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Variable El Nino-Southern Oscillation influence on biofacies dynamics of eastern Pacific shallow-water carbonate systems

机译:厄尔尼诺-南方涛动的变化对东太平洋浅水碳酸盐岩系统生物相动力学的影响

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The El Nino-Southern Oscillation (ENSO) is a periodic climatic and oceanic event caused by sea-surface temperature and nutrient anomalies over the eastern tropical Pacific Ocean (ETP). Recurring ENSO events have a significant impact on climate and the ecosystems of the circum-Pacific region. In the marine realm, ENSO is known for altering temperature and nutrient patterns, affecting the pelagic food chain, and causing widespread bleaching of corals due to temperature stress. The potential impacts of ENSO on shallow benthic ecosystems as a whole, however, are poorly understood. Here, we compared biogenic sedimentary facies of ETP shallow-water carbonate systems in a strongly ENSO-influenced area (Galapagos Islands, Ecuador [GAL]) with similar systems in an area less strongly influenced by ENSO (Gulf of California, Mexico [GOC]). Carbonate assemblages in both study regions range from coral-algal-dominated (photozoan) to molluscan-dominated (heterozoan) assemblages. Linear statistical models, comparing the distribution of carbonates against prominent local oceanographic parameters, show that minimum chlorophyll-a and maximum sea-surface temperature (which are both strongly influenced by ENSO) are dominant drivers shaping carbonate sediment facies in the GAL. In contrast, GOC carbonates have a distinct mean chlorophyll-a signature that is the result of an upwelling-induced north-south nutrient gradient not significantly influenced by ENSO.
机译:El Nino-Southern Oscillation(ENSO)是由东部热带太平洋(ETP)上的海表温度和营养异常引起的周期性气候和海洋事件。 ENSO反复发生的事件对环太平洋地区的气候和生态系统有重大影响。在海洋领域,ENSO以改变温度和营养模式,影响中上层食物链以及由于温度胁迫导致珊瑚大面积漂白而闻名。然而,人们对ENSO对整个浅层底栖生态系统的潜在影响知之甚少。在这里,我们比较了在ENSO受强烈影响的地区(厄瓜多尔加拉帕戈斯群岛[GAL])中ETP浅水碳酸盐系统的生物沉积相与在ENSO影响较小的地区(加利福尼亚湾,墨西哥[GOC])中的类似系统)。在两个研究区域中,碳酸盐组合的范围从珊瑚藻为主的(光生动物)到软体动物为主的(杂居动物)。线性统计模型将碳酸盐的分布与主要的局部海洋学参数进行了比较,结果表明,最低的叶绿素a和最高的海面温度(都受到ENSO的强烈影响)是影响GAL中碳酸盐沉积相的主要驱动力。相比之下,GOC碳酸盐具有明显的平均叶绿素-签名,这是上升流引起的南北营养梯度不受ENSO影响的结果。

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