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虹鳟(Oncorhynchus mykiss)在碱性(pH = 9.5)水中鳃部Na⁺和Cl⁻转运变化的生理基础。

The physiological basis for altered Na+ and Cl- movements across the gills of rainbow trout (Oncorhynchus mykiss) in alkaline (pH = 9.5) water.

作者信息

Wilkie M P, Laurent P, Wood C M

机构信息

Department of Biology, McMaster University, Hamilton, Ontario L8S 4K1, Canada.

出版信息

Physiol Biochem Zool. 1999 May-Jun;72(3):360-8. doi: 10.1086/316670.

Abstract

To test the hypothesis that internal ion imbalances at high pH are caused by altered branchial ion transporting capacity and permeability, radiotracers (24Na+ and 36Cl-) were used to measure ion movements across the gills of intact rainbow trout (Oncorhynchus mykiss) during 3 d exposure to pH 9.5. At control pH (pH 8.0), the trout were in net ion balance, but by 8 h at high pH, 60%-70% reductions in Cl- influx (JClin) and Na+ influx (JNain) led to net Cl- and Na+ losses of -200 micromol kg-1 h-1. Outflux (diffusive efflux plus renal ion losses) was not initially altered. By 72 h, net Cl- balance was reestablished because of a restoration of JClin. Although JNain remained 50% lower at this time, counterbalancing reductions in Na+ outflux restored net Na+ balance. One-substrate ion-uptake kinetics analyses indicated that reduced ion influx after 8 h at pH 9.5 was caused by 50% decreases in Cl- and Na+ maximal transport rates (JClmax, JNamax), likely reflecting decreased numbers of functional transport sites. Two-substrate kinetic analyses indicated that reduced internal HCO-3 and H+ supply for respective branchial Cl-/base and Na+/acid transport systems also contributed to lower JClin and, to a lesser extent, lower JNain at pH 9.5. Recovery of JClmax after 3 d accounted for restoration of Cl- balance and likely reflected increased numbers of transport sites. In contrast, JNamax remained 33% lower after 3 d, but a lower affinity of the gills for Na+ (fourfold greater KNam) accounted for the chronic reduction in Na+ influx at pH 9.5. Thus, reestablishment of Cl- uptake capacity and counterbalancing reductions in Na+ outflux allows rainbow trout to reestablish net ion balance in alkaline waters.

摘要

为了验证高pH条件下内部离子失衡是由鳃离子转运能力和通透性改变所导致的这一假设,在将虹鳟(Oncorhynchus mykiss)暴露于pH 9.5的环境中3天期间,使用放射性示踪剂(24Na+和36Cl-)来测量离子跨完整鳃的移动情况。在对照pH(pH 8.0)条件下,虹鳟处于净离子平衡状态,但在高pH环境中暴露8小时后,Cl-内流(JClin)和Na+内流(JNain)减少了60%-70%,导致Cl-和Na+的净损失达到-200微摩尔·千克-1·小时-1。外流(扩散性外流加上肾脏离子损失)最初并未改变。到72小时时,由于JClin的恢复,Cl-净平衡得以重新建立。尽管此时JNain仍比对照低50%,但Na+外流的相应减少使得Na+净平衡得以恢复。单底物离子摄取动力学分析表明,在pH 9.5环境中暴露8小时后离子内流减少是由于Cl-和Na+的最大转运速率(JClmax、JNamax)降低了50%,这可能反映了功能性转运位点数量的减少。双底物动力学分析表明,鳃中各自的Cl-/碱和Na+/酸转运系统的内部HCO-3和H+供应减少,也导致了pH 9.5时JClin降低,以及在较小程度上导致JNain降低。3天后JClmax的恢复导致了Cl-平衡的恢复,这可能反映了转运位点数量的增加。相比之下,3天后JNamax仍比对照低33%,但鳃对Na+的亲和力降低(KNam大四倍)导致了pH 9.5时Na+内流的长期减少。因此,Cl-摄取能力的恢复以及Na+外流的相应减少使虹鳟能够在碱性水域中重新建立净离子平衡。

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