Department of Integrative Biology, University of Guelph, Guelph, ON N1G 2W1, Canada.
Respir Physiol Neurobiol. 2012 Dec 1;184(3):231-40. doi: 10.1016/j.resp.2012.07.003. Epub 2012 Aug 10.
In this review we pose the following seven questions related to ammonia and fish that represent gaps in our knowledge. 1. How is ammonia excretion linked to sodium uptake in freshwater fish? 2. How much does branchial ammonia excretion in seawater teleosts depend on Rhesus (Rh) glycoprotein-mediated NH(3) diffusion? 3. How do fish maintain ammonia excretion rates if branchial surface area is reduced or compromised? 4. Why does high environmental ammonia change the transepithelial potential across the gills? 5. Does high environmental ammonia increase gill surface area in ammonia tolerant fish but decrease gill surface area in ammonia intolerant fish? 6. How does ammonia contribute to ventilatory control? 7. What do Rh proteins do when they are not transporting ammonia? Mini reviews on each topic, which are able to present only partial answers to each question at present, are followed by further questions and/or suggestions for research approaches targeted to uncover answers.
在这篇综述中,我们提出了与氨和鱼类相关的七个问题,这些问题代表了我们知识中的空白。1. 氨排泄与淡水鱼类的钠吸收有何联系?2. 海水硬骨鱼类通过 Rh 糖蛋白介导的 NH3 扩散进行的鳃氨排泄量有多少?3. 如果鳃表面积减少或受损,鱼类如何维持氨排泄率?4. 为什么高环境氨会改变鳃的跨上皮电位?5. 高环境氨是否会增加氨耐受鱼类的鳃表面积,减少氨不耐受鱼类的鳃表面积?6. 氨如何影响呼吸控制?7. Rh 蛋白在不运输氨时做什么? 每一个主题都有一个迷你综述,目前只能对每个问题的部分答案进行介绍,然后是进一步的问题和/或研究方法的建议,旨在寻找答案。