Abstract
Phages, viruses that infect prokaryotes, are the most abundant microbes in the world. A major limitation to studying these viruses is the difficulty of cultivating the appropriate prokaryotic hosts. One way around this limitation is to directly clone and sequence shotgun libraries of uncultured viral communities (i.e., metagenomic analyses). PHACCS http://phage.sdsu.edu/phaccs, Phage Communities from Contig Spectrum, is an online bioinformatic tool to assess the biodiversity of uncultured viral communities. PHACCS uses the contig spectrum from shotgun DNA sequence assemblies to mathematically model the structure of viral communities and make predictions about diversity. PHACCS builds models of possible community structure using a modified Lander-Waterman algorithm to predict the underlying contig spectrum. PHACCS finds the most appropriate structure model by optimizing the model parameters until the predicted contig spectrum is as close as possible to the experimental one. This model is the basis for making estimates of uncultured viral community richness, evenness, diversity index and abundance of the most abundant genotype. PHACCS analysis of four different environmental phage communities suggests that the power law is an important rank-abundance form to describe uncultured viral community structure. The estimates support the fact that the four phage communities were extremely diverse and that phage community biodiversity and structure may be correlated with that of their hosts.
MeSH Terms
Algorithms
Bacteriophages/metabolism
Biodiversity
Computational Biology/methods
Contig Mapping
DNA/chemistry
DNA Viruses
Databases, Genetic
Genes, Viral
Genetic Variation
Genome, Viral
Genotype
Internet
Models, Genetic
Models, Statistical
Protein Interaction Mapping/methods
Sequence Analysis, DNA
Software
Viruses/metabolism
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Angly Florent
Ecole Supérieure de Biotechnologie de Strasbourg, Boulevard Sébastien Brandt, 67413 Illkirch, France. fangly@projects.sdsu.edu <fangly@projects.sdsu.edu>
Rodriguez-Brito Beltran
Bangor David
McNairnie Pat
Breitbart Mya
Salamon Peter
Felts Ben
Nulton James
Mahaffy Joseph
Rohwer Forest
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