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Diatom ecological response to deposition of the 833-850 CE White River Ash (east lobe) ashfall in a small subarctic Canadian lake

机译:硅藻对加拿大小亚北极湖中833-850 CE白河灰(东部叶)灰渣沉积的生态响应

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摘要

A <5 mm thick volcanic ashfall layer associated with the White River Ash (east lobe [WRAe]) originating from the eruption of Mount Churchill, Alaska (833-850 CE; 1,117–1,100 cal BP) was observed in two freeze cores obtained from Pocket Lake (62.5090°N, −114.3719°W), a small subarctic lake located within the city limits of Yellowknife, Northwest Territories, Canada. Here we analyze changes in diatom assemblages to assess impact of tephra deposition on the aquatic biota of a subarctic lake. In a well-dated core constrained by 8 radiocarbon dates, diatom counts were carried out at 1-mm intervals through an interval spanning  1 cm above and below the tephra layer with each 1 mm sub-sample represented about 2 years of deposition. Non-metric Multidimensional Scaling (NMDS) and Stratigraphically Constrained Incremental Sum of Squares (CONISS) analyses were carried out and three distinct diatom assemblages were identified throughout the interval. The lowermost “Pre-WRAe Assemblage (Pre-WRAeA)” was indicative of slightly acidic and eutrophic lacustrine conditions. Winter deposition of the tephra layer drove a subsequent diatom flora shift to the “WRAe Assemblage (WRAeA)” the following spring. The WRAeA contained elevated abundances of taxa associated with oligotrophic, nutrient depleted and slightly more alkaline lake waters. These changes were only apparent in samples within the WRAe containing interval indicating that they were short lived and only sustained for a single year of deposition. Immediately above the WRAe horizon, a third, “Post-WRAe Assemblage (Post-WRAeA)” was observed. This assemblage was initially similar to that of the Pre-WRAeA but gradually became more distinct upwards, likely due to climatic patterns independent of the WRAe event. These results suggest that lacustrine environments are sensitive to perturbations such as deposition of ash fall, but that ecological communities in subarctic systems can also have high resilience and can recover rapidly. If subsampling of the freeze cores was carried out at a more standard resolution (0.5–1 cm) these subtle diatom ecological responses to perturbation associated with the WRAe depositional event would not have been observed. This research illustrates the importance of high-resolution subsampling when studying the environmental impact of geologically “near instantaneous” events such as episodic deposition of ashfalls.
机译:在两个冰冻岩心中观察到与阿拉斯加的丘吉尔火山喷发(833-850 CE; 1117-1,100 cal BP)有关的白河灰(东部叶[WRAe])相关的小于5毫米厚的火山灰沉积层。口袋湖(62.5090°N,−114.3719°W),小型的亚北极湖,位于加拿大西北地区耶洛奈夫市范围内。在这里,我们分析了硅藻组合的变化,以评估特弗拉沉积对北极湖水生生物群的影响。在一个由8个放射性碳数据约束的,日期良好的岩心中,硅藻计数以1-mm的间隔进行,穿过提弗拉层上方和下方1 cm的间隔,每个1 mm的子样品代表约2年的沉积时间。进行了非度量多维比例缩放(NMDS)和地层约束平方和增量(CONISS)分析,并在整个时间间隔内确定了三个不同的硅藻组件。最下面的“ WRAe前组合(Pre-WRAeA)”指示微酸性和富营养的湖相状况。特弗拉层的冬季沉积导致随后的硅藻随后的春季转移到“ WRAe组合(WRAeA)”。 WRAeA含有丰富的类群,与贫营养,营养物质枯竭和碱性稍强的湖水有关。这些变化仅在包含WRAe的间隔内的样本中明显,表明它们寿命短并且仅持续一年的沉积。在WRAe地平线正上方,观察到第三个“ WRAe大会(Post-WRAeA)”。这种组合最初与WRAeA之前的相似,但逐渐向上变得更加明显,这可能是由于与WRAe事件无关的气候模式。这些结果表明,湖床环境对诸如落灰沉积等扰动非常敏感,但亚弧系统中的生态群落也可以具有较高的复原力并可以快速恢复。如果以更标准的分辨率(0.5-1 cm)对冰冻岩心进行二次采样,则将不会观察到这些细微的硅藻对WRAe沉积事件引起的扰动的生态反应。这项研究表明,在研究地质上“近乎瞬时”事件(如火山灰的间歇沉积)的环境影响时,高分辨率二次采样的重要性。

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