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Heterogeneous response of diatom assemblages since ca. 1945 in lakes from boreal regions of northern Alberta and Saskatchewan, Canada

机译:自加利夫以来硅藻综合组件的异质反应。 1945年,来自艾伯塔北部的北部地区和加拿大萨斯喀彻温省的湖泊

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The degree to which climate variability and anthropogenic stressors have impacted the rich array of boreal lakes in northern Saskatchewan and Alberta was explored in a dataset of 42 lakes from previous paleolimnological investigations of this region. This dataset was used to evaluate the extent of change in diatom assemblages over the past ~ 60 to 70 years in relation to lake and watershed characteristics. Similarity analysis was used to define the degree of change in diatom composition in lake sediment cores from each lake with a focus on post ca. 1945 changes to establish a common time frame to compare across all lakes. This time frame incorporates pre- and post-development of the Athabasca Oil Sands Region and additionally integrates pre- and post-periods of distinct changes in temperature and precipitation. Beta regression analysis was used to identify potential links between diatom assemblage change and lake physical-chemical and landscape characteristics (limnoandlandscapemodels, respectively). Similarity analysis indicated nearly 80% of the lakes showed only a very low degree of change (0-25%) since ca. 1945. Lakes with larger percent change in similarity (> 25%) showed increases in planktonic diatoms, although the specific taxa that changed varied from oligotrophicDiscostellaspp.to meso-eutrophic taxa, such asAsterionella formosaandStephanodiscus minutulus. Lake volume and percent peat in the catchment were the most importantlimnoandlandscapeexplanatory variables, respectively, albeit the models had low predictive power. The lakes with large diatom compositional change were dispersed across the region, located in various geological and ecological zones and varying degrees of human disturbance. The interplay of climate and morphometric features of lakes is likely an influential driver of these changes, with larger heat-storage capacity in higher-volume lakes that potentially increases the sensitivity to warming. The small surface areas and shallow morphometry of most lakes, a heterogeneous hydrological and geological landscape, and frequent dominance of diatom assemblages by benthic generalists may explain the minimal responses of diatom assemblages over the past ~ 70 years to anthropogenic influences and climate.
机译:气候变异性和人为压力源影响萨斯喀彻温省北部北部的丰富北部北部湖泊的程度在42个湖泊的42个湖泊中探讨了该地区的42个湖泊的数据集。该数据集用于评估与湖泊和流域特征的过去〜60至70年的硅藻综合组合的变化程度。相似性分析用于从每个湖泊的湖泊沉积物核心中的硅藻组合物中的变化程度定义,重点在CA上。 1945年改变以建立一个常见的时间框架来跨所有湖泊比较。该时间框架包含了Athabasca油砂区域的前后开发,并另外整合了温度和沉淀的不同变化的预先和后期。 β回归分析用于识别硅藻综合变化和湖泊物理化学和景观特征(分别的湖泊物理化学和景观特征之间的潜在环节。相似性分析表明近80%的湖泊仅为自加利福以来的变化(0-25%)。 1945年的相似性变化较大的湖泊(> 25%)表现出浮游硅藻的增加,尽管发生了从Oligotrophicdiscostellasppp的特定分类群而变化。至于eeso-Eutrophic Taxa,如雌激素蛋白酶蛋白酶蛋白酶蛋白质群体minulus。集水区的湖泊数量和泥炭百分比是最重要的是最重要的,最重要的是,虽然模型具有较低的预测力。具有大硅藻组成变化的湖泊分散在地区各种地质和生态区域,以及不同程度的人体扰动。湖泊的气候和形态学特征的相互作用可能是这些变化的有影响力的驱动因素,具有较大的储蓄容量,较大的湖泊潜在地增加了对升温的敏感性。大多数湖泊的小表面积和浅形态学,异质水文和地质景观以及底栖通道的硅藻组合的频繁主导地位可以解释过去〜70年的硅藻组合的最小反应,以对人为影响和气候。

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