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首页> 外文期刊>The Journal of Experimental Biology >ION TRANSPORT AND ACID-BASE BALANCE IN FRESHWATER BIVALVES
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ION TRANSPORT AND ACID-BASE BALANCE IN FRESHWATER BIVALVES

机译:淡水双虫中的离子迁移和酸碱平衡

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Blood acid-base and ionic balance in freshwater bivalves is affected by the relative activities of epithelial Na+ and Cl- transporters, In the unionid Carunculina texasensis, the Na+/H+ exchanger is the predominant epithelial transporter that affects acid-base state, while Cl-/HCO3- exchange is of lesser importance, In the corbiculid Corbicula fluminea, Cl- and Na+ transport are both significant components affecting acid-base state, Serotonin (5-hydroxytryptamine, 5-HT) stimulates Na+ and Cl- transport in both species, In C, texasensis, the effect of exogenous serotonin is four times greater on Na+/H+ exchange than on Cl-/HCO3- transport, resulting in an increase in acid secretion and a rise in blood pH, In a Na+-free environment, serotonin had no effect on blood acid-base state in C, texasensis, In C, fluminea, the acid-base consequences of serotonin stimulation of Na+/H+ exchange were offset by similar increases in Cl-/HCO3- exchange and by alterations in blood P-CO2 in medium containing Na+, In Na+-free medium, stimulation of the CL(-) transporter with 5-HT resulted in a decrease in blood pH, The differences between these two species are related to the reliance of C. fluminea on Cl- as the major anion in the blood, requiring high levels of epithelial Cl- transport, In C, texasensis, the anionic component of the blood consists of both Cl- and HCO3- and these ions are interchangeable over a wide concentration range, Extracellular acid-base balance in freshwater bivalves is governed, in part, by epithelial ion transporters. [References: 34]
机译:淡水双壳类动物的血液中酸碱和离子平衡受上皮Na +和Cl-转运蛋白的相对活性影响。在德克萨斯州象尾藻中,Na + / H +交换子是影响酸碱状态的主要上皮转运子,而Cl- / HCO3-交换的重要性较小,在Corbiculad flubica fluminea中,Cl-和Na +转运都是影响酸碱状态的重要成分,5-羟色胺(5-羟色胺,5-HT)刺激两个物种中的Na +和Cl-转运,在德克萨斯州的C中,外源血清素对Na + / H +交换的影响比对Cl- / HCO3-转运的影响大四倍,从而导致酸分泌增加和血液pH升高。在无Na +的环境中,血清素对C,得克萨斯州,C,fluminea中的血液酸碱状态没有影响,血清素刺激Na + / H +交换的酸碱后果被类似的Cl- / HCO3-交换增加和血液P的变化所抵消。 -CO2在中等康泰在不含Na +的培养基中,用5-HT刺激CL(-)转运蛋白导致血液pH值降低。这两个物种之间的差异与C. fluminea对Cl-的依赖有关血液中的阴离子,需要高水平的上皮Cl-转运。在德克萨斯州的C中,血液中的阴离子成分由Cl-和HCO3-组成,这些离子在很宽的浓度范围内可互换,细胞外的酸碱平衡淡水双壳类动物部分受上皮离子转运蛋白支配。 [参考:34]

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