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营养盐富集、净化底物和体型对与微藻相关的镉向底栖双壳类动物细巧长腹水蚤营养转移的影响。

Effects of nutrient enrichment, depuration substrate, and body size on the trophic transfer of cadmium associated with microalgae to the benthic amphipod Leptocheirus plumulosus.

作者信息

Yu Ri-Qing, Fleeger John W

机构信息

Department of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana 70803, USA.

出版信息

Environ Toxicol Chem. 2006 Nov;25(11):3065-72. doi: 10.1897/06-029r.1.

Abstract

Bioavailability and nutrient effects on the trophic transfer of Cd associated with microalgae to the marine benthic amphipod Leptocheirus plumulosus were investigated. Cadmium assimilation efficiency (AE) of suspension-feeding L. plumulosus significantly varied among three algal species tested (Nitzschia punctata, Thalassiosira weissflogii, and Isochrysis galbana). Depuration substrate greatly influenced Cd AE for L. plumulosus (AE was much higher for nonburrowed amphipods), probably because sediment burrowing allowed L. plumulosus to feed as a surface deposit feeder. The L. plumulosus body size, ranging from 0.5 to 2.0 mm, did not affect Cd AE. Nitrate enrichment from 0 to 180 microM in algal culture significantly increased Cd AE from 9.4 to 18.8% for T. weissflogii, from 10.0 to 27.3% for N. punctata, and from 10.0 to 16.2% for I. galbana; nitrate enrichment from 0 to 60 microM did not influence Cd AE in any algal species tested. Physiological turnover rate constants of Cd in L. plumulosus ranged from 0.016 to 0.025/h for the three species and were independent of nitrate addition. Nitrate enrichment strongly enhanced Cd distribution in algal cytoplasm. Phosphate enrichment (0-7.5 miroM) did not significantly affect Cd AEs in L. plumulosus. Overall, a significant linear relationship was observed between the Cd AE of L. plumulosus and the fraction of Cd available in algal cytoplasm. Our work suggests that eutrophication by nitrate enrichment has the potential to enhance the trophic transfer of Cd from microalgae to suspension-feeding benthic invertebrates.

摘要

研究了生物有效性和营养物质对与微藻相关的镉向海洋底栖双足类动物柔弱长手钩虾营养转移的影响。在测试的三种藻类物种(点纹菱形藻、威氏海链藻和等鞭金藻)中,悬浮摄食的柔弱长手钩虾对镉的同化效率(AE)有显著差异。净化底物对柔弱长手钩虾的镉AE有很大影响(非穴居双足类动物的AE要高得多),这可能是因为在沉积物中挖掘洞穴使柔弱长手钩虾能够作为表面沉积物摄食者进食。体长在0.5至2.0毫米之间的柔弱长手钩虾,其体长对镉AE没有影响。藻类培养中硝酸盐浓度从0增加到180微摩尔,显著提高了威氏海链藻的镉AE,从9.4%提高到18.8%,点纹菱形藻从10.0%提高到27.3%,等鞭金藻从10.0%提高到16.2%;硝酸盐浓度从0增加到60微摩尔,对所测试的任何藻类物种的镉AE均无影响。三种藻类物种的柔弱长手钩虾中镉的生理周转率常数在0.016至0.025/小时之间,且与硝酸盐添加无关。硝酸盐富集强烈增强了藻类细胞质中镉的分布。磷酸盐富集(0 - 7.5微摩尔)对柔弱长手钩虾的镉AE没有显著影响。总体而言,观察到柔弱长手钩虾的镉AE与藻类细胞质中可利用的镉比例之间存在显著的线性关系。我们的研究表明,硝酸盐富集导致的富营养化有可能增强镉从微藻向悬浮摄食底栖无脊椎动物的营养转移。

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