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首页> 外文期刊>Geomicrobiology journal >Characterization of Thrombolitic Bioherm Cyanobacterial Assemblages in a Meromictic Marl Lake (Fayetteville Green Lake, New York)
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Characterization of Thrombolitic Bioherm Cyanobacterial Assemblages in a Meromictic Marl Lake (Fayetteville Green Lake, New York)

机译:细菌性马尔湖(纽约州费耶特维尔绿湖)中血栓形成的生物hergen蓝细菌集合体的特征

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摘要

The Fayetteville Green Lake is a small (0.258 km~2) meromictic marl lake that is host to a thrombolitic bioherm inhabited by coccoid and filamentous cyanobacteria. To date there has been only limited study of bioherm cyanobacterial community ecology, and none focusing on their molecular diversity. Samples of the bioherm were collected along vertical and spatial transects on a portion of the thrombolite in early fall 2010. Cyanobacterial assemblage spatial variability and operational taxonomic unit composition was analyzed by automated rRNA intergenic spacer analysis (ARISA). A total of 123 cyanobacterial ARISA operational taxonomic units were observed across all fingerprints. Cyanobacterial assemblages were variable across depth and spatial gradients, and may be structured by gradients in light availability and habitat stability. Cyanobacterial community fingerprints were more taxonomic unit rich, diverse, and had greater fingerprint similarity in deeper samples than those at the surface. Several operational taxonomic units were common to all samples taken, while the majority of assemblage components were heterogeneous between transects and depths. Hence, our results suggest that cyanobacterial communities on the thrombolite in Green Lake represent a mixture of taxa that are selected for by prevailing physicochemical conditions, while other taxa are selected for on spatial scales of meters and may represent more specialized cyanobacteria on the thrombolite. Moreover, our data suggest that the depth-dependent structure of bioherm cyanobacterial assemblages may be a consequence of habitat conditions, which may include light intensity and quality, temperature variation and habitat stability.
机译:费耶特维尔绿湖是一个小型(0.258 km〜2)的淡铬沼泽湖,是一个由球状和丝状蓝细菌居住的血栓性生物群落的宿主。迄今为止,对生物群落蓝细菌群落生态学的研究还很有限,而没有一个研究关注其分子多样性。沿垂直和空间断面在2010年秋初的一部分凝块上收集了生物群落的样品。通过自动rRNA基因间隔子分析(ARISA)分析了蓝藻菌群的空间变异性和操作分类单位组成。在所有指纹中共观察到123个蓝细菌ARISA操作分类单位。蓝藻的组合在深度和空间梯度上是可变的,并且可以由光利用率和栖息地稳定性的梯度构成。蓝细菌群落指纹比分类学单元更丰富,多样,并且在较深的样本中比在表面的样本具有更大的指纹相似性。几个可操作的分类单位对所有采样都是通用的,而大多数组合成分在样线和深度之间是异类的。因此,我们的研究结果表明,绿湖中的凝块石上的蓝细菌群落代表了通过主要物理化学条件选择的分类单元的混合物,而其他分类单元则是根据米的空间尺度选择的,并且可能代表了凝块石上更专门的蓝细菌。此外,我们的数据表明生物hermo蓝细菌集合体的深度依赖性结构可能是栖息地条件的结果,其中可能包括光强度和质量,温度变化和栖息地稳定性。

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