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首页> 外文期刊>Hydrobiologia >Nitrogen subsidies in glacial meltwaters have altered planktonic diatom communities in lakes of the US Rocky Mountains for at least a century
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Nitrogen subsidies in glacial meltwaters have altered planktonic diatom communities in lakes of the US Rocky Mountains for at least a century

机译:冰川融化器中的氮补贴已经改变了美国洛基山脉的浮游硅藻群,至少一个世纪

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We examined sedimentary diatom profiles from alpine lakes in the US Rocky Mountains to assess when glacially fed lakes started receiving nitrogen subsidies and whether that timing varies across regions. We focused on lake sediment cores from Glacier National Park and compared them to previously published work from the Greater Yellowstone Ecosystem. The only contemporary feature of these glacially fed lakes that differs from snowmelt-fed lakes is nitrate concentration, with glacially fed lakes having about 40 times higher nitrogen than snow-fed lakes; lake thermal structure and temperatures do not differ between lake types. Increases in Asterionella formosa, a strong indicator of nitrogen enrichment, occurred much earlier in glacially fed compared to snow-fed lakes across both regions. Responses to nitrogen enrichment in glacially fed lakes started at least a century ago, and in some cases, many centuries ago, whereas they occurred after 1970 in the snow-fed lakes. Furthermore, diatom assemblages in glacially fed lakes showed declines in species richness over time and greater community turnover compared to snow-fed lakes. Multiple lines of evidence indicate that throughout the late Holocene glacially fed lakes in both regions of the Rocky Mountains have followed different ecological trajectories than snow-fed lakes as a result of increasing nitrogen concentrations.
机译:我们检查了美国落基山脉的高山湖泊中的沉积硅藻型材,以评估冰川喂养湖泊开始接受氮气补贴以及该时间是否遍历地区。我们专注于冰川国家公园的湖沉积物核心,并将其与以前从黄石生态系统出版的工作。这些冰冷的湖泊的唯一当代特征与雪花喂养的湖泊不同的是硝酸盐浓度,玻璃喂养湖泊具有约40倍的氮比牛皮湖泊;湖泊类型之间的热结构和温度不均匀。与跨越两个地区的雪喂湖相比,Asterionella Formosa的增加,氮浓缩的强烈指标发生得多,在玻璃喂湖相比,玻璃喂养相比。在冰川喂养的湖泊中对氮气浓缩的反应始于一个世纪前,在某些情况下,许多世纪以前,而他们在1970年发生在雪料湖之后。此外,与雪喂湖相比,冰川喂养湖泊中的硅藻汇总显示出物种丰富度随着时间的推移和更大的社区营业额而下降。多条证据表明,由于氮浓度增加,整个岩石山区两世地区的全新世冰川喂养湖泊遵循不同的生态轨迹。

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