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Subfossil chironomid assemblages in deep, stratified European lakes: relationships with temperature, trophic state and oxygen

机译:在深层的欧洲湖泊中的亚化石基虫组合:与温度,营养状态和氧气的关系

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P>1. The distributions of subfossil remains of chironomid larvae in 28 large, deep and stratified lakes in Europe were examined in surface sediments along a latitudinal transect ranging from northern Sweden to southern Italy.2. Canonical correspondence analysis (CCA) showed that summer surface water and July air temperature, as well as total phosphorus (TP) concentrations, hypolimnetic oxygen availability and conductivity were statistically significant (P < 0.05) explanatory variables explaining between 11 and 14% of the variance in the chironomid data.3. Owing to the spatial scale covered by our study, many environmental variables were covarying. Temperature, TP concentration and oxygen availability were positively or negatively correlated with the first axis of a detrended correspondence analysis (DCA) of chironomid assemblages, suggesting that climatic and trophic conditions influenced profundal chironomid assemblages either in a direct (food and oxygen) or in an indirect (temperature) way. Parameters related to local environmental conditions, lake morphology and bedrock geology, such as organic matter content of the sediment, maximum lake depth, Secchi depth and pH, were not significant in explaining the distribution of chironomid assemblages in our study lakes.4. The strong relationship between chironomid assemblages and summer temperature may be related to the covariation of temperature with parameters, such as nutrient and oxygen availability, known to affect chironomid assemblages in deep, stratified lakes. However, summer temperature explained a statistically significant proportion of the variance in the chironomid assemblages even when effects of oxygen availability and TP concentrations were partialled out. This suggests that summer temperature has an effect on chironomid assemblages in deep lakes, which is not related to its covariation with trophic state.5. The potential of fossil chironomid analysis for quantitatively reconstructing past nutrient conditions in deep, stratified lakes was examined by calculating the Benthic Quality Index (BQI) based on subfossil chironomids and by comparing BQI values with observed TP concentrations. BQI was linearly related to log-transformed TP. Applying this relationship to fossil chironomid assemblages from Lake Paijanne (Finland) produced a TP reconstruction in agreement with measured TP during the period 1970-1990, demonstrating that this approach can provide quantitative estimates of past nutrient concentrations in deep, stratified lakes.
机译:P> 1。研究了从欧洲北部到意大利南部的一个纬度横断面的地表沉积物中欧洲28个大型,深层和分层湖泊中的奇虫幼虫的亚化石残留分布。2。典型对应分析(CCA)表明,夏季的地表水和7月的气温,总磷(TP)浓度,低氧氧气的利用率和电导率具有统计学意义(P <0.05),解释变量解释了11%至14%的方差在Chironomid数据中3。由于我们的研究覆盖的空间规模,许多环境变量是变化的。温度,TP浓度和氧气的可用性与手性动物组合的去趋势对应分析(DCA)的第一轴成正相关或负相关,表明气候和营养条件影响了直接的(食物和氧气)或生物体内的基性人性动物组合。间接(温度)方式。与当地环境条件,湖泊形态和基岩地质有关的参数,如沉积物中的有机物含量,最大湖泊深度,塞基深度和pH值等,对解释我们研究湖泊中的奇虫组分布没有重要意义。4。手足类动物组合与夏季温度之间的密切关系可能与温度与营养素和氧气供应等参数的协变有关,已知这些参数会影响深层湖中的手足类动物组合。然而,即使部分分配了氧气和TP浓度的影响,夏季温度也解释了手足动物组合中统计学上显着比例的变化。这表明夏季温度对深水湖泊中的虫体组合有影响,与其与营养状态的协变无关。5。通过基于亚化石化学计量表的底质质量指数(BQI)并通过将BQI值与观测到的TP浓度进行比较,研究了化石化学计量分析在定量地重建深层湖泊中过去养分状况方面的潜力。 BQI与对数转换的TP线性相关。将这种关系应用于来自Paijanne湖(芬兰)的化石Chironomid组合,进行了TP重建,并与1970-1990年期间测得的TP一致,这表明该方法可以提供对深层湖中过去养分浓度的定量估计。

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