挪威北部的冷渗漏和珊瑚礁:具有共存特征的海洋生态系统中的碳循环

IF 3.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Muhammed Fatih Sert, Hans C. Bernstein, Knut Ola Dølven, Sebastian Petters, Timo Kekäläinen, Janne Jänis, Jorge Corrales-Guerrero, Bénédicte Ferré
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引用次数: 0

摘要

冷渗漏和冷水珊瑚(CWCs)共存于挪威北部大陆架,位于罗弗敦和维斯特拉伦之间的霍拉海槽。在这里,海底的寒流释放出甲烷,但没有甲烷到达海面。相反,甲烷溶解并分散在海洋中,最终被甲烷氧化微生物消耗。这些微生物代谢甲烷并释放二氧化碳和溶解有机质(DOM),可能会影响冷渗漏附近CWCs的生物地球化学栖息地。研究了水体中碳、碳同位素、营养物、DOM组成和微生物多样性的生物地球化学特征。我们的研究结果表明,在碳同位素组成改变的冷渗附近,溶解的无机碳浓度增加了29%。水体物理参数和沉降颗粒的地底控制主要控制水柱产能和养分循环。DOM的组成表明,与渗漏相关的微生物组改变了cwc和靠近冷渗漏的整个水柱DOM的化学多样性和同位素组成。在挪威北部的大陆架上,冷渗漏和cwc共存;然而,水温升高和由此导致的冷渗漏甲烷释放增加可能会改变该地区的碳循环,这可能会减轻CWC珊瑚礁未来的生态作用和功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cold Seeps and Coral Reefs in Northern Norway: Carbon Cycling in Marine Ecosystems With Coexisting Features

Cold seeps and cold-water corals (CWCs) coexist on Northern Norway's continental shelf at the Hola trough between Lofoten and Vesterålen. Here, cold seeps release methane from the seabed, yet none reaches the sea surface. Instead, the methane dissolves and disperses in the ocean where it is ultimately consumed by methane-oxidizing microorganisms. These microorganisms metabolize methane and release carbon dioxide and dissolved organic matter (DOM), which may impact the biogeochemical habitat of CWCs in close vicinity of cold seeps. We investigated the biogeochemistry of carbon, carbon isotopes, nutrients, DOM compositions, and microbial diversity in the water column. Our results indicated that dissolved inorganic carbon concentrations were 29% higher near cold seeps with modified carbon's isotopic compositions. The hydrophysical parameters and surface-to-bottom control of sinking particles mainly govern water column productivity and nutrient cycle. DOM compositions implied that the seep-associated microbiomes modify DOM's chemical diversity and isotopic composition at CWCs and the entire water column near cold seeps. Cold seeps and CWCs coexist in Northern Norway's continental shelves; however, enhanced water temperatures and consequent increase in methane release at cold seeps may modify the carbon cycling in the area, which could mitigate the ecological role and functioning of CWC reefs in the future.

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来源期刊
Journal of Geophysical Research: Biogeosciences
Journal of Geophysical Research: Biogeosciences Earth and Planetary Sciences-Paleontology
CiteScore
6.60
自引率
5.40%
发文量
242
期刊介绍: JGR-Biogeosciences focuses on biogeosciences of the Earth system in the past, present, and future and the extension of this research to planetary studies. The emerging field of biogeosciences spans the intellectual interface between biology and the geosciences and attempts to understand the functions of the Earth system across multiple spatial and temporal scales. Studies in biogeosciences may use multiple lines of evidence drawn from diverse fields to gain a holistic understanding of terrestrial, freshwater, and marine ecosystems and extreme environments. Specific topics within the scope of the section include process-based theoretical, experimental, and field studies of biogeochemistry, biogeophysics, atmosphere-, land-, and ocean-ecosystem interactions, biomineralization, life in extreme environments, astrobiology, microbial processes, geomicrobiology, and evolutionary geobiology
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