Cramp R L, Hansen M J, Franklin C E
School of Biological Sciences, The University of Queensland, Brisbane, Queensland 4072, Australia.
School of Biological Sciences, The University of Queensland, Brisbane, Queensland 4072, Australia.
Comp Biochem Physiol A Mol Integr Physiol. 2015 Jul;185:107-14. doi: 10.1016/j.cbpa.2015.04.001. Epub 2015 Apr 11.
While there is a considerable body of work describing osmoregulation by elasmobranchs in brackish and saltwater, far fewer studies have investigated osmoregulation in hypersaline waters. We examined osmo- and ionoregulatory function and plasticity in juvenile brown-banded bamboo sharks, Chiloscyllium punctatum, exposed to three experimental salinities (25, 34 and 40‰) for two weeks. C. punctatum inhabits sheltered coastal areas and bays which can naturally become hypersaline as a consequence of evaporation of water but can also become hyposaline during flood events. We hypothesised that C. punctatum would demonstrate a phenotypically plastic osmoregulatory physiology. Plasma osmolality, urea, Na(+) and Cl(-) levels increased significantly with increasing environmental salinity. Rectal gland and branchial sodium-potassium ATPase (NKA) activities were unaffected by salinity. Using immunohistochemistry and Western Blotting we found evidence for the presence of the key ion-regulatory proteins vacuolar H(+)-ATPase (VHA), pendrin (Cl(-)/HCO₃(-) co-transporter) and the Na(+)-H(+) exchanger isoform 3 (NHE3) in discrete cells within the branchial epithelia. These results indicate that C. punctatum is a partially euryhaline elasmobranch able to maintain osmo- and ionoregulatory function between environmental salinities of 25‰ and 40‰. As suggested for other elasmobranchs, the gills of C. punctatum likely play a limited role in maintaining Na(+) homeostasis over the salinity range studied, but may play an important role in acid-base balance.
虽然有大量关于软骨鱼类在咸淡水和海水中渗透调节的研究,但研究高盐水中渗透调节的研究要少得多。我们研究了幼年褐带竹鲨(Chiloscyllium punctatum)在三种实验盐度(25‰、34‰和40‰)下暴露两周后的渗透调节和离子调节功能及可塑性。褐带竹鲨栖息在受保护的沿海地区和海湾,这些地方由于水分蒸发自然会变成高盐环境,但在洪水期间也可能变成低盐环境。我们假设褐带竹鲨会表现出表型可塑性的渗透调节生理机能。随着环境盐度的增加,血浆渗透压、尿素、Na⁺和Cl⁻水平显著升高。直肠腺和鳃的钠钾ATP酶(NKA)活性不受盐度影响。通过免疫组织化学和蛋白质印迹法,我们发现鳃上皮离散细胞中存在关键离子调节蛋白液泡H⁺-ATP酶(VHA)、pendrin(Cl⁻/HCO₃⁻共转运体)和钠氢交换体亚型3(NHE3)。这些结果表明,褐带竹鲨是一种部分广盐性的软骨鱼类,能够在25‰至40‰的环境盐度之间维持渗透调节和离子调节功能。正如对其他软骨鱼类的推测,在所研究的盐度范围内,褐带竹鲨的鳃在维持Na⁺稳态方面可能起有限作用,但在酸碱平衡中可能起重要作用。