Meyer Edward A, Franklin Craig E, Cramp Rebecca L
School of Biological Sciences, The University of Queensland, Brisbane, 4072, Australia.
J Comp Physiol B. 2021 Jan;191(1):159-171. doi: 10.1007/s00360-020-01316-y. Epub 2020 Oct 1.
The Cooloola sedgefrog (Litoria cooloolensis) is one of a number of frog species endemic to the coastal sandy lowlands of east Australia exhibiting remarkable tolerance to dilute waters of low pH (< pH 3.5). To investigate the physiological and morphological underpinnings of acid tolerance in L. cooloolensis larvae, we compared Na balance, uptake and efflux rates, and gill and skin morphology in larvae reared in circum-neutral (pH 6.5) and pH 3.5 water. We hypothesised that L. cooloolensis larvae would be more resistant to ionregulatory disturbance and epithelial damage at low pH relative to acid-sensitive species. Net Na flux rates were not significantly different from zero in L. cooloolensis larvae reared at pH 3.5 and in acid-naïve animals maintained in pH 6.5 water. Animals reared at pH 6.5 and acutely exposed to pH 3.5, however, exhibited a net loss of Na due to inhibition of Na uptake. In contrast, L. cooloolensis larvae reared at pH 3.5 maintained Na balance at pH 3.5 and did not exhibit inhibition of Na uptake at this pH. Investigation of Na transport kinetics and the morphology of the gills and integument suggests tolerance of L. cooloolensis larvae to low pH may be attributed to a high capacity for branchial Na uptake, increased tight junction length and elevated mucus production at the gills and integument. These factors confer resistance to acid damage and disruption of ionic homeostasis which would otherwise result in the death of amphibian larvae exposed to waters of pH 4.0 and less.
库卢拉莎草蛙(Litoria cooloolensis)是澳大利亚东部沿海沙地低地特有的蛙类物种之一,对低pH值(<pH 3.5)的稀释水表现出显著的耐受性。为了研究库卢拉莎草蛙幼虫耐酸性的生理和形态学基础,我们比较了在中性(pH 6.5)和pH 3.5水中饲养的幼虫的钠平衡、摄取和流出率,以及鳃和皮肤形态。我们假设,相对于酸敏感物种,库卢拉莎草蛙幼虫在低pH值下对离子调节紊乱和上皮损伤更具抵抗力。在pH 3.5下饲养的库卢拉莎草蛙幼虫以及在pH 6.5水中饲养的未接触过酸的动物,其净钠通量率与零没有显著差异。然而,在pH 6.5下饲养并急性暴露于pH 3.5的动物,由于钠摄取受到抑制,表现出钠的净损失。相比之下,在pH 3.5下饲养的库卢拉莎草蛙幼虫在pH 3.5时保持钠平衡,并且在该pH值下没有表现出钠摄取的抑制。对钠转运动力学以及鳃和体表形态的研究表明,库卢拉莎草蛙幼虫对低pH值的耐受性可能归因于鳃对钠的高摄取能力、紧密连接长度的增加以及鳃和体表黏液分泌的增加。这些因素赋予了对酸损伤和离子稳态破坏的抵抗力,否则会导致暴露于pH值为4.0及以下水体中的两栖类幼虫死亡。