UniFrac: a New Phylogenetic Method for Comparing Microbial Communities

We introduce here a new method for computing differences between microbial communities based on phylogenetic information. This method, UniFrac, measures the phylogenetic distance between sets of taxa in a phylogenetic tree as the fraction of the branch length of the tree that leads to descendants from either one environment or the other, but not both. UniFrac can be used to determine whether communities are significantly different, to compare many communities simultaneously using clustering and ordination techniques, and to measure the relative contributions of different factors, such as chemistry and geography, to similarities between samples. We demonstrate the utility of UniFrac by applying it to published 16S rRNA gene libraries from cultured isolates and environmental clones of bacteria in marine sediment, water, and ice. Our results reveal that (i) cultured isolates from ice, water, and sediment resemble each other and environmental clone sequences from sea ice, but not environmental clone sequences from sediment and water; (ii) the geographical location does not correlate strongly with bacterial community differences in ice and sediment from the Arctic and Antarctic; and (iii) bacterial communities differ between terrestrially impacted seawater (whether polar or temperate) and warm oligotrophic seawater, whereas those in individual seawater samples are not more similar to each other than to those in sediment or ice samples. These results illustrate that UniFrac provides a new way of characterizing microbial communities, using the wealth of environmental rRNA sequences, and allows quantitative insight into the factors that underlie the distribution of lineages among environments.

Nearly Identical 16SrRNA Sequences Recovere…Nearly Identical 16S rRNA Sequences Recovered from Lakes in North America and Europe Indicate the Existence of Clades of Globally Distributed Freshwater BacteriaPoles Apart:Biodiversity and…Poles Apart: Biodiversity and Biogeography of Sea Ice BacteriaCulturability and InSitu Abundance of…Culturability and In Situ Abundance of Pelagic Bacteria from the North SeaPhylogenetic Compositionof Bacterioplankton…Phylogenetic Composition of Bacterioplankton Assemblages from the Arctic OceanPhylogenetic Approachesfor Describing and…Phylogenetic Approaches for Describing and Comparing the Diversity of Microbial CommunitiesPhylogenetic Diversityof Numerically Importan…Phylogenetic Diversity of Numerically Important Arctic Sea-Ice Bacteria Cultured at Subzero TemperatureDiversity and Structureof Bacterial…Diversity and Structure of Bacterial Communitiesin Arctic versus Antarctic PackIceBiodiversity, CommunityStructural Shifts, and…Biodiversity, Community Structural Shifts, and Biogeography of Prokaryotes within Antarctic Continental Shelf SedimentThe Uncultured MicrobialMajorityThe Uncultured Microbial MajorityARB: a softwareenvironment for sequenc…ARB: a software environment for sequence dataFine-scale phylogeneticarchitecture of a…Fine-scale phylogenetic architecture of a complex bacterial communityObesity alters gutmicrobial ecologyObesity alters gut microbial ecologyReciprocal GutMicrobiota Transplants…Reciprocal Gut Microbiota Transplants from Zebrafish and Mice to Germ-free Recipients Reveal Host Habitat SelectionThe Human MicrobiomeProjectThe Human Microbiome ProjectThe influence of sex,handedness, and washing…The influence of sex, handedness, and washing on the diversity of hand surface bacteriaInfrequentmarine–freshwater…Infrequent marine–freshwater transitions in the microbial worldBayesian community-wideculture-independent…Bayesian community-wide culture-independent microbial source trackingSkin microbiome:genomics-based insights…Skin microbiome: genomics-based insights into the diversity and role of skin microbesBiogeography ofbacterial communities…Biogeography of bacterial communities exposed to progressive long-term environmental changeComparison ofmetagenomic samples…Comparison of metagenomic samples using sequence signaturesSurprisingly extensivemixed phylogenetic and…Surprisingly extensive mixed phylogenetic and ecological signals among bacterial Operational Taxonomic UnitsLoss in microbialdiversity affects…Loss in microbial diversity affects nitrogen cycling in soilPower and sample-sizeestimation for…Power and sample-size estimation for microbiome studies using pairwise distances and PERMANOVAContrasting prevalenceof selection and drift…Contrasting prevalence of selection and drift in the community structuring of bacteria and microbial eukaryotesUniFrac: a NewPhylogenetic Method for…UniFrac: a New Phylogenetic Method for Comparing Microbial Communities過去の参考文献中心の論文この論文を引用する論文古い新しい

ノードをクリックするとフォーカスを固定、空白をクリックすると本論文に戻ります。ホバーで一時的にプレビューできます。各ノードのページはタイトルから開けます。