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盐度对欧洲鲈生理性能影响的种内差异及其对河口鱼类的生态重要性

Intra-Specific Difference in the Effect of Salinity on Physiological Performance in European Perch () and Its Ecological Importance for Fish in Estuaries.

作者信息

Christensen Emil A F, Stieglitz John D, Grosell Martin, Steffensen John F

机构信息

Marine biological Section, Department of Biology, University of Copenhagen, Strandpromenaden 5, 3000 Elsinore, Denmark.

Department of Marine Ecosystems and Society, Rosenstiel School of Marine and Atmospheric Science, University of Miami, 4600 Rickenbacker Causeway, Miami, FL 33149, USA.

出版信息

Biology (Basel). 2019 Nov 17;8(4):89. doi: 10.3390/biology8040089.

Abstract

Changes in environmental salinity challenge fish homeostasis and may affect physiological performance, such as swimming capacity and metabolism, which are important for foraging, migration, and escaping predators in the wild. The effects of salinity stress on physiological performance are largely species specific, but may also depend on intra-specific differences in physiological capabilities of sub-populations. We measured critical swimming speed (U) and metabolic rates during swimming and at rest at salinities of 0 and 10 in European perch () from a low salinity tolerance population (LSTP) and a high salinity tolerance population (HSTP). U of LSTP was significantly reduced at a salinity of 10 yet was unaffected by salinity change in HSTP. We did not detect a significant cost of osmoregulation, which should theoretically be apparent from the metabolic rates during swimming and at rest at a salinity of 0 compared to at a salinity of 10 (iso-osmotic). Maximum metabolic rates were also not affected by salinity, indicating a modest tradeoff between respiration and osmoregulation (osmo-respiratory compromise). Intra-specific differences in effects of salinity on physiological performance are important for fish species to maintain ecological compatibility in estuarine environments, yet render these sub-populations vulnerable to fisheries. The findings of the present study are therefore valuable knowledge in conservation and management of estuarine fish populations.

摘要

环境盐度的变化对鱼类的体内平衡构成挑战,并可能影响其生理性能,如游泳能力和新陈代谢,而这些对于在野外觅食、洄游和躲避捕食者至关重要。盐度胁迫对生理性能的影响在很大程度上因物种而异,但也可能取决于亚种群生理能力的种内差异。我们测量了来自低盐度耐受种群(LSTP)和高盐度耐受种群(HSTP)的欧洲鲈鱼在盐度为0和10时的临界游泳速度(U)以及游泳和静止时的代谢率。LSTP在盐度为10时的U显著降低,但HSTP的U不受盐度变化的影响。我们未检测到明显的渗透调节成本,理论上,与盐度为10(等渗)时相比,在盐度为0时游泳和静止期间的代谢率应能体现出这一点。最大代谢率也不受盐度影响,这表明呼吸与渗透调节之间存在适度的权衡(渗透呼吸折衷)。盐度对生理性能影响的种内差异对于鱼类在河口环境中维持生态适应性很重要,但也使这些亚种群易受渔业活动的影响。因此,本研究的结果对于河口鱼类种群的保护和管理具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de29/6956070/115271aec408/biology-08-00089-g001.jpg

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