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Metagenomic Insights into the Evolution Function and Complexity of the Planktonic Microbial Community of Lake Lanier a Temperate Freshwater Ecosystem

机译:对温带淡水生态系统拉尼尔湖浮游微生物群落的进化功能和复杂性的元基因组学见解。

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摘要

Lake Lanier is an important freshwater lake for the southeast United States, as it represents the main source of drinking water for the Atlanta metropolitan area and is popular for recreational activities. Temperate freshwater lakes such as Lake Lanier are underrepresented among the growing number of environmental metagenomic data sets, and little is known about how functional gene content in freshwater communities relates to that of other ecosystems. To better characterize the gene content and variability of this freshwater planktonic microbial community, we sequenced several samples obtained around a strong summer storm event and during the fall water mixing using a random whole-genome shotgun (WGS) approach. Comparative metagenomics revealed that the gene content was relatively stable over time and more related to that of another freshwater lake and the surface ocean than to soil. However, the phylogenetic diversity of Lake Lanier communities was distinct from that of soil and marine communities. We identified several important genomic adaptations that account for these findings, such as the use of potassium (as opposed to sodium) osmoregulators by freshwater organisms and differences in the community average genome size. We show that the lake community is predominantly composed of sequence-discrete populations and describe a simple method to assess community complexity based on population richness and evenness and to determine the sequencing effort required to cover diversity in a sample. This study provides the first comprehensive analysis of the genetic diversity and metabolic potential of a temperate planktonic freshwater community and advances approaches for comparative metagenomics.
机译:拉尼尔湖是美国东南部重要的淡水湖,因为它代表了亚特兰大都会区的主要饮用水来源,并且在休闲活动中很受欢迎。在越来越多的环境宏数据集中,温带淡水湖(如拉尼尔湖)的代表性不足,而且鲜为人知的是淡水群落中功能基因与其他生态系统的关系如何。为了更好地表征该淡水浮游微生物群落的基因含量和变异性,我们使用随机的全基因组shot弹枪(WGS)方法对在强烈夏季风暴事件和秋季水混合过程中获得的几个样品进行了测序。比较宏基因组学表明,该基因含量随时间推移相对稳定,并且与另一个淡水湖泊和地表海洋的相关性大于与土壤的相关性。但是,拉尼尔湖群落的系统发育多样性不同于土壤和海洋群落。我们确定了几个重要的基因组适应因素,可以解释这些发现,例如淡水生物体使用钾(而不是钠)渗透调节剂以及社区平均基因组大小的差异。我们表明,湖泊群落主要由离散的种群组成,并描述了一种简单的方法来评估基于种群丰富度和均匀性的群落复杂性,并确定覆盖样品多样性所需的测序工作。本研究首次对温带浮游淡水群落的遗传多样性和代谢潜力进行了全面的分析,并提出了比较宏基因组学的方法。

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