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贫离子水中低 pH 对斑马鱼(Danio rerio)离子调节和氮废物排泄的生理保护作用取决于溶解有机碳。

Physiological protective action of dissolved organic carbon on ion regulation and nitrogenous waste excretion of zebrafish (Danio rerio) exposed to low pH in ion-poor water.

机构信息

Laboratory of Ecophysiology and Molecular Evolution, Brazilian National Institute for Research of the Amazon, Manaus, AM, Brazil.

Biosciences Institute, São Paulo State University (UNESP), Coastal Campus, Pça Infante Dom Henrique s/n°, P.O. Box 73601, São Vicente, SP, 11380-972, Brazil.

出版信息

J Comp Physiol B. 2018 Sep;188(5):793-807. doi: 10.1007/s00360-018-1169-y. Epub 2018 Jun 11.

DOI:10.1007/s00360-018-1169-y
PMID:29948161
Abstract

Dissolved organic carbon (DOC) represents a heterogeneous group of naturally-occurring molecules in aquatic environments, and recent studies have evidenced that optically dark DOCs can exert some positive effects on ionoregulatory homeostasis of aquatic organisms in acidic waters. We investigated the effects of Luther Marsh DOC, a dark allochthonous DOC, on ion regulation and N-waste excretion of zebrafish acutely exposed to either neutral or low pH in ion-poor water. In the first experiment, simultaneous exposure to pH 4.0 and DOC greatly attenuated the stimulation of Na diffusive losses (J ), and prevented the blockade of Na uptake (J ) seen in zebrafish exposed to pH 4.0 alone, resulting in much smaller disturbances in Na net losses (J ). DOC also attenuated the stimulation of net Cl losses (J ) and ammonia excretion (J ) during acidic challenge. In the second experiment, zebrafish acclimated to DOC displayed similar regulation of J and J , and, therefore, reduced J at pH 4.0, effects which persisted even when DOC was no longer present. Protective effects of prior acclimation to DOC on J and J at pH 4.0 also occurred, but were less marked than those on Na balance. Urea fluxes were unaffected by the experimental treatments. Overall, these effects were clearly beneficial to the ionoregulatory homeostasis of zebrafish at low pH, and were quite similar to those seen in a recent parallel study using darker DOC from the upper Rio Negro. This suggests that dark allochthonous DOCs share some chemical properties that render fish tolerant to ionoregulatory disturbances during acidic challenge.

摘要

溶解有机碳(DOC)代表了水生环境中一组天然存在的分子,最近的研究表明,光学上暗的 DOC 可以对酸性水中水生生物的离子调节内稳态产生一些积极影响。我们研究了 Luther Marsh DOC(一种暗的异源 DOC)对离子贫水中性或低 pH 急性暴露的斑马鱼离子调节和 N 废物排泄的影响。在第一个实验中,同时暴露于 pH 4.0 和 DOC 极大地减弱了 Na 扩散损失(J )的刺激作用,并防止了单独暴露于 pH 4.0 的斑马鱼中 Na 摄取(J )的阻断,导致 Na 净损失(J )的干扰更小。DOC 还减弱了酸性胁迫下 Cl 净损失(J )和氨排泄(J )的刺激作用。在第二个实验中,适应 DOC 的斑马鱼表现出类似的 J 和 J 调节作用,因此在 pH 4.0 时减少了 J ,即使 DOC 不再存在,这些效应仍然存在。先前适应 DOC 对 J 和 J 在 pH 4.0 时的保护作用也存在,但不如对 Na 平衡的影响明显。尿素通量不受实验处理的影响。总体而言,这些效应显然有利于低 pH 下斑马鱼的离子调节内稳态,与最近使用 Rio Negro 上游更暗的 DOC 进行的平行研究中观察到的效应非常相似。这表明暗的异源 DOC 具有一些化学性质,使鱼类能够耐受酸性胁迫期间的离子调节紊乱。

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本文引用的文献

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2
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Sci Rep. 2016 Feb 8;6:20377. doi: 10.1038/srep20377.
3
Dissolved organic carbon ameliorates the effects of UV radiation on a freshwater fish.
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Sci Total Environ. 2014 Aug 15;490:941-6. doi: 10.1016/j.scitotenv.2014.05.102. Epub 2014 Jun 7.
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The physiology of fish at low pH: the zebrafish as a model system.低pH值环境下鱼类的生理学:以斑马鱼作为模型系统
J Exp Biol. 2014 Mar 1;217(Pt 5):651-62. doi: 10.1242/jeb.091603.
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