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首页> 外文期刊>Journal of the North American Benthological Society >Estimating the trophic position of aquatic consumers in river food webs using stable nitrogen isotopes
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Estimating the trophic position of aquatic consumers in river food webs using stable nitrogen isotopes

机译:使用稳定的氮同位素估算水生消费者在河食物网中的营养位置

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Intraspecific and interspecific variation in the trophic position of various consumers is central to many theories of aquatic ecosystem functioning and dynamics. In recent years, such issues have been addressed using stable N isotopes (delta N-15) to estimate trophic position of consumers in aquatic ecosystems. However, one needs to correct for variation in baseline delta N-15 among sites to estimate the trophic position of any aquatic consumer using delta N-15. We first discuss the steps needed to select a baseline indicator in river ecosystems, where abundant foodweb isotopic data have been published but limited attention has been paid to identification of baseline organisms. We examined within-site differences in delta N-15 among primary consumers belonging to different functional and taxonomic groups and found significant differences in delta N-15. Collectors were significantly enriched compared to other primary consumers. We propose scrapers as a baseline delta N-15 indicator because they showed low delta N-15 values and were more widely distributed than other primary consumers throughout our study sites. Using this baseline delta N-15, we calculated continuous estimates of trophic position of consumers (invertebrates and small fish) for our 87 river food webs. Primary consumers had a significantly lower mean trophic position (2.3) than predatory invertebrates (2.9) and fish (3.5), and these results are concordant with estimates based on traditional studies. However, trophic-position estimates of consumers (both invertebrates and fish) were highly variable across sites with standard deviations spanning up to 0.67 trophic levels, which suggested potential omnivory. Comparison of these trophic-position estimates with estimates based on mean delta N-15 of all primary consumers combined (no targeting of scrapers as baseline indicators) suggested that use of a constrained number of groups and corrections for isotopic differences among groups when estimating baseline delta N-15 could reduce some biases induced by the use of various functional feeding groups with variable delta N-15 values.
机译:各种消费者营养位置的种内和种间变化是许多水生生态系统功能和动力学理论的核心。近年来,已经使用稳定的N同位素(δN-15)解决了此类问题,以估计消费者在水生生态系统中的营养位置。但是,需要校正站点之间基线增量N-15的变化,以估计使用增量N-15的任何水生消费者的营养位置。我们首先讨论在河流生态系统中选择基线指标所需的步骤,那里已经发布了丰富的食物网同位素数据,但是对识别基线生物的关注有限。我们检查了属于不同功能和分类组的主要消费者之间的增量N-15的站点内差异,并发现增量N-15的显着差异。与其他主要消费者相比,收藏家的财富大大增加。我们建议使用刮板作为基线增量N-15指标,因为它们显示出较低的增量N-15值,并且在我们的研究地点中比其他主要消费者分布更广。使用此基线增量N-15,我们计算了我们87条河网中消费者(无脊椎动物和小鱼)的营养位置的连续估计值。主要消费者的平均营养位置(2.3)明显低于掠食性无脊椎动物(2.9)和鱼类(3.5),这些结果与基于传统研究的估计相符。但是,消费者(无脊椎动物和鱼类)的营养位置估计值在不同地点之间变化很大,标准偏差最高可达0.67营养水平,这表明可能存在杂食动物。将这些营养位置的估计值与所有主要消费者的平均差值N-15的估计值相比较(没有将刮板作为基准指标),建议在估计基准差值时使用有限的组数并校正各组之间的同位素差异N-15可以减少使用具有可变增量N-15值的各种功能性进食基团引起的一些偏见。

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