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硝酸盐对淡水贻贝钩介幼虫附着和变态为幼体阶段的影响。

Effects of nitrate on freshwater mussel glochidia attachment and metamorphosis success to the juvenile stage.

机构信息

Interdisciplinary Toxicology Program, University of Georgia, Athens, GA, USA; Warnell School of Forestry and Natural Resources, University of Georgia, Athens, GA, USA.

Interdisciplinary Toxicology Program, University of Georgia, Athens, GA, USA; Warnell School of Forestry and Natural Resources, University of Georgia, Athens, GA, USA.

出版信息

Environ Pollut. 2018 Nov;242(Pt A):807-813. doi: 10.1016/j.envpol.2018.07.047. Epub 2018 Jul 17.

Abstract

Water quality and contaminants have been frequently identified as critical stressors for freshwater mussels, many species of which are highly imperiled throughout North America and the world. Nutrient pollution, specifically nitrate, has become one of the most prevalent causes of water quality degradation globally, with increasing anthropogenic input from suburban and agricultural runoff, municipal wastewater, and industrial waste. Nitrate acute toxicity is generally low for aquatic species, but the potential effects of nitrate exposure are largely unknown for freshwater mussels, particularly during the parasitic stage of their complex lifecycle. Therefore, this study was designed to determine the effects of short-term nitrate exposure at environmentally relevant concentrations on juvenile production in two freshwater mussel species. Lampsilis siliquoidea and L. fasciola glochidia were exposed to nitrate (0, 11, or 56 mg NO-N/L) for 24 h before inoculation on a primary host, Largemouth Bass (Micropterus salmoides). Glochidia attachment, metamorphosis success, and total number of juveniles produced were monitored on individual fish. Exposure of L. siliquoidea glochidia to 56 mg NO-N/L nitrate resulted in a significant (p = 0.02) 35% reduction of total juveniles produced, a combined result of moderate decreases in both glochidia attachment and metamorphosis success. A similar trend (28% reduction; p = 0.06) was evident with 11 mg NO-N/L. No effects were apparent for L. fasciola, suggesting species-specific differences in responses even among closely related species. These results are the first to suggest that glochidia exposure to nitrate may adversely affect juvenile recruitment in some species. Findings from these studies are important for improving characterization of the hazards of nitrate pollution to aquatic life and this work will help better define the role of water quality in assessing habitat suitability for mussel conservation efforts.

摘要

水质和污染物经常被认为是淡水贻贝的关键胁迫因素,北美和世界各地的许多贻贝物种都处于高度濒危状态。营养物污染,特别是硝酸盐,已成为全球水质恶化的最普遍原因之一,由于郊区和农业径流、城市废水和工业废物的人为输入增加,硝酸盐污染日益严重。硝酸盐对水生物种的急性毒性通常较低,但对于淡水贻贝,特别是在其复杂生命周期的寄生阶段,硝酸盐暴露的潜在影响在很大程度上尚不清楚。因此,本研究旨在确定在环境相关浓度下短期暴露于硝酸盐对两种淡水贻贝物种幼体生产的影响。在接种到主要宿主大口黑鲈(Micropterus salmoides)之前,将 Lampsilis siliquoidea 和 L. fasciola 的幼贝暴露于硝酸盐(0、11 或 56 mg NO-N/L)24 小时。监测个体鱼上附着的幼贝数量、变态成功和产生的幼贝总数。暴露于 56 mg NO-N/L 硝酸盐的 L. siliquoidea 幼贝的总幼贝产生量显著减少(p=0.02),附着幼贝和变态成功均适度降低导致的综合结果。11 mg NO-N/L 也出现类似的趋势(减少 28%;p=0.06)。L. fasciola 则没有明显的影响,这表明即使在密切相关的物种中,物种对硝酸盐的反应也存在特异性差异。这些结果首次表明,幼贝暴露于硝酸盐可能会对某些物种的幼体补充产生不利影响。这些研究结果对于提高对硝酸盐污染对水生生物危害的认识非常重要,并且这项工作将有助于更好地确定水质在评估贻贝保护工作栖息地适宜性方面的作用。

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