首页> 外文期刊>Frontiers in Marine Science >Ecosystem Functioning Under the Influence of Bottom-Trawling Disturbance: An Experimental Approach and Field Observations From a Continental Slope Area in the West Iberian Margin
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Ecosystem Functioning Under the Influence of Bottom-Trawling Disturbance: An Experimental Approach and Field Observations From a Continental Slope Area in the West Iberian Margin

机译:底部拖网扰动影响下的生态系统:西伊比利亚边缘大陆坡面积的实验方法和现场观测

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Understanding the effects of bottom-trawling induced changes in benthic community structure, diversity and ecosystem functioning across different benthic-size components is imperative to determine the future sustainability of bottom-trawling fisheries in deep-sea regions. In this study, we combined field sampling observations with a pulse-chase experiment on sediments obtained from two stations of interest along the West Iberian Margin (WIM) distinguished by different trawling pressures. We compared these two stations in terms of meio- and macrofauna (infauna) standing stocks, biodiversity and several ecosystem function proxies. These proxies included: (i) 13C uptake by bacterial communities, (ii) infauna respiration rates, (iii) penetration of 13C in the sediment and (iv) sediment pore-water nutrient concentrations. The pulse-chase experimental results were complemented with a larger biological dataset partially compiled from previous studies in the area, to investigate structural and functional diversity ecosystem functioning (respiration) patterns across the WIM. Our observations indicated that different regimes of trawling pressure influenced both macrofaunal respiration rates with disturbed sediments predominantly composed of deposit-/detritus-feeding smaller-sized macrofauna species. Moreover, sediment biogeochemical functioning (ammonium profiles) and 13C bacterial uptake showed differences among the two disturbance regimes. On the contrary, the biomass of small-sized biota, including bacteria and meiofauna, did not show marked differences between stations. The general depletion in macrofauna species richness across impacted areas of the study region was also correlated with a reduction in total biomass and respiration, suggesting that the long history of trawling disturbance at the WIM may affect regulatory ecosystem functions. These preliminary findings alert for the impacts of trawling on crucial functions of benthic ecosystems that may be imperceptible to the current tools used in monitoring programmes.
机译:了解底拖网诱导变化在不同底蕴群体结构,多样性和生态系统上运行的影响,迫切地确定深海地区未来拖网渔业的未来可持续性。在这项研究中,我们将现场采样观察结合在西伊伯利亚边缘(WIM)的两个感兴趣站中获得的沉积物的脉冲追踪实验结合在不同的拖网压力中。我们在Meio-and Meo-and Macrofauna(Infauna)常设股票,生物多样性和几个生态系统函数代理方面比较了这两个站点。这些代理包括:(i)13C通过细菌群体的吸收,(ii)infauna呼吸速率,(iii)13c在沉积物中的渗透和(iv)沉积物孔隙水营养浓度。脉冲追踪实验结果与部分从该地区的先前研究部分编译的较大生物数据集进行互补,以研究跨WIM的结构和功能多样性生态系统功能(呼吸)图案。我们的观察结果表明,不同的拖网压力制度影响了巨大的沉积物,令人不安的沉积物,主要由饲料/碎屑饲料较小的大型大型巨型巨型物种组成。此外,沉积物生物地球化学功能(铵型材)和13C细菌摄取在两个干扰方案中显示出差异。相反,小尺寸生物群(包括细菌和Meiofauna)的生物量没有显示出站之间的显着差异。在研究区的受影响区域的大型宏过物种丰富的一般枯竭也与总生物质和呼吸的降低相关,这表明WIM拖曳干扰的悠久历史可能会影响监管生态系统功能。这些初步调查结果警报了牵引对底栖生态系统至关重要的影响,这些生态系统可能是监测计划中使用的目前的工具可能是不可察觉的。

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