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Sudden and gradual responses of phytoplankton to global climate change: case studies from two large, shallow lakes (Balaton, Hungary and the Neusiedlersee Austria/Hungary)

机译:浮游植物对全球气候变化的突然和渐进响应:来自两个大型浅湖(巴拉顿,匈牙利和新锡德勒湖奥地利/匈牙利)的案例研究

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摘要

This paper analyses two phytoplankton long-term datasets; both are from large, temperate shallow lakes. The main difference between them is that phytoplankton growth in Lake Balaton remained severely P-limited despite P-driven eutrophication during the last 30 years, whereas extremely high turbidity causes a permanent light limitation in Neusiedlersee and therefore an increase in P-loadings did not result in a similar increase in phytoplankton biomass. Neusiedlersee is a (slightly) saline inland lake. In Lake Balaton, the blue-green alga Cylindrospermopsis raciborskii blooms invariably if the July-august temperature deviates positively from a 30-year average by ca. 2 °C. A supposed global warming is predicted to cause a higher frequency (but not intensity!) of these blooms. Neusiedlersee is very shallow and therefore regulation techniques cannot prevent water levels sinking in successive dry years. Annual averages of phytoplankton seem to follow quite a regular, wave-like cyclicity. Such cycles can be recognised in the population records of the characteristic species. Similar changes were seen in changes of water level, conductivity, inorganic-P, inorganic N-forms and nutrient ratios. How phytoplankton species can follow a climatic cycle that covers 200 to 500 generations has not yet become clear. Because of reasons discussed in the paper, neither of the two cases can be generalised; each is quite individual.
机译:本文分析了两个浮游植物长期数据集;两者均来自温带的大浅湖。它们之间的主要区别在于,尽管过去30年内磷驱动富营养化,但巴拉顿湖的浮游植物生长仍然严重受磷限制,而浊度极高导致新锡德勒湖永久性光限制,因此磷载量并未增加浮游植物生物量的增加类似。 Neusiedlersee是一个(稍微)盐渍的内陆湖。在巴拉顿湖,如果七月至八月的温度与30年的平均水平相比出现正偏差,大约会造成蓝藻藻类无休止地开花。 2℃。据推测,假定的全球变暖将导致这些水华的发生频率更高(但强度不大!)。 Neusiedlersee非常浅,因此调节技术无法防止连续干旱年份的水位下沉。浮游植物的年平均值似乎遵循相当规则的波浪状周期性。这样的周期可以在特征物种的种群记录中识别。在水位,电导率,无机磷,无机氮形态和养分比的变化中也观察到类似的变化。浮游植物如何才能适应200到500代的气候周期,目前还不清楚。由于本文讨论的原因,两种情况都不能一概而论。每个人都很个人。

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    Padisák Judit;

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  • 年度 1998
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