Department of Biological Sciences, University of New Brunswick, 100 Tucker Park Road, Saint John, Saint John, New Brunswick, E2L 4L5, Canada.
J Comp Physiol B. 2024 Oct;194(5):697-715. doi: 10.1007/s00360-024-01561-5. Epub 2024 Jun 7.
The fish gill serves many physiological functions, among which is the excretion of ammonia, the primary nitrogenous waste in most fishes. Although it is the end-product of nitrogen metabolism, ammonia serves many physiological functions including acting as an acid equivalent and as a counter-ion in mechanisms of ion regulation. Our current understanding of the mechanisms of ammonia excretion have been influenced by classic experimental work, clever mechanistic approaches, and modern molecular and genetic techniques. In this review, I will overview the history of the study of ammonia excretion by the gills of fishes, highlighting the important advancements that have shaped this field with a nearly 100-year history. The developmental and evolutionary implications of an ammonia and gill-dominated nitrogen regulation strategy in most fishes will also be discussed. Throughout the review, I point to areas in which more work is needed to push forward this field of research that continues to produce novel insights and discoveries that will undoubtedly shape our overall understanding of fish physiology.
鱼类的鳃具有多种生理功能,其中之一是排泄氨,这是大多数鱼类中主要的含氮废物。尽管氨是氮代谢的终产物,但它具有多种生理功能,包括作为酸当量和离子调节机制中的抗衡离子。我们目前对氨排泄机制的理解受到了经典实验工作、巧妙的机制方法以及现代分子和遗传技术的影响。在这篇综述中,我将回顾鱼类鳃排泄氨的研究历史,重点介绍塑造这一具有近百年历史的领域的重要进展。我还将讨论在大多数鱼类中以氨和鳃为主导的氮调节策略的发育和进化意义。在整篇综述中,我指出了需要进一步研究的领域,以推动这一领域的研究,这将继续产生新的见解和发现,无疑将塑造我们对鱼类生理学的整体理解。