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首页> 外文期刊>Biological invasions >Application of a lower food web ecosystem productivity model for investigating dynamics of the invasive species Bythotrephes longimanus in Lake Michigan
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Application of a lower food web ecosystem productivity model for investigating dynamics of the invasive species Bythotrephes longimanus in Lake Michigan

机译:较低食物网生态系统生产力模型在密歇根湖调查外来入侵物种Bythotrephes longimanus动力学中的应用

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摘要

A Lake Michigan Ecosystem Model (LMEco) that includes a detailed description of trophic levels and their interactions was developed for Lake Michigan. The LM-Eco model constitutes a first step toward a comprehensive Lake Michigan ecosystem productivity model to investigate ecosystem-level responses and effects within the lower food web of the lake. The effect of the invasive species Bythotrephes longimanus on individual zooplankton species was investigated based upon extensive field data collected at multiple locations in Lake Michigan during the 1994–1995 Lake Michigan Mass Balance Study. Field data collected at 15 sampling stations within Lake Michigan over a series of 8 sampling cruises throughout a 2 year period demonstrated that over 65% of zooplankton species exhibited a decline with the occurrence of Bythotrephes in the sample. The LM-Eco model was successfully applied to simulate the trends of Bythotrephes and zooplankton abundance as observed in the collected field data. Model simulations allowed for examination of interactions between the invader Bythotrephes and native zooplankton groups on a 5 km by 5 km resolution throughout Lake Michigan. Analysis was completed as a time series specific to individual field sampling locations within the lake, and also on a lake-wide scale.
机译:为密歇根湖开发了密歇根湖生态系统模型(LMEco),其中包括对营养水平及其相互作用的详细描述。 LM-Eco模型构成了迈向密歇根湖综合生态系统生产力模型的第一步,该模型旨在研究湖泊下部食物网中生态系统水平的响应和影响。在1994-1995年密歇根湖质量平衡研究期间,根据在密歇根湖多个地点收集的大量田间数据,研究了入侵物种Bythotrephes longimanus对单个浮游动物物种的影响。在过去的2年中,在密歇根湖内的15个采样站进行了8次采样航行,收集的现场数据表明,随着样本中比邻苯二酚的出现,浮游动物物种中有65%的物种呈现下降趋势。 LM-Eco模型已成功应用于模拟在收集的野外数据中观察到的斜生鱼和浮游动物丰度的趋势。通过模型模拟,可以在整个密歇根湖以5 km x 5 km的分辨率检查入侵者的比索菲斯与原生浮游动物群之间的相互作用。分析是作为一个时间序列完成的,该时间序列特定于湖泊内以及整个湖泊的各个野外采样位置。

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