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幼龄洄游性海水依赖鱼类(鲷科)对盐度变化的生理反应。

Physiological responses of a juvenile marine estuarine-dependent fish (Family Sparidae) to changing salinity.

机构信息

SARChI Chair in Shallow Water Ecosystems, Nelson Mandela University, Ocean Science Campus, P.O. Box 77000, Port Elizabeth, 6031, South Africa.

Department of Zoology, Nelson Mandela University, Summerstrand Campus South, P.O. Box 77000, Port Elizabeth, 6031, South Africa.

出版信息

Fish Physiol Biochem. 2019 Oct;45(5):1523-1531. doi: 10.1007/s10695-019-00637-2. Epub 2019 Apr 11.

Abstract

Estuaries are subject to high environmental variability coupled to tidal salinity shifts. Under restricted freshwater flow and prolonged drought conditions, salinity may exceed natural ranges and thus organisms may experience stressful hypersaline conditions. This study assessed the physiology of a juvenile marine estuarine-dependent species Rhabdosargus holubi (Family: Sparidae) under changing salinity to determine the impact on respiration and survival under shock and acclimatisation exposures. Oxygen consumption was not significantly different in the 2.5 to 45 salinity range and the interaction between temperature and salinity was not significant at the moderate levels tested. This confirmed the strong osmoregulatory capabilities of marine estuarine-dependent R. holubi. However, respiration was impacted at salinities of 55-62.5. The salinity tolerance ranges of R. holubi were expanded beyond those previously observed in the laboratory, to a maximum of 77 when fish were gradually exposed to daily 20% incremental changes. This indicated the ability to adapt to hypersaline conditions that occur gradually in anthropogenically altered estuaries which is an important aspect for management decisions regarding freshwater inputs. The adaptability of Rhabdosargus holubi to hypersaline conditions in estuaries may thereby ensure the maintenance of populations in the short term under certain environmental conditions, such as those currently occurring in a freshwater-scarce South Africa. However, in the long term and at more extreme salinities (> 55), the physiology of R. holubi and similar species may be compromised, thus placing the species at risk.

摘要

河口受到高环境变异性和潮汐盐度变化的影响。在淡水流量受限和长期干旱的情况下,盐度可能超过自然范围,因此生物可能会经历有压力的高盐环境。本研究评估了一种依赖于海洋河口的幼年鱼类——波纹唇鱼(鲷科)在变化盐度下的生理学,以确定在休克和适应暴露下对呼吸和生存的影响。在 2.5 至 45 的盐度范围内,耗氧量没有显著差异,在测试的中等水平下,温度和盐度之间的相互作用也不显著。这证实了依赖海洋河口的波纹唇鱼具有很强的渗透调节能力。然而,呼吸在 55-62.5 的盐度下受到影响。波纹唇鱼的盐度耐受范围扩大到了实验室以前观察到的范围之外,当鱼逐渐暴露在每天 20%的递增变化中时,最大耐受盐度达到了 77。这表明了适应逐渐发生在人为改变的河口的高盐环境的能力,这对于关于淡水输入的管理决策是一个重要方面。波纹唇鱼在河口适应高盐环境的能力,可能确保在某些环境条件下(如南非目前淡水短缺的情况),种群在短期内得以维持。然而,从长远来看,在更高的盐度(>55)下,波纹唇鱼和类似物种的生理学可能会受到影响,从而使这些物种面临风险。

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