Swimming ability and behavior of Mrigal carp Cirrhinus mrigala and application to fishway design

IF 1.3 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY Aquatic Biology Pub Date : 2018-12-12 DOI:10.3354/AB00702
Lu Cai, Yiqun Hou, David Johnson, Ping Zhao, Peng Zhang
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引用次数: 6

Abstract

To mitigate the impact of river fragmentation on fish resulting from dams, specifically the fragmentation of Indian rivers, the design and construction of high-efficiency fishways is important. Information on fish swimming ability and behavior is necessary to develop design criteria for the target species, Cirrhinus mrigala, a cyprinid native to India, Pakistan and Bangladesh. Swimming ability and behavior data for the genus are limited. To augment existing information, the swimming ability and behavior of juvenile C. mrigala were investigated by determining their induced flow velocity (Uind), critical swimming speed (Ucrit), and burst speed (Uburst) in a swimming respirometer. To facilitate application to fishway design, swimming assessment data were converted to a cumulative response; for Uind, it is the cumulative percentage of fish swimming against the current at a given velocity, and for Ucrit and Uburst, it is the percentage of fish able to maintain a given velocity for the specified time interval without fatigue. Results include 2 primary findings. (1) The cumulative response velocity (%) of fish induced to swim, or reach fatigue, increased with flow velocity. The cumulative velocity is useful for developing fishway design criteria. (2) The mean values of Uind, Ucrit, and Uburst were 0.427 ± 0.013, 2.768 ± 0.146 and 3.493 ± 0.121 body lengths s−1 (±SE). The values of Ucrit and Uburst indicate that the swimming ability of C. mrigala is relatively low for a cyprinid.
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鲫鱼的游泳能力和行为及其在鱼道设计中的应用
为了减轻大坝造成的河流破碎对鱼类的影响,特别是印度河流的破碎,设计和建造高效的鱼道非常重要。关于鱼类游泳能力和行为的信息对于制定目标物种Cirrhinus mrigala的设计标准是必要的,Cirrhinus mrigala是一种原产于印度、巴基斯坦和孟加拉国的鲤科动物。该属的游泳能力和行为数据有限。为了补充已有的信息,在游泳呼吸计中测定了幼鱼的诱导流速(Uind)、临界游泳速度(Ucrit)和爆发速度(Uburst),研究了幼鱼的游泳能力和行为。为了便于应用于鱼道设计,将游泳评估数据转换为累积响应;对于uwind,它是在给定速度下逆流游动的鱼的累积百分比;对于Ucrit和Uburst,它是在规定的时间间隔内能够保持给定速度而不疲劳的鱼的百分比。结果包括2个主要发现。(1)诱导鱼游或疲劳的累积反应速度(%)随流速增加而增加。累积速度对于制定鱼道设计准则是有用的。(2) ind、Ucrit和Uburst的平均值分别为0.427±0.013、2.768±0.146和3.493±0.121体长s−1(±SE)。Ucrit和Uburst值表明,在鲤科动物中,黄颡鱼的游泳能力相对较低。
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来源期刊
Aquatic Biology
Aquatic Biology 生物-海洋与淡水生物学
CiteScore
2.70
自引率
0.00%
发文量
7
审稿时长
3 months
期刊介绍: AB publishes rigorously refereed and carefully selected Feature Articles, Research Articles, Reviews and Notes, as well as Comments/Reply Comments (for details see MEPS 228:1), Theme Sections, Opinion Pieces (previously called ''As I See It'') (for details consult the Guidelines for Authors) concerned with the biology, physiology, biochemistry and genetics (including the ’omics‘) of all aquatic organisms under laboratory and field conditions, and at all levels of organisation and investigation. Areas covered include: -Biological aspects of biota: Evolution and speciation; life histories; biodiversity, biogeography and phylogeography; population genetics; biological connectedness between marine and freshwater biota; paleobiology of aquatic environments; invasive species. -Biochemical and physiological aspects of aquatic life; synthesis and conversion of organic matter (mechanisms of auto- and heterotrophy, digestion, respiration, nutrition); thermo-, ion, osmo- and volume-regulation; stress and stress resistance; metabolism and energy budgets; non-genetic and genetic adaptation. -Species interactions: Environment–organism and organism–organism interrelationships; predation: defenses (physical and chemical); symbioses. -Molecular biology of aquatic life. -Behavior: Orientation in space and time; migrations; feeding and reproductive behavior; agonistic behavior. -Toxicology and water-quality effects on organisms; anthropogenic impacts on aquatic biota (e.g. pollution, fisheries); stream regulation and restoration. -Theoretical biology: mathematical modelling of biological processes and species interactions. -Methodology and equipment employed in aquatic biological research; underwater exploration and experimentation. -Exploitation of aquatic biota: Fisheries; cultivation of aquatic organisms: use, management, protection and conservation of living aquatic resources. -Reproduction and development in marine, brackish and freshwater organisms
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