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Fisheries and trophic structure of a large tropical river under impoundment

机译:蓄水下大型热带河流的渔业和营养结构

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摘要

Impacts on tropical rivers affect biodiversity and ecosystem services negatively impacting many economic activities, such as small-scale fisheries. Ecosystem-based fisheries management (EBFM) has been applied to maintain ecosystem flows and services for fisheries, to support social and economic sustainability. The suitable employment of the EBFM approach requires the understanding of the ecosystem by quantifying the trophic interactions and simulating environmental and fishery alterations. In this paper, to evaluate the early changes resulting from damming for hydroelectric power generation on the Madeira River food web, we compared two Ecopath models: before (pre) and after (post) the dam construction in November 2011. We analyzed the changes using several ecosystem attributes: fish biomass, catches, exchange of matter/energy, transfer efficiency, and, especially, the potential direct and indirect relationships among species. We also carried out simulations of the increase in the catches of several stocks in the models. Our analysis allowed us to identify several differences between before (2010-2011) and post (2012-2013) periods: an increasing of the ecosystem's respiration and consumption, a reducing of net production, transfer efficiency among Trophic Levels (TL), and total biomass of fish species by half. There was also an exchange of key species that were previously mostly non-fish compartments and became top predator fish, including B. rousseauxii, which was considered a key species in both periods. Fish species with an intermediate TL had their biomass reduced via top-down control, especially because of the increased biomass of non-migratory top predators (Hoplias malabaricus and Plagioscion squamosissimus). Noticeably, damming clearly reversed possible impact linkage among species, since one-third of indirect and almost one-half of direct (trophic) relations changed of signal, leading to unexpected turns in the system. Also, simulation revealed that increasing in catches strongly impact on fish biomass in the post-dam model more than in the pre-dam model. The ecosystem context of these results and the fact that they are pioneers in assess Amazonian damming can help the local managers and government to understand the impoundment effects and simulate changes in catches to foresee future impacts of reservoirs on Amazon.
机译:对热带河流的影响影响生物多样性和生态系统服务对许多经济活动产生负面影响,如小规模渔业。基于生态系统的渔业管理(EBFM)已应用于维持生态系统流量和渔业服务,以支持社会和经济可持续性。 EBFM方法的合适就业需要通过量化营养互动和模拟环境和渔业改变来了解生态系统。在本文中,为了评估Madeira River Food Web上的水电发电的渔获机会的早期变化,我们比较了两种eCopath模型:在2011年11月的大坝建设之前(PRE)和之后(POST)。我们分析了使用的变化几个生态系统属性:鱼生物质,捕获,物质/能量交换,转移效率,以及物种之间的潜在直接和间接关系。我们还开展了模型中若干股票捕获量的模拟。我们的分析使我们能够识别之前(2010-2011)和帖子(2012-2013)期间的几个差异:增加生态系统的呼吸和消费,降低净生产,营养水平之间的转移效率(TL)和总额鱼类生物量一半。还有一个主要的物种的交换,以前大多是非鱼室,并成为捕食者鱼类,包括B. Rousseauxi,这被认为是两个时期的关键物种。具有中间T1的鱼类通过自上而下控制减少了它们的生物量,尤其是因为非迁徙的顶部捕食者的生物量增加(Hoplias Malabaricus和Plagioscion Squamosissimus)。明显的是,由于间接的三分之一和几乎一半的直接(营养师)关系的三分之一的信号发生了三分之一的直接(营养业)关系,可能会发生抗冲击的可能影响。此外,仿真显示,在坝前模型中,捕获越来越强烈影响鱼生物量而不是预防坝模型。这些结果的生态系统背景以及他们在评估Amazonian渔民的过程中的事实可以帮助当地的经理和政府了解蓄水效果,并模拟捕获的变化,以预见到亚马逊对亚马逊的未来影响。

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