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淡水红蟹(Dilocarcinus pagei,甲壳纲,十足目)的渗透调节与组织水分调节以及水体无机铅的影响

Osmoregulation and tissue water regulation in the freshwater red crab Dilocarcinus pagei (Crustacea, Decapoda), and the effect of waterborne inorganic lead.

作者信息

Amado Enelise M, Freire Carolina A, Souza Marta M

机构信息

Departamento de Ciências Fisiológicas, Centro de Ciências Biológicas, Universidade Estadual de Londrina, Londrina, Paraná, Brazil.

出版信息

Aquat Toxicol. 2006 Aug 12;79(1):1-8. doi: 10.1016/j.aquatox.2006.04.003. Epub 2006 May 1.

Abstract

Inorganic lead has been measured in high concentrations in certain streams in Brazil. This study has evaluated the osmoregulatory effects of lead on the native freshwater red crab Dilocarcinus pagei. In order to probe its osmoregulatory and tissue volume regulatory capabilities and how it would be affected by lead, the crab has been submitted to individual and combined salt and chemical stresses (Pb2+). Male crabs were exposed for 10 days to either: (1) control (freshwater, FW), (2) brackish water of salinity 15 (BW), (3) inorganic lead in freshwater (FWPb), and (4) inorganic lead in brackish water (BWPb), 2.7 mgPb/L. In vivo, whole crabs lost weight transiently when exposed to Pb2+, both in FW and in BW. Haemolymph osmolality and ion concentrations increased and remained elevated upon exposure of crabs to BW, with or without Pb2+, showing a trend to hyper-conformation. In vitro, muscle weight decreased in isosmotic conditions upon exposure to Pb2+. Na+, Cl-, and ninhydrin positive substances (NPS) were increased in muscle exposed to hyperosmotic saline, well above what would be expected from simple efflux of water, suggesting a partial regulatory volume increase (RVI) capacity. This partial RVI involves the Na+, K+, 2Cl- -cotransporter and the Na+/H+ exchanger on Na+ and Cl- uptake, as judged from further decreases in muscle weight in the presence of the respective inhibitors. A breakdown of proteins into NPS seems to follow the uptake of inorganic ions. Pb2+ has affected water and ion movements in D. pagei both in the whole animal and in the isolated tissue. This study has highlighted the relevance of evaluating tissue volume regulation in aquatic animals confronted with metal polluted waters.

摘要

在巴西的某些溪流中检测到了高浓度的无机铅。本研究评估了铅对本地淡水红蟹Dilocarcinus pagei的渗透调节作用。为了探究其渗透调节和组织体积调节能力以及铅对其的影响,将螃蟹置于单独和联合的盐及化学应激(Pb2+)环境中。雄性螃蟹暴露于以下环境10天:(1)对照(淡水,FW),(2)盐度为15的微咸水(BW),(3)淡水中的无机铅(FWPb),以及(4)微咸水中的无机铅(BWPb),浓度为2.7 mgPb/L。在体内,无论是在淡水还是微咸水中,螃蟹暴露于Pb2+时体重都会短暂下降。无论有无Pb2+,螃蟹暴露于BW时血淋巴渗透压和离子浓度都会升高并保持在较高水平,呈现出高渗状态的趋势。在体外,暴露于Pb2+时,等渗条件下肌肉重量会下降。暴露于高渗盐溶液的肌肉中Na+、Cl-和茚三酮阳性物质(NPS)增加,远高于仅因水分外流所预期的水平,这表明其具有部分调节体积增加(RVI)的能力。从相应抑制剂存在时肌肉重量的进一步下降判断,这种部分RVI涉及Na+、K+、2Cl-共转运体以及Na+和Cl-摄取过程中的Na+/H+交换体。蛋白质分解为NPS似乎伴随着无机离子的摄取。Pb2+在整个动物和分离组织中都影响了D. pagei的水和离子运动。本研究强调了评估面临金属污染水域的水生动物组织体积调节的相关性。

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