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首页> 外文期刊>Hydrobiologia >Chironomid paleo diet as an indicator of past carbon cycle in boreal lakes: Lake Kylmanlampi (Kainuu province; Eastern Finland) as a case study
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Chironomid paleo diet as an indicator of past carbon cycle in boreal lakes: Lake Kylmanlampi (Kainuu province; Eastern Finland) as a case study

机译:依ch河湖(Kinuu)湖湖(Kinuu)湖)作为碳水化合物湖(Kainuu)湖泊湖泊赛季的指标

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摘要

Paleolimnology is a promising approach to reconstruct past carbon cycle in lakes and its response to global changes. Here, we test the potential of the combined use of sedimentary geochemical proxies and delta C-13 analysis of subfossil chironomid (delta C-13(HC)) in a sediment core retrieved from a boreal lake. Characteristics of sedimentary organic matter appeared to be strongly variable over time, corresponding to periodic decreases in aquatic organic matter contribution to lake sediments, and this dynamic was attributable to climatic changes occurring during the late Holocene. Results revealed also that delta C-13(HC) values were lower than those of organic matter, and these differences were greater when lake sediments were depleted in aquatic organic matter. Thus, chironomid feeding behavior seems to be dependent on the organic matter quality, showing a strong affinity for aquatic organic matter even if this resource is not the most available in sediments. Based on this methodological strategy, our results indicate (i) the relatively poor nutritive quality of allochthonous materials for benthic chironomid larvae, (ii) the strong influence of climate variability on the whole lake functioning, and (iii) the high potential of the combined use of this methodology to reconstruct the past carbon cycle in boreal lakes.
机译:古湖沼学是重建过去湖泊碳循环及其对全球变化响应的一种很有前途的方法。在这里,我们测试了沉积地球化学替代物和三角洲C-13分析相结合的潜力,这些分析是从一个北方湖泊中提取的沉积物岩芯中对亚化石摇蚊(三角洲C-13(HC))进行的。沉积有机质的特征似乎随时间变化很大,与湖泊沉积物中水生有机质贡献的周期性减少相对应,这种动态可归因于晚全新世期间发生的气候变化。结果还表明,δC-13(HC)值低于有机质,当湖泊沉积物中的水生有机质耗尽时,这些差异更大。因此,摇蚊的摄食行为似乎取决于有机物的质量,即使这种资源在沉积物中不是最有效的,也表现出对水生有机物的强烈亲和力。基于这一方法策略,我们的结果表明(i)底栖摇蚊幼虫的外来物质营养质量相对较差,(ii)气候变化对整个湖泊功能的强烈影响,以及(iii)联合使用这一方法重建北方湖泊过去碳循环的高潜力。

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