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施氏鲟幼鱼的游泳能力与游泳行为

Swimming capability and swimming behavior of juvenile acipenser schrenckii.

作者信息

Cai Lu, Taupier Rachel, Johnson David, Tu Zhiying, Liu Guoyong, Huang Yingping

机构信息

Engineering Research Center of Eco-environment in Three Gorges Reservoir Region, Ministry of Education, China Three Gorges University, Yichang, PR China.

出版信息

J Exp Zool A Ecol Genet Physiol. 2013 Mar;319(3):149-55. doi: 10.1002/jez.1780. Epub 2013 Jan 28.

Abstract

Acipenser schrenckii, the Amur Sturgeon, was a commercially valuable fish species inhabiting the Amur (Heilongjiang) River but populations have rapidly declined in recent years. Dams impede A. schrenckii spawning migration and wild populations were critically endangered. Building fishways helped maintain fish populations but data on swimming performance and behavior was crucial for fishway design. To obtain such data on A. schrenckii, a laboratory study of juvenile A. schrenckii (n = 18, body mass = 32.7 ± 1.2 g, body length = 18.8 ± 0.3 cm) was conducted using a stepped velocity test carried out in a fish respirometer equipped with a high-speed video camera at 20°C. Results indicate: (1) The counter-current swimming capability of A. schrenckii was low with critical swimming speed of 1.96 ± 0.10 BL/sec. (2) When a linear function was fitted to the data, oxygen consumption, as a function of swimming speed, was determined to be MO2  = 337.29 + 128.10U (R(2)  = 0.971, P < 0.001) and the power value (1.0) of U indicated high swimming efficiency. (3) Excess post-exercise oxygen cost was 48.44 mgO2 /kg and indicated excellent fatigue recovery. (4) Cost of transport decreased slowly with increased swimming speed. (5) Increased swimming speed led to increases in the tail beat frequency and stride length. This investigation contributed to the basic science of fish swimming behavior and provided data required for the design of fishways. Innovative methods have allowed cultivation of the species in the Yangtze River and, if effective fishways could be incorporated into the design of future hydropower projects on the Amur River, it would contribute to conservation of wild populations of A. schrenckii. The information provided here contributes to the international effort to save this critically endangered species. J. Exp. Zool. 319A:149-155, 2013. © 2013 Wiley Periodicals, Inc.

摘要

施氏鲟,即黑龙江鲟,是一种具有商业价值的鱼类,栖息于黑龙江,但近年来其种群数量急剧下降。水坝阻碍了施氏鲟的产卵洄游,野生种群面临极度濒危。修建鱼道有助于维持鱼类种群数量,但游泳性能和行为数据对于鱼道设计至关重要。为了获取施氏鲟的此类数据,对施氏鲟幼鱼(n = 18,体重 = 32.7 ± 1.2 g,体长 = 18.8 ± 0.3 cm)进行了一项实验室研究,在配备高速摄像机的鱼类呼吸计中于20°C下进行了阶梯速度测试。结果表明:(1)施氏鲟的逆流游泳能力较低,临界游泳速度为1.96 ± 0.10 体长/秒。(2)当对数据拟合线性函数时,耗氧量作为游泳速度的函数被确定为MO2 = 337.29 + 128.10U(R(2) = 0.971,P < 0.001),且U的幂值(1.0)表明游泳效率较高。(3)运动后过量氧耗为48.44 mgO2 /kg,表明疲劳恢复能力良好。(4)运输成本随游泳速度增加而缓慢下降。(5)游泳速度增加导致尾鳍摆动频率和步幅增加。这项研究为鱼类游泳行为的基础科学做出了贡献,并为鱼道设计提供了所需数据。创新方法已使该物种在长江得以养殖,如果有效的鱼道能够纳入未来黑龙江水电项目的设计中,将有助于保护施氏鲟的野生种群。此处提供的信息有助于国际社会拯救这一极度濒危物种的努力。《实验动物学杂志》319A:149 - 155,2013年。© 2013威利期刊公司

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