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Stable isotope-based trophic structure of pelagic fish and jellyfish across natural and anthropogenic landscape gradients in a fjord estuary

机译:峡湾河口跨自然和人为景观梯度的中上层鱼类和水母基于同位素的营养结构

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Abstract Identifying causes of structural ecosystem shifts often requires understanding trophic structure, an important determinant of energy flow in ecological communities. In coastal pelagic ecosystems worldwide, increasing jellyfish (Cnidaria and Ctenophora) at the expense of small fish has been linked to anthropogenic alteration of basal trophic pathways. However, this hypothesis remains untested in part because baseline description of fish?¢????jellyfish trophic dynamics, and the environmental features that influence them are lacking. Using stable isotopes of carbon (???′ 13 C) and nitrogen (???′ 15 N), we examined spatiotemporal patterns of fish and jellyfish trophic structure in greater Puget Sound, an urbanizing fjord estuary in the NW United States. We quantified niche positions of constituent species, niche widths and trophic overlap between fish and jellyfish assemblages, and several community-level trophic diversity metrics (resource diversity, trophic length, and niche widths) of fish and jellyfish combined. We then related assemblage- and community-level measures to landscape gradients of terrestrial?¢????marine connectivity and anthropogenic influence in adjacent catchments. Relative niche positions among species varied considerably and displayed no clear pattern except that fish generally had higher ???′ 15 N and lower ???′ 13 C relative to jellyfish, which resulted in low assemblage-level trophic overlap. Fish assemblages had larger niche widths than jellyfish in most cases and, along with whole community trophic diversity, exhibited contrasting seasonal patterns across oceanographic basins, which was positively correlated to landscape variation in terrestrial connectivity. In contrast, jellyfish niche widths were unrelated to terrestrial connectivity, but weakly negatively correlated to urban land use in adjacent catchments. Our results indicate that fish?¢????jellyfish trophic structure is highly heterogeneous and that disparate processes may underlie the trophic ecology of these taxa; consequently, they may respond divergently to environmental change. In addition, spatiotemporal variation in ecosystem connectivity, in this case through freshwater influence, may influence trophic structure across heterogeneous landscapes.
机译:摘要确定结构性生态系统转移的原因通常需要了解营养结构,营养结构是生态群落能量流的重要决定因素。在全世界的沿海中上层生态系统中,以小鱼为代价的水母(increasing鱼和ni鱼)的增加与人为的营养路径的改变有关。但是,该假设仍未得到检验,部分原因是缺乏对鱼类水母营养动力学的基线描述以及影响它们的环境特征。我们使用碳(???'13 C)和氮(???'15 N)的稳定同位素,研究了美国西北部城市化峡湾大普吉特海湾大鱼和水母营养结构的时空分布。我们量化了组成物种的生态位位置,鱼和水母组合之间的生态位宽度和营养重叠,以及鱼类和水母相结合的几种社区级营养多样性指标(资源多样性,营养长度和生态位宽度)。然后,我们将组合和社区一级的措施与邻近流域陆地海洋连通性和人为影响的景观梯度相关联。物种之间的相对生态位位置变化很大,并且没有显示出清晰的模式,只是鱼类相对于水母通常具有较高的15'N和较低的13'C,这导致较低的集合级营养重叠。在大多数情况下,鱼群的生态位宽度比海fish更大,并且随着整个社区的营养多样性,整个海洋盆地表现出相反的季节性格局,这与陆地连通性的景观变化呈正相关。相比之下,水母的生态位宽度与陆地连通性无关,但与邻近流域的城市土地利用却呈弱负相关。我们的研究结果表明,水母的营养结构高度异质,并且不同的过程可能是这些类群营养生态的基础。因此,他们对环境变化的反应可能有所不同。此外,在这种情况下,由于淡水的影响,生态系统连通性的时空变化可能会影响非均质景观的营养结构。

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