基因组
生物
系统发育树
微生物群
计算生物学
系统发育学
16S核糖体RNA
基因组
进化生物学
核糖体RNA
基因
遗传学
作者
Morgan G. I. Langille,Jesse Zaneveld,J. Gregory Caporaso,Daniel McDonald,Dan Knights,Joshua A Reyes,José C. Clemente,Deron E. Burkepile,Rebecca L. Vega Thurber,Rob Knight,Robert G. Beiko,Curtis Huttenhower
摘要
The functional composition of microbial community samples from several environments is predicted based on 16S ribosomal RNA gene sequencing data. Profiling phylogenetic marker genes, such as the 16S rRNA gene, is a key tool for studies of microbial communities but does not provide direct evidence of a community's functional capabilities. Here we describe PICRUSt (phylogenetic investigation of communities by reconstruction of unobserved states), a computational approach to predict the functional composition of a metagenome using marker gene data and a database of reference genomes. PICRUSt uses an extended ancestral-state reconstruction algorithm to predict which gene families are present and then combines gene families to estimate the composite metagenome. Using 16S information, PICRUSt recaptures key findings from the Human Microbiome Project and accurately predicts the abundance of gene families in host-associated and environmental communities, with quantifiable uncertainty. Our results demonstrate that phylogeny and function are sufficiently linked that this 'predictive metagenomic' approach should provide useful insights into the thousands of uncultivated microbial communities for which only marker gene surveys are currently available.
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