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Community size spectra provide indicators of ecosystem recovery on the Newfoundland and Labrador shelf

机译:社区规模谱提供纽芬兰和拉布拉多架上的生态系统回收指标

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Species- and size-selective overexploitation often have ecosystem-wide impacts that are evident in community size spectra. To both derive potential ecosystem targets for community rebuilding and assess contemporary indicators relative to these targets, we constructed theoretical size spectra to predict pristine biomass densities using a combination of species- and size-specific nitrogen stable isotope signatures and a range of trophic efficiencies and primary productivity estimates within and among 3 sub-regions of the Newfoundland and Labrador shelf. Theoretical size spectra were compared to empirically derived size spectra using trawl survey data. The descending slopes of the empirically determined size spectra were between 1.25 and 2.42 times steeper than the theoretical slopes. The percentage of the theoretical distribution represented by the empirical size structure ranged between 1.1 and 29.4%, with the closest and furthest estimates associated with the smallest- and largest-sized fishes, respectively, and strongly influenced by estimates of trophic efficiency and primary productivity. Regional variation was also observed, with southern regions reaching 1.3-32.3% of the theoretical biomass density and the northernmost region reaching only 0-8.3%. Importantly, the descending slopes varied depending on fish size, with biomass density of larger sizes decreasing faster than that of smaller sizes. Variations among sub-regions and fish guilds were also observed. These analyses provide a means to derive potential ecosystem targets and indicators through which recovery of fish communities can be monitored and assessed.
机译:物种和尺寸选择性过度开采通常具有在社区规模光谱中显而易见的生态系统的影响。对于社区重建和评估当代指标的潜在生态系统目标相对于这些目标,我们构建了理论尺寸光谱,以使用物种和尺寸特异性氮稳定同位素签名和一系列营养效率和初级效率和一系列营养效率来预测原始生物质密度纽芬兰和拉布拉多架的3个子区域内部和生产力估算。将理论尺寸光谱与使用跳过测量数据进行比较凭经验型谱。经验测定的尺寸光谱的下降斜率比理论斜坡更陡峭的1.25和2.42倍。由经验规模结构表示的理论分布的百分比范围为1.1至29.4%,与最近和最大的估计分别与最小和最大的鱼类相关,并受营养效率估计和初级生产率的强烈影响。还观察到区域变异,南方地区占理论生物质密度的1.3-32.3%,最北部的地区仅达到0-8.3%。重要的是,下降斜率根据鱼尺寸而变化,较大尺寸的生物质密度比较小尺寸的速度更快地降低。还观察到子区域和鱼会之间的变化。这些分析提供了导出潜在生态系统目标和指标的方法,通过该目标和指标可以监测和评估鱼群的恢复。

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