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首页> 外文期刊>Limnologica >Lake morphometry and wind exposure may shape the plankton community structure in acidic mining lakes
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Lake morphometry and wind exposure may shape the plankton community structure in acidic mining lakes

机译:湖泊形态和风向可能会影响酸性采矿湖中浮游生物的群落结构

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摘要

Acidic mining lakes (pH o3) are specific habitats exhibiting particular chemical and biological characteristics. The species richness is low and mixotrophy and omnivory are common features of the plankton food web in such lakes. The plankton community structure of mining lakes of different morphometry and mixing type but similar chemical characteristics (Lake 130, Germany and Lake Langau, Austria) was investigated. The focus was laid on the species composition, the trophic relationship between the phago-mixotrophic flagellate Ochromonas sp. and bacteria and the formation of a deep chlorophyll maximum along a vertical pH-gradient. The shallow wind-exposed Lake 130 exhibited a higher species richness than Lake Langau. This increase in species richness was made up mainly by mero-planktic species, suggesting a strong benthic/littoral – pelagic coupling. Based on the field data from both lakes, a nonlinear, negative relation between bacteria and Ochromonas biomass was found, suggesting that at an Ochromonas biomass below 50 mg C L1, the grazing pressure on bacteria is low and with increasing Ochromonas biomass bacteria decline. Furthermore, in Lake Langau, a prominent deep chlorophyll maximum was found with chlorophyll concentrations ca. 50 times higher than in the epilimnion which was build up by the euglenophyte Lepocinclis sp. We conclude that lake morphometry, and specific abiotic characteristics such as mixing behaviour influence the community structure in these mining lakes.
机译:酸性采矿湖(pH o3)是具有特定化学和生物特征的特定生境。物种丰富度低,混合营养和杂食性是这类湖泊中浮游生物食物网的常见特征。研究了形态和混合类型不同但化学特征相似的采矿湖(德国的130湖和奥地利的兰高湖)的浮游生物群落结构。重点放在物种组成,吞噬-混合营养鞭毛Ochromonas sp。之间的营养关系。细菌和沿着垂直pH梯度形成的最大叶绿素最大值。浅风暴露的湖泊130的物种丰富度高于兰高湖。物种丰富度的增加主要是由中浮游植物组成的,这表明底栖/沿海-中上层之间的耦合很强。根据两个湖泊的实地数据,发现细菌与色藻生物量之间存在非线性负相关关系,这表明在低于50 mg C L1的色藻生物量下,对细菌的放牧压力较低,并且随着色藻生物量细菌的增加而下降。此外,在Langau湖中,发现叶绿素浓度约为ca。比由裸藻植物Lepocinclis sp。积累的Epilimnion高50倍。我们得出的结论是,湖泊形态和特定的非生物特征(如混合行为)会影响这些采矿湖的群落结构。

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