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Photosynthetic characteristics and diversity of freshwater Synechococcus at two depths during different mixing conditions in a deep oligotrophic lake

机译:深营养盐湖不同混合条件下两种深度淡水合成球菌的光合特性和多样性

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We studied the photosynthetic characteristics and genetic diversity of Synechococcus assemblages at two different light and mixing conditions in a deep oligotrophic lake (Lake Maggiore, Northern Italy). Sampling was performed at the beginning of summer stratification, when the base of the photic zone was isolated by the presence of a shallower thermocline, and during late summer, when the mixing layer extended below the photic zone. Two depths were sampled (15 % and 1 % of surface PAR). To study the diversity of Synechococcus, we used a classical molecular fingerprinting technique (Denaturing Gradient Gel Electrophoresis, DGGE) with ambient samples and sequencing of the prominent bands. The ecotypes selected within the samples from different depths were different in photosynthetic characteristics and grew in a range of nutrient concentrations. The OTUs colonizing different niches in the water column did not show any significant clustering. However, the OTU richness was significantly different at the two depths in spring, reaching the highest values at 15 % of surface PAR. Cluster analysis of DGGE lanes provided evidence of different community compositions between spring and late summer. Sequencing of the most prominent bands showed one spring OTU affiliated to the Synechococcus subalpine cluster I, with 100% similarity to LM94, MW76B2 and MW15#2 (sensu Crosbie et al. 2003a), not present in late summer. Another OTU present both in spring and late summer showed 100% similarity to MH301, a strain near to subalpine cluster II. Our results support the coexistence of ecotypes in the vertical gradients, rapidly acclimating and performing differently in the microhabitats.
机译:我们研究了深营养化湖泊(意大利北部马焦雷湖)在两种不同的光照和混合条件下Syechococcus组合的光合特性和遗传多样性。在夏季分层开始时进行采样,这时光层的底部被较浅的温跃层分开,而夏末时,混合层延伸到光层以下。采样了两个深度(表面PAR的15%和1%)。为了研究Syechococcus的多样性,我们使用了经典的分子指纹技术(变性梯度凝胶电泳,DGGE)对环境样品进行检测,并对显着条带进行测序。在样品中从不同深度选择的生态型的光合特性不同,并且在一定范围的养分浓度下生长。在水柱中定居不同壁ni的OTU没有显示任何明显的聚类。但是,在春季的两个深度处,OTU的丰富度显着不同,在表面PAR的15%处达到最高值。 DGGE车道的聚类分析提供了春季至夏末期间不同群落组成的证据。最突出的条带测序显示一个春季OTU隶属于亚高山冰球菌群I,与LM94,MW76B2和MW15#2(sensu Crosbie等人2003a)具有100%的相似性,但夏末没有出现。春季和夏季末出现的另一种OTU与MH301(一种接近亚高山群II的菌株)表现出100%的相似性。我们的结果支持垂直梯度中生态型的共存,在微生境中迅速适应并表现出不同。

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