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Diatom evidence of 20th century ecosystem change in Lake Baikal Siberia

机译:西伯利亚贝加尔湖20世纪生态系统变化的硅藻证据

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摘要

Lake Baikal has been experiencing limnological changes from recent atmospheric warming since the 1950s, with rising lake water temperatures, reduced ice cover duration and reduced lake surface-water mixing due to stronger thermal stratification. This study uses lake sediment cores to reconstruct recent changes (c. past 20 years) in Lake Baikal’s pelagic diatom communities relative to previous 20th century diatom assemblage records collected in 1993 and 1994 at the same locations in the lake. Recent changes documented within the core-top diatom records agree with predictions of diatom responses to warming at Lake Baikal. Sediments in the south basin of the lake exhibit clear temporal changes, with the most rapid occurring in the 1990’s with shifts towards higher abundances of the cosmopolitan Synedra acus and a decline in endemic species, mainly Cyclotella minuta and Stephanodiscus meyerii and to a lesser extent Aulacoseira baicalensis and Aulacoseira skvortzowii. The north basin, in contrast, shows no evidence of recent diatom response to lake warming despite marked declines in north basin ice cover in recent decades. This study also shows no diatom-inferred evidence of eutrophication from deep water sediments. However, due to the localised impacts seen in areas of Lake Baikal’s shoreline from nutrient pollution derived from inadequate sewage treatment, urgent action is vital to prevent anthropogenic pollution extending into the open waters.
机译:自1950年代以来,贝加尔湖一直经历着气候变化,其原因是最近的大气变暖,由于更强的热分层,湖水温度升高,冰盖持续时间减少以及湖面水混合减少。这项研究利用湖泊沉积物核来重建贝加尔湖中上层硅藻群落的最近变化(约20年),相对于1993年和1994年在该地区相同地点收集的20世纪以前的硅藻组合记录而言。湖。核心-顶部硅藻记录中记录的最新变化与贝加尔湖的硅藻对变暖反应的预测相符。湖南盆地的沉积物表现出明显的时间变化,最迅速的发生在1990年代,随着世界性Synedra acus的丰度增加和地方性物种的减少而减少,主要是小Cyclotella minuta和Stephanodiscus meyerii,而在较小程度上是Aulacoseira黄ical和Aulacoseira skvortzowii。相反,尽管近几十年来北部盆地的冰盖明显减少,但北部盆地没有证据表明硅藻对湖泊变暖的最新反应。这项研究还显示,没有硅藻推断出深水沉积物富营养化的证据。但是,由于对贝加尔湖海岸线地区的污水处理不当造成的养分污染导致局部影响,因此采取紧急行动对于防止人为污染扩散到开放水域至关重要。

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