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Energetic and Environmental Constraints on the Community Structure of Benthic Microbial Mats in Lake Fryxell Antarctica

机译:南极弗莱克塞尔湖底栖微生物垫群落结构的能量和环境约束

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摘要

Ecological communities are regulated by the flow of energy through environments. Energy flow is typically limited by access to photosynthetically active radiation (PAR) and oxygen concentration (O ). The microbial mats growing on the bottom of Lake Fryxell, Antarctica, have well-defined environmental gradients in PAR and (O ). We analyzed the metagenomes of layers from these microbial mats to test the extent to which access to oxygen and light controls community structure. We found variation in the diversity and relative abundances of Archaea, Bacteria and Eukaryotes across three (O ) and PAR conditions: high (O ) and maximum PAR, variable (O ) with lower maximum PAR, and low (O ) and maximum PAR. We found distinct communities structured by the optimization of energy use on a millimeter-scale across these conditions. In mat layers where (O was saturated, PAR structured the community. In contrast, (O ) positively correlated with diversity and affected the distribution of dominant populations across the three habitats, suggesting that meter-scale diversity is structured by energy availability. Microbial communities changed across covarying gradients of PAR and (O ). The comprehensive metagenomic analysis suggests that the benthic microbial communities in Lake Fryxell are structured by energy flow across both meter- and millimeter-scales.
机译:生态社区受到环境中能量流的调节。能量流通常受光合作用辐射(PAR)和氧浓度(O)的限制。生长在南极弗雷克斯湖底部的微生物垫在PAR和(O)中具有明确的环境梯度。我们分析了来自这些微生物垫的各层的元基因组,以测试接触氧气和光照控制社区结构的程度。我们发现三种(O)和PAR条件下古细菌,细菌和真核生物的多样性和相对丰度存在差异:高(O)和最大PAR,可变(O)且最大PAR较低,而低(O)和最大PAR。在这些条件下,我们发现了由毫米级能源使用优化构成的独特社区。在(O饱和)的垫层中,PAR构成了群落。相反,(O)与多样性呈正相关,并影响了三个生境中优势种群的分布,这表明米尺度的多样性是由能量可利用性构成的。综合的宏基因组学分析表明,Fryxell湖底栖微生物群落是由跨米和毫米级的能量流构成的。

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