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Multi-Scale Sampling to Evaluate Assemblage Dynamics in an Oceanic Marine Reserve

机译:多尺度抽样评估海洋保护区的组合动力学

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摘要

To resolve the capacity of Marine Protected Areas (MPA) to enhance fish productivity it is first necessary to understand how environmental conditions affect the distribution and abundance of fishes independent of potential reserve effects. Baseline fish production was examined from 2002–2004 through ichthyoplankton sampling in a large (10,878 km2) Southern Californian oceanic marine reserve, the Cowcod Conservation Area (CCA) that was established in 2001, and the Southern California Bight as a whole (238,000 km2 CalCOFI sampling domain). The CCA assemblage changed through time as the importance of oceanic-pelagic species decreased between 2002 (La Niña) and 2003 (El Niño) and then increased in 2004 (El Niño), while oceanic species and rockfishes displayed the opposite pattern. By contrast, the CalCOFI assemblage was relatively stable through time. Depth, temperature, and zooplankton explained more of the variability in assemblage structure at the CalCOFI scale than they did at the CCA scale. CalCOFI sampling revealed that oceanic species impinged upon the CCA between 2002 and 2003 in association with warmer offshore waters, thus explaining the increased influence of these species in the CCA during the El Nino years. Multi-scale, spatially explicit sampling and analysis was necessary to interpret assemblage dynamics in the CCA and likely will be needed to evaluate other focal oceanic marine reserves throughout the world.
机译:为了解决海洋保护区(MPA)提高鱼类生产力的能力,首先必须了解环境条件如何影响鱼类的分布和丰度,而不受潜在的保护作用的影响。在2002年至2004年期间,通过在南加州的大型海洋保护区(10,878 km 2 ),2001年建立的考科德保护区(CCA)和南加州的浮游生物采样中检查了基准鱼类产量总体而言是弯曲的(238,000 km 2 CalCOFI采样域)。 CCA组合随时间变化,因为海洋-远洋物种的重要性在2002年(拉尼娜)至2003年(厄尔尼诺)之间下降,然后在2004年(厄尔尼诺)上升,而海洋物种和石鱼则呈现相反的格局。相反,随着时间的推移,CalCOFI组件相对稳定。深度,温度和浮游动物比在CCA尺度上解释了更多的CalCOFI尺度组合结构变异性。 CalCOFI采样显示,在2002年至2003年之间,海洋物种与温暖的近海水一起撞击了CCA,从而解释了这些物种在厄尔尼诺时代期间对CCA的影响增加。多尺度,空间明确的采样和分析对于解释CCA中的组合动力学是必要的,并且可能需要评估全球其他重点海洋保护区。

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