)和(5.4±0.6) cm。采用流速递增法, 测定了5种裂腹鱼的感应流速(Uind)、临界游泳速度(Ucrit)和暴发游泳速度(Uburst)。结果表明: 绝对感应流速(Uaind)的平均值为2.3—6.7 cm/s, 相对感应流速(Urind)的平均值为0.4—0.8 BL/s; 绝对临界游泳速度(Uacrit)平均值为31.1—60.8 cm/s, 相对临界游泳速度(Urcrit)平均值为6.3—10.4 BL/s; 绝对暴发游泳速度(Uaburst)平均值为39.7—88.1 cm/s, 相对暴发游泳速度(Urburst)平均值为9.7—14.6 BL/s。单因素方差分析(One-way ANOVA)及体长−游泳能力指标的双变量相关分析(Bivariate correlation)表明, 5种裂腹鱼幼鱼在游泳能力表现上存在一定的差异。其中, 异齿裂腹鱼和拉萨裂腹鱼的感应流速较高, 而尖裸鲤和拉萨裸裂尻鱼的暴发游泳速度具有优势, 这种差异可能反映了其对急流和缓流生境的不同适应策略。本研究获得了高原裂腹鱼类游泳能力的重要参数, 揭示了不同裂腹鱼种类在个体游泳能力方面的差异, 并为雅鲁藏布江流域鱼道的设计与生态保护提供了科学依据。

     

    Abstract: The design of fish passage facilities in hydropower projects primarily relies on the swimming ability parameters of target fish species. This study investigated interspecific differences in the individual swimming capacities of juvenile fish from five Schizothorax species in the Yarlung Zangbo River basin, aiming to provide a scientific basis for fishway design and ecological conservation. The subjects comprised juveniles of five species: Schizothorax oconnori, S. macropogon, S. waltoni, Schizopygopsis younghusbandi, and Oxygymnocypris stewartii. The mean body lengths of experimental fish were (9.2±0.8), (3.1±0.1), (8.3±0.8), (5.8±0.9), and (5.4±0.6) cm, respectively. Using an incremental velocity test, the induced flow velocity (Uind), critical swimming speed (Ucrit), and burst swimming speed (Uburst) of the five species were measured. Results revealed that the mean U^\mathrma_\mathrmind varied between 2.3 and 6.7 cm/s, while the mean U^\mathrmr_\mathrmind varied between 0.4 and 0.8 BL/s. The mean U^\mathrma_\mathrmcrit varied between 31.1 and 60.8 cm/s, and the mean U^\mathrmr_\mathrmcrit ranged from 6.3 to 10.4 BL/s. The mean U^\mathrma_\mathrmburst varied between 39.7 and 88.1 cm/s, with the mean relative U^\mathrmr_\mathrmburst varied between 9.7 and 14.6 BL/s. One-way ANOVA and bivariate correlation analysis (body length & swimming capacity metrics) demonstrated significant differences were observed in the swimming performance among the five studied Schizothoracinae fish species at juvenile stages. Schizothorax oconnori and Schizothorax waltoni exhibited higher response flow velocities, whereas Oxygymnocypris stewartii and Schizopygopsis younghusbandi demonstrated advantages in burst swimming speed. This difference is primarily reflected in their adaptation strategies to torrential and slow-flow habitats. Within the body length range studied, body size was found to influence certain performance metrics. The results provide crucial data support for understanding the swimming capabilities of Schizothoracine fish and for the design effective fishways in the Yarlung Zangbo River basin, revealing interspecific differences in individual swimming performance and offering to scientifically informed ecological conservation.

     

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