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Isotope and fatty acid trends along continental shelf depth gradients: Inshore versus offshore hydrological influences on benthic trophic functioning

机译:沿着大陆架深度梯度的同位素和脂肪酸趋势:对底栖营养功能的腹腔与海上水文影响

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摘要

Anthropogenic activities and land-based inputs into the sea may influence the trophic structure and functioning of coastal and continental shelf ecosystems, despite the numerous opportunities and services the latter offer to humans and wildlife. In addition, hydrological structures and physical dynamics potentially influence the sources of organic matter (e.g., terrestrial versus marine, or fresh material versus detrital material) entering marine food webs. Understanding the significance of the processes that influence marine food webs and ecosystems (e.g., terrestrial inputs, physical dynamics) is crucially important because trophic dynamics are a vital part of ecosystem integrity. This can be achieved by identifying organic matter sources that enter food webs along inshore–offshore transects. We hypothesised that regional hydrological structures over wide continental shelves directly control the benthic trophic functioning across the shelf. We investigated this issue along two transects in the northern ecosystem of the Bay of Biscay (north-eastern Atlantic). Carbon and nitrogen stable isotope analysis (SIA) and fatty acid analysis (FAA) were conducted on different complementary ecosystem compartments that include suspended particulate organic matter (POM), sedimentary organic matter (SOM), and benthic consumers such as bivalves, large crustaceans and demersal fish. Samples were collected from inshore shallow waters (at ∼1 m in depth) to more than 200 m in depth on the offshore shelf break. Results indicated strong discrepancies in stable isotope (SI) and fatty acid (FA) compositions in the sampled compartments between inshore and offshore areas, although nitrogen SI (δ15N) and FA trends were similar along both transects. Offshore the influence of a permanently stratified area (described previously as a “cold pool”) was evident in both transects. The influence of this hydrological structure on benthic trophic functioning (i.e., on the food sources available for consumers) was especially apparent across the northern transect, due to unusual carbon isotope compositions (δ13C) in the compartments. At stations under the cold pool, SI and FA organism compositions indicated benthic trophic functioning based on a microbial food web, including a significant contribution of heterotrophic planktonic organisms and/or of SOM, notably in stations under the cold pool. On the contrary, inshore and shelf break areas were characterised by a microalgae-based food web (at least in part for the shelf break area, due to slope current and upwelling that can favour fresh primary production sinking on site). SIA and FAA were relevant and complementary tools, and consumers better medium- to long-term system integrators than POM samples, for depicting the trophic functioning and dynamics along inshore–offshore transects over continental shelves.
机译:人类活动和陆基投入海中可能影响营养结构及沿海和大陆架生态系统的运作,尽管无数的机会和服务,后者提供给人类和野生动物。此外,水文结构和物理动力学可能影响的有机物质(例如,陆地与海洋,或新鲜的材料与碎屑物质)进入海洋食物网来源。理解过程的意义在于影响海洋食物网和生态系统(例如,地面输入,物理动力学),因为营养动力学是生态系统的完整性的一个重要部分是极其重要的。这可以通过识别沿近海离岸断面进入食物链有机物源来实现。我们假设区域水文结构在很宽的大陆架直接控制整个货架底栖营养功能。我们在比斯开湾(东北大西洋)的北部生态系统研究沿着两个断面这个问题。碳和氮稳定同位素分析(SIA)和脂肪酸分析(FAA)分别对包含悬浮颗粒的有机物(POM)不同的互补的生态系统的隔室,沉积的有机物质(SOM),和底栖消费者如双壳类,大型甲壳类和进行底层鱼类。样品从近岸浅海水域采集(在深度〜1米)到200多米深的近海陆架坡折。结果表明在稳定的同位素(SI)和在近岸和离岸区域之间的采样隔室脂肪酸(FA)的组合物强的差异,尽管氮SI(δ15N)和FA趋势是沿着两个横断面相似。境外永久分层区域(如“冷池”先前所描述)的影响在两个断面明显。底栖营养功能(即,在可用于消费者的食品来源)这个水文结构的影响是横跨北方断面尤其明显,由于在隔室异常碳同位素组合物(δ13 C)。在冷池下站,SI和FA生物成分表明基于微食物网底栖营养功能,包括异养浮游生物和/或SOM的显著贡献,特别是在寒池下站。相反,近岸和陆架坡折区是由一个基于微藻食物网特点(至少在货架休息区的一部分,由于斜坡电流和上升流,可以有利于新鲜初级生产下沉酒店)。 SIA和FAA是相关和互补的工具,与消费者更好的中期和长期的系统集成商比POM样品,在沿大陆架近海离岸断面描绘了营养功能和动态。

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