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Evidence of climate-driven ecosystem reorganization in the Gulf of Mexico

机译:墨西哥湾气候驱动的生态系统重组的证据

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The Gulf of Mexico is one of the most ecologically and economically valuable marine ecosystems in the world and is affected by a variety of natural and anthropogenic phenomena including climate, hurricanes, coastal development, agricultural runoff, oil spills, and fishing. These complex and interacting stressors, together with the highly dynamic nature of this ecosystem, present challenges for the effective management of its resources. We analyze a compilation of over 100 indicators representing physical, biological, and economic aspects of the Gulf of Mexico and find that an ecosystem-wide reorganization occurred in the mid-1990s. Further analysis of fishery landings composition data indicates a major shift in the late 1970s coincident with the advent of US national fisheries management policy, as well as significant shifts in the mid-1960s and the mid-1990s. These latter shifts are aligned temporally with changes in a major climate mode in the Atlantic Ocean: the Atlantic Multidecadal Oscillation (AMO). We provide an explanation for how the AMO may drive physical changes in the Gulf of Mexico, thus altering higher-level ecosystem dynamics. The hypotheses presented here should provide focus for further targeted studies, particularly in regard to whether and how management should adjust to different climate regimes or states of nature. Our study highlights the challenges in understanding the effects of climatic drivers against a background of multiple anthropogenic pressures, particularly in a system where these forces interact in complex and nonlinear ways.
机译:墨西哥湾是世界上最具生态和经济价值的海洋生态系统之一,受到各种自然和人为现象的影响,包括气候,飓风,沿海发展,农业径流,漏油和捕鱼。这些复杂且相互作用的压力源,加上该生态系统的高度动态特性,对有效管理其资源提出了挑战。我们分析了代表墨西哥湾的物理,生物和经济方面的100多个指标,发现在1990年代中期发生了整个生态系统的重组。对渔业上岸构成数据的进一步分析表明,与美国国家渔业管理政策的出台相吻合的是,1970年代末发生了重大变化,并且在1960年代中期和1990年代中期出现了重大变化。后者的变化与大西洋主要气候模式的变化在时间上是一致的:大西洋多年代际振荡(AMO)。我们对AMO如何驱动墨西哥湾的自然变化,从而改变高层生态系统动态提供了解释。这里提出的假设应为进一步的针对性研究提供重点,尤其是在管理是否以及如何适应不同的气候制度或自然状态方面。我们的研究突出了在多种人为压力的背景下(尤其是在这些力以复杂且非线性的方式相互作用的系统中)理解气候驱动因素的挑战。

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