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Ecosystem Oceanography of Seabird Hotspots: Environmental Determinants and Relationship with Antarctic Krill Within an Important Fishing Ground

机译:海鸟热点的生态系统海洋学:环境决定因素和与南极克里尔的关系在一个重要的渔场内

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The discipline of ecosystem oceanography provides a framework for assessing the role of mesoscale physical processes on the formation and occurrence of biological hotspots. We used shipboard surveys over nine years to investigate environmental determinants of seabird hotspots near the Antarctic Peninsula, a region experiencing rapid climate change and an expanding krill fishery. We hypothesize that seabird hotspots are structured by mesoscale ocean conditions that reflect differences in prey distribution within oceanic and coastal waters. We used generalized additive models to quantify functional relationships of seabird hotspots with krill biomass, and a suite of remotely sensed environmental variables, such as eddy kinetic energy. The spatial organization, changes in intensity, and distribution shifts of seabird hotspots indicate different environmental drivers within coastal and oceanic domains and reflect the seasonal variability of the ecosystem. Our results indicate at least eight mesoscale hotspot zones that represent ecologically important areas where significant krill and predator biomass may be concentrated. Our ecosystem assessment of seabird hotspots identified critical foraging habitat and provided reference points to benefit research on estimating their trophic impacts on Antarctic ecosystems and potential effects from the krill fishery. Our approach is generally applicable to other pelagic ecosystems that are structured by hydrographic fronts and eddies, and containing schooling forage species shared by multiple wide-ranging predators. Furthermore, identification of biological hotspots is useful for the designation of marine protected areas most critical to potentially endangered wildlife and fisheries resources.
机译:生态系统海洋学的纪律提供了评估Mescle物理过程对生物热点形成和发生的框架的框架。我们使用船舶调查超过九年来调查南极半岛附近的海鸟热点环境决定因素,该地区经历了快速的气候变化和扩大克里尔渔业。我们假设Seabird热点是由Messcale Ocean条件构成的,反映了海洋和沿海水域内的猎物分布的差异。我们使用广义添加剂模型来量化海鸟热点的功能关系,用克里尔生物量,以及一套遥感环境变量,如涡流能量。空间组织,海鸟热点的强度变化和分布班,表示沿海和海洋域内的不同环境驱动因素,并反映了生态系统的季节变异性。我们的结果表明了至少八个Mescle热点区域,其代表了可能集中显着的磷虾和捕食物生物质的生态重要性领域。我们对海鸟热点的生态系统评估确定了关键的觅食栖息地,并提供了参考点,从而有关估算其对南极生态系统的繁殖影响以及克里尔渔业的潜在影响的研究。我们的方法通常适用于由水文前沿和漩涡构成的其他骨质生态系统,并含有多个宽范围捕食者共享的教育饲料物种。此外,生物热点的识别对于为潜在濒危野生动物和渔业资源的船舶保护区的指定是有用的。

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