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首页> 外文期刊>Estuaries and coasts >A Mosaic of Estuarine Habitat Types with Prey Resources from Multiple Environmental Strata Supports a Diversified Foraging Portfolio for Juvenile Chinook Salmon
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A Mosaic of Estuarine Habitat Types with Prey Resources from Multiple Environmental Strata Supports a Diversified Foraging Portfolio for Juvenile Chinook Salmon

机译:来自多个环境地层的雌曲线栖息地类型的河豚栖息地类型支持少年奇努克三文鱼的多元化觅食组合

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Estuaries provide a mosaic of vital nursery habitat types for threatened Chinook salmon (Oncorhynchus tshawytscha) by promoting an ecological portfolio effect, whereby multiple habitat types and networked environmental strata maximize foraging opportunities for out-migrating Chinook salmon by varying the abundance and composition of prey through space and time. To study this portfolio effect, the foraging capacity of five estuarine habitat types was evaluated within the Nisqually River Delta (Puget Sound, Washington, USA). Within each habitat type, invertebrate prey resources were sampled from the terrestrial, aquatic, benthic, and epifaunal environmental strata and compared with juvenile Chinook salmon diets from corresponding sampling events. The estuarine emergent salt marsh supplied twice as much aquatic prey biomass as any other habitat type (720-5523 mg/m(3)), followed by the mudflat (246-2543 mg/m(3)) and eelgrass (Zostera marina; 141-2694 mg/m(3)). Despite some evidence for selectivity, juvenile Chinook salmon diets exhibited substantial compositional overlap, especially when compared with among-habitat differences in available prey resources. Fish that were captured in the emergent salt marsh, mudflat, and eelgrass habitat types consumed aquatic crustaceans such as mysids, while fish captured upriver in freshwater tidal forest and transitional emergent marsh habitat types ate a higher proportion of adult and larval insects. The availability and consumption of greater quantities of energy-poor crustaceans in the salt marsh and lower quantities of energy-rich insects upriver highlights a quantity-for-quality trade-off among estuarine habitat types. Overall results indicate that the timing, productivity, and diversity of prey across multiple habitat types and environmental strata determine an estuary's capacity to support foraging for multiple life history strategies, size classes, and cohorts of juvenile Chinook salmon.
机译:通过促进生态投资组合效应,河口为受威胁的Chinook Salmon(Oncorhynchus TShawytscha)提供了一个重要的苗圃栖息地类型的马赛克,其中多种栖息地和网络环境地层通过改变猎物的丰富和组成来最大限度地觅食机会。空间和时间。为研究这一组织效应,在尼齐河三角洲(Puget Sound,Washington,USA)中评估了五种河口栖息地类型的觅食能力。在每种栖息地类型中,无脊椎动物猎物资源被从陆地,水生,底栖和艾志的环境阶层取样,并与来自相应的抽样事件的少年奇努克鲑鱼饮食相比。河口出苗的盐沼沼泽提供了两倍的水生产生物量,作为任何其他栖息地类型(720-5523 mg / m(3)),其次是泥浆(246-2543 mg / m(3))和eelgrass(Zostera marina; 141-2694 mg / m(3))。尽管有一些选择性证据,但少年奇努克鲑鱼饮食表现出实质性的成分重叠,特别是与可用猎物资源的栖息地差异相比。在出苗盐沼,泥浆和鳗鱼栖息地类型捕获的鱼类消耗水生甲壳类动物,如肌室,而鱼类捕获淡水潮汐森林和过渡急产沼泽栖息地类型的令人满意的成人和幼虫昆虫。在盐沼和较低量的富含富含昆虫上的可用性和消费量的可用性和消费能力和消费量较低的富含昆虫上游偏振力率在河口栖息地类型中突出了质量质量权衡。总体结果表明,跨越栖息地类型和环境地层的猎物的时序,生产力和多样性决定了浅谈多生命历史策略,规模课程和少年奇努克鲑鱼的群体的灌注能力。

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