Background: Next-Generation-Sequencing (NGS) enables detection of microorganisms present in biological and other matrices of various origin and nature, allowing not only the identification of known phyla and strains but also the discovery of novel ones. The large amount of metagenomic shotgun data produced by NGS require comprehensive and user-friendly pipelines for data analysis, that speed up the bioinformatics steps, relieving the users from the need to manually perform complex and time-consuming tasks. Results: We describe here HOME-BIO (sHOtgun MEtagenomic analysis of BIOlogical entities), an exhaustive pipeline for metagenomics data analysis, comprising three independent analytical modules designed for an inclusive analysis of large N...
Krause L. From single genomes to natural microbial communities : novel methods for the high-throughp...
By sampling the genetic content of microbes at the nucleotide level, metagenomics has rapidly esta...
Shotgun metagenomics is increasingly used to characterise microbial communities, particularly for th...
Background: Next-Generation-Sequencing (NGS) enables detection of microorganisms present in biologic...
Next-generation sequencing technologies, with their low costs and high throughputs, have benefited t...
Advances in next-generation sequencing (NGS) have allowed significant breakthroughs in microbial eco...
Shotgun metagenomics (SM) sequencing is a popular method used in microbial ecology to obtain insight...
Abstract Background The study of microbiomes using whole-metagenome shotgun sequencing enables the a...
High throughput sequencing has been proposed as a one-stop solution for diagnostics and molecular ty...
Traditionally, microbial genome sequencing has been restricted to the small number of species that c...
Whole genome sequencing (WGS) provides the highest resolution for genome-based species identificatio...
The application of whole-genome shotgun sequencing to microbial communities represents a major devel...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
Traditionally, microbial genome sequencing has been restricted to the small number of species that c...
Krause L. From single genomes to natural microbial communities : novel methods for the high-throughp...
By sampling the genetic content of microbes at the nucleotide level, metagenomics has rapidly esta...
Shotgun metagenomics is increasingly used to characterise microbial communities, particularly for th...
Background: Next-Generation-Sequencing (NGS) enables detection of microorganisms present in biologic...
Next-generation sequencing technologies, with their low costs and high throughputs, have benefited t...
Advances in next-generation sequencing (NGS) have allowed significant breakthroughs in microbial eco...
Shotgun metagenomics (SM) sequencing is a popular method used in microbial ecology to obtain insight...
Abstract Background The study of microbiomes using whole-metagenome shotgun sequencing enables the a...
High throughput sequencing has been proposed as a one-stop solution for diagnostics and molecular ty...
Traditionally, microbial genome sequencing has been restricted to the small number of species that c...
Whole genome sequencing (WGS) provides the highest resolution for genome-based species identificatio...
The application of whole-genome shotgun sequencing to microbial communities represents a major devel...
This is the publisher’s final pdf. The published article is copyrighted by the author(s) and publish...
Traditionally, microbial genome sequencing has been restricted to the small number of species that c...
Krause L. From single genomes to natural microbial communities : novel methods for the high-throughp...
By sampling the genetic content of microbes at the nucleotide level, metagenomics has rapidly esta...
Shotgun metagenomics is increasingly used to characterise microbial communities, particularly for th...