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High throughput in situ metagenomic measurement of bacterial replication at ultra-low sequencing coverage

机译:以超低测序覆盖率进行细菌复制的高通量原位宏基因组学测量

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摘要

We developed Growth Rate InDex (GRiD) for estimating in situ growth rates of ultra-low coverage (>0.2×) and de novo-assembled metagenomes. Applying GRiD to human and environmental metagenomic datasets to demonstrate its versatility, we uncovered new associations with previously uncharacterized bacteria whose growth rates were associated with several disease characteristics or environmental interactions. In addition, with GRiD-MG (metagenomic), a high-throughput implementation of GRiD, we estimated growth dynamics of 1756 bacteria species from a healthy skin metagenomic dataset and identified a new Staphylococcus-Corynebacterium antagonism likely mediated by antimicrobial production in the skin. GRiD-MG significantly increases the ability to extract growth rate inferences from complex metagenomic data with minimal input from the user.
机译:我们开发了Growth InDex(GRiD),用于估计超低覆盖率(> 0.2×)和从头组装的元基因组的原位生长率。将GRiD应用于人类和环境宏基因组数据集以证明其多功能性,我们发现了与以前未知的细菌的新关联,这些细菌的生长速率与几种疾病特征或环境相互作用有关。此外,通过GRiD-MG(基因组学)(GRiD的高通量实现),我们从健康的皮肤宏基因组学数据集中估算了1756种细菌的生长动态,并确定了可能由皮肤中的抗菌素产生介导的新的葡萄球菌-棒状杆菌拮抗作用。 GRiD-MG大大提高了从复杂的宏基因组学数据中提取增长率推断的能力,而用户的输入量却很少。

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