Suppr超能文献

寡营养作为中高营养级消费者体内汞生物积累的主要驱动因素:一项海洋生态系统比较研究。

Oligotrophy as a major driver of mercury bioaccumulation in medium-to high-trophic level consumers: A marine ecosystem-comparative study.

机构信息

IFREMER, Unité Biogéochimie et Écotoxicologie, Laboratoire de Biogéochimie des Contaminants Métalliques, Rue de l'Ile d'Yeu, BP 21105, 44311 Nantes Cedex 03, France.

IFREMER, Unité Littoral, Laboratoire Environnement Ressources Provence Azur Corse, Zone portuaire de Brégaillon, CS 20330, 83507 La Seyne sur Mer Cedex, France; IFREMER, Unité Halieutique de Manche-Mer du Nord, Laboratoire Ressources Halieutiques de Boulogne, 150 quai Gambetta, 62200 Boulogne sur Mer, France.

出版信息

Environ Pollut. 2018 Feb;233:844-854. doi: 10.1016/j.envpol.2017.11.015. Epub 2017 Nov 14.

Abstract

Mercury (Hg) is a global contaminant of environmental concern. Numerous factors influencing its bioaccumulation in marine organisms have already been described at both individual and species levels (e.g., size or age, habitat, trophic level). However, few studies have compared the trophic characteristics of ecosystems to explain underlying mechanisms of differences in Hg bioaccumulation and biomagnification among food webs and systems. The present study aimed at investigating the potential primary role of the trophic status of systems on Hg bioaccumulation and biomagnification in temperate marine food webs, as shown by their medium-to high-trophic level consumers. It used data from samples collected at the shelf-edge (i.e. offshore organisms) in two contrasted ecosystems: the Bay of Biscay in the North-East Atlantic Ocean and the Gulf of Lion in the North-West Mediterranean Sea. Seven species including crustaceans, sharks and teleost fish, previously analysed for their total mercury (T-Hg) concentrations and their stable carbon and nitrogen isotope compositions, were considered for a meta-analysis. In addition, methylated mercury forms (or methyl-mercury, Me-Hg) were analysed. Mediterranean organisms presented systematically lower sizes than Atlantic ones, and lower δC and δN values, the latter values especially highlighting the more oligotrophic character of Mediterranean waters. Mediterranean individuals also showed significantly higher T-Hg and Me-Hg concentrations. Conversely, Me-Hg/T-Hg ratios were higher than 85% for all species, and quite similar between systems. Finally, the biomagnification power of Hg was different between systems when considering T-Hg, but not when considering Me-Hg, and was not different between the Hg forms within a given system. Overall, the different parameters showed the crucial role of the low primary productivity and its effects rippling through the compared ecosystems in the higher Hg bioaccumulation seen in organisms from oligotrophic Mediterranean waters.

摘要

汞(Hg)是一种全球性的环境污染物。已经在个体和物种水平上描述了许多影响其在海洋生物中生物积累的因素(例如,大小或年龄、栖息地、营养水平)。然而,很少有研究比较生态系统的营养特征来解释食物网和系统之间 Hg 生物积累和生物放大差异的潜在机制。本研究旨在调查系统的营养状况对中高营养水平消费者温带海洋食物网中 Hg 生物积累和生物放大的潜在主要作用。它使用了在两个对比生态系统(东北大西洋比斯开湾和西北地中海的利翁湾)边缘架(即近海生物)收集的样本数据。考虑到 7 种甲壳类动物、鲨鱼和硬骨鱼的总汞(T-Hg)浓度及其稳定的碳和氮同位素组成进行了荟萃分析。此外,还分析了甲基汞形式(或甲基汞,Me-Hg)。与大西洋生物相比,地中海生物的体型普遍较小,δC 和 δN 值较低,后者特别突出了地中海水域的贫营养特征。地中海个体的 T-Hg 和 Me-Hg 浓度也明显更高。相反,所有物种的 Me-Hg/T-Hg 比值均高于 85%,且在两个系统之间相当相似。最后,当考虑 T-Hg 时,Hg 的生物放大能力在两个系统之间存在差异,但当考虑 Me-Hg 时则没有差异,并且在给定系统内 Hg 形式之间也没有差异。总体而言,不同的参数表明,低初级生产力及其在比较生态系统中的影响在贫营养地中海水域生物中更高的 Hg 生物积累中起着至关重要的作用。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验