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蟾鱼体内的尿素脉冲与环境中的氧气或二氧化碳水平有关吗?

Is urea pulsing in toadfish related to environmental O2 or CO2 levels?

作者信息

McDonald M Danielle, Gilmour Kathleen M, Barimo John F, Frezza Peter E, Walsh Patrick J, Perry Steve F

机构信息

Rosenstiel School of Marine and Atmospheric Science, University of Miami, Miami, Florida, 33149-1098, USA.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2007 Mar;146(3):366-74. doi: 10.1016/j.cbpa.2006.11.003. Epub 2006 Nov 23.

Abstract

The neurochemical, serotonin (5-hydroxytryptamine; 5-HT) is involved in the regulation of toadfish pulsatile urea excretion as well as the teleost hypoxia response. Thus, the goal of this study was to determine whether environmental conditions that activate branchial chemoreceptors also trigger pulsatile urea excretion in toadfish, since environmental dissolved oxygen levels in a typical toadfish habitat show significant diel fluctuations, often reaching hypoxic conditions at dawn. Toadfish were fitted with arterial, venous and/or buccal catheters and were exposed to various environmental conditions, and/or injected with the O(2) chemoreceptor agonist NaCN or the 5-HT(2) receptor agonist alpha-methyl-5HT. Arterial PO(2), as well as ammonia and urea excretion were monitored. Natural fluctuations in arterial PO(2) levels in toadfish did not correlate with the occurrence of a urea pulse. Chronic exposure (24 h) of toadfish to hyperoxia was without effect on nitrogen excretion, however, exposure to hypoxia caused a significant reduction in the frequency of urea pulses, and exposure to hypercapnia resulted in a reduction in the percentage of nitrogen waste excreted as urea. Of toadfish exposed acutely to hypoxia, 20% pulsed within 1 h, whereas none pulsed after normoxic or hypercapnic treatments. Furthermore, 20% of fish injected intravenously with NaCN pulsed within 1 h of injection, but no fish pulsed after injection of NaCN into the buccal cavity. To test whether environmental conditions affected 5-HT(2) receptors, toadfish were injected with alpha-methyl-5HT, which elicits urea pulses in toadfish. No significant differences in pulse size occurred among the various environmental treatments. Our findings suggest that neither the environmental conditions of hypoxia, hyperoxia or hypercapnia, nor direct branchial chemoreceptor activation by NaCN play a major role in the regulation of pulsatile urea excretion in toadfish.

摘要

神经化学物质5-羟色胺(5-羟基色胺;5-HT)参与蟾鱼搏动性尿素排泄的调节以及硬骨鱼的低氧反应。因此,本研究的目的是确定激活鳃化学感受器的环境条件是否也会触发蟾鱼的搏动性尿素排泄,因为典型蟾鱼栖息地的环境溶解氧水平呈现显著的昼夜波动,在黎明时常常达到低氧状态。给蟾鱼安装动脉、静脉和/或颊部导管,并使其暴露于各种环境条件下,和/或注射O(2)化学感受器激动剂NaCN或5-HT(2)受体激动剂α-甲基-5HT。监测动脉血氧分压以及氨和尿素的排泄情况。蟾鱼动脉血氧分压水平的自然波动与尿素脉冲的出现无关。将蟾鱼长期暴露(24小时)于高氧环境对氮排泄没有影响,然而,暴露于低氧环境会导致尿素脉冲频率显著降低,暴露于高碳酸血症会导致以尿素形式排泄的氮废物百分比降低。急性暴露于低氧环境的蟾鱼中,20%在1小时内出现脉冲,而在常氧或高碳酸血症处理后没有蟾鱼出现脉冲。此外,静脉注射NaCN的蟾鱼中有20%在注射后1小时内出现脉冲,但向颊腔内注射NaCN后没有蟾鱼出现脉冲。为了测试环境条件是否影响5-HT(2)受体,给蟾鱼注射α-甲基-5HT,它会引发蟾鱼的尿素脉冲。在各种环境处理之间,脉冲大小没有显著差异。我们的研究结果表明,低氧、高氧或高碳酸血症的环境条件,以及NaCN对鳃化学感受器的直接激活,在蟾鱼搏动性尿素排泄的调节中都不发挥主要作用。

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