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浮游生物胞外代谢产物(黏液大聚集体)的元素组成:受生物源和岩源组分的控制

Elemental Composition of Plankton Exometabolites (Mucous Macroaggregates): Control by Biogenic and Lithogenic Components.

作者信息

Kovač Nives, Viers Jérôme, Faganeli Jadran, Bajt Oliver, Pokrovsky Oleg S

机构信息

Marine Biological Station, National Institute of Biology, Fornače 41, SI-6330 Piran, Slovenia.

Geosciences and Environment Toulouse, UMR 5563 CNRS, 14 Avenue Edouard Belin, 31400 Toulouse, France.

出版信息

Metabolites. 2023 Jun 5;13(6):726. doi: 10.3390/metabo13060726.

Abstract

Among the various exometabolitic effects of marine microorganisms, massive mucilage events in the coastal zones of temperate and tropical seas are the most spectacular and environmentally important. Abundant mucilage material in the form of aggregates appears in late spring/early summer in the water column of the Adriatic Sea. These macroaggregate biopolymers originate mainly from plankton exometabolites, with both autochthonous and allochthonous components, and strongly impact the tourism, fisheries, and economy of coastal countries. In contrast to extensive studies on the structural and chemical nature of macroaggregates performed over past decades, the full elemental composition of these substances remains poorly known, which does not allow for a complete understanding of their origin, evolution, and necessary remediation measures. Here, we report the results of comprehensive analyses of 55 major and trace elements in the composition of macro aggregates collected at the surface and in the water column during massive mucilage events. Through normalization of the elemental chemical composition of the upper earth crust (UCC), river suspended material (RSM), mean oceanic plankton, and mean oceanic particulate suspended material, we demonstrate that the water column macroaggregates reflect a superposition of the signal from plankton and marine particulate matter. The surface macroaggregates were preferentially enriched in lithogenic component, and carried the signature of planktonic material. The rare earth element (REE) signal was strongly dominated by plankton and, to a lesser degree, by oceanic particulate matter, while at the same time being strongly (>80 times) impoverished compared with UCC and RSM. Taken together, the elemental composition of macroaggregates allows for distinguishing the lithogenic and biogenic impacts on the occurrence of these unique large-scale mucilage events, linked to the exometabolism of marine plankton combined with the input of allochthonous inorganic material.

摘要

在海洋微生物的各种胞外代谢作用中,温带和热带海域沿海地区出现的大规模黏液事件最为显著,且对环境具有重要意义。春季末/夏季初,亚得里亚海的水柱中会出现大量呈聚集体形式的黏液物质。这些大型聚集体生物聚合物主要源自浮游生物的胞外代谢产物,包含本地和异地成分,对沿海国家的旅游业、渔业和经济产生了重大影响。尽管在过去几十年里,人们对大型聚集体的结构和化学性质进行了广泛研究,但这些物质的完整元素组成仍鲜为人知,这使得我们无法全面了解它们的起源、演变以及必要的修复措施。在此,我们报告了在大规模黏液事件期间,对表层和水柱中收集的大型聚集体成分中的55种主要和微量元素进行综合分析的结果。通过对上地壳(UCC)、河流悬浮物质(RSM)、海洋浮游生物均值和海洋颗粒悬浮物质的元素化学组成进行归一化处理,我们证明水柱中的大型聚集体反映了浮游生物和海洋颗粒物信号的叠加。表层大型聚集体优先富集了成岩成分,并带有浮游生物物质的特征。稀土元素(REE)信号主要由浮游生物主导,在较小程度上受海洋颗粒物影响,同时与UCC和RSM相比,其含量大幅降低(超过80倍)。总体而言,大型聚集体的元素组成有助于区分成岩和生物成因对这些独特的大规模黏液事件发生的影响,这些事件与海洋浮游生物的胞外代谢以及异地无机物质的输入有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff86/10302818/3aa8758c61ac/metabolites-13-00726-g001.jpg

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