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Picoplankton structure in clear and turbid eutrophic shallow lakes: A seasonal study

机译:清澈浑浊的富营养化浅湖中的浮游生物结构:季节性研究

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The relative abundance of the different picoplankton components (eukaryotic picophytoplankton (Peuk), picocyanobacteria (Pcy) and bacterioplankton), and their relationships with the lake conditions were studied in three types of shallow lakes from the Pampa Plain (Argentina) that differ in their optical properties: clear-vegetated, phytoplankton-turbid and inorganic-turbid. All the selected lakes, but one, are characterized by their different alternative steady state (clear-vegetated and phytoplankton-turbid water phases) following the model proposed by Scheffer et al. (1993).Autotrophic and heterotrophic picoplankton abundances were analyzed seasonally in relation to environmental variables. All the lakes presented high concentrations of total nitrogen (TN) (>229μgL~(-1)), total phosphorus (TP) (>46μgL~(-1)) and dissolved organic carbon (DOC) (>13.7mgL~(-1)). Clear-vegetated lakes were characterized by vertical diffuse PAR (photosynthetic active radiation) attenuation coefficient (kdPAR) lower than 11m~(-1), whereas inorganic-turbid lake always showed values higher than 21.1m~(-1). The euphotic zone depth (Z_(1%)) was wider in clear-vegetated lakes (40-140cm) and thinner in the inorganic-turbid (10-20cm). The phytoplankton-turbid lakes presented a wide range in the values of these variables (kd_(PAR): 5.2-35.8m~(-1); Z_(1%): 10-90cm). Phytoplankton chlorophyll-a (Chl-a) strongly differed, ranging from 1.6 to 334.6μgL~(-1). Picophytoplankton was mainly represented by phycocianine-rich (PC-rich) Pcy in all cases, dominating over Peuk algae. The total and relative abundances of eukaryotic picophytoplankton, Pcy and bacterioplankton, as well as the size structure of the phytoplankton community differed among the water bodies. In general, clear-vegetated water bodies exhibited similar abiotic characteristics, picophytoplankton/bacterioplankton ratios, and phytoplankton size structure. Contrarily, no clear trend was identified for the group of turbid lakes. The contrasting results obtained for the importance of the picoplankton components in phytoplankton-turbid shallow lakes evidence that the availability of the energetical and nutrient resources cannot be solely considered to predict their relative importance in this type of shallow lake.
机译:在来自潘帕平原(阿根廷)的三种类型的浅水湖泊中,研究了不同的微微浮游生物成分(真核微微浮游生物(Peuk),微微蓝藻细菌(Pcy)和浮游细菌)的相对丰度及其与湖泊条件的关系。性质:植被清晰,浮游植物混浊和无机混浊。遵循Scheffer等人提出的模型,所有选定的湖泊(只有一个)的特征是它们具有不同的替代稳态(清澈的植被和浮游植物-浑浊的水相)。 (1993)。按季节分析与环境变量有关的自养微藻和异养微微浮游生物的丰度。所有湖泊都表现出高浓度的总氮(TN)(>229μgL〜(-1)),总磷(TP)(>46μgL〜(-1))和溶解性有机碳(DOC)(> 13.7mgL〜(- 1))。植被纯净的湖泊的特征是垂直漫射PAR(光合有效辐射)衰减系数(kdPAR)低于11m〜(-1),而无机浑浊的湖泊总是表现出高于21.1m〜(-1)的值。在无植被的湖泊中,常绿区深度(Z_(1%))较宽(40-140cm),而在无机混浊的湖泊中则较薄(10-20cm)。浮游植物浑浊的湖泊在这些变量的数值上表现出很大的范围(kd_(PAR):5.2-35.8m〜(-1); Z_(1%):10-90cm)。浮游植物叶绿素-a(Chl-a)差异很大,范围从1.6到334.6μgL〜(-1)。在所有情况下,浮游植物主要以富含藻蓝蛋白(富含PC)的Pcy为代表,并以白藻为主。在水体之间,真核微微浮游植物,Pcy和浮游细菌的总和相对丰度以及浮游植物群落的大小结构都不同。通常,植被干净的水体表现出相似的非生物特征,浮游植物/浮游细菌比率和浮游植物大小结构。相反,对于浑浊的湖泊,没有发现明显的趋势。在浮游生物混浊的浅水湖泊中,浮游生物组成部分的重要性所获得的对比结果表明,不能单独考虑能量和营养资源的可用性来预测它们在这类浅水湖泊中的相对重要性。

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