EDBT 2026 Demo / reviewers in the wild / expert
Evgeny M. Zdobnov
dblp:07/6323 · also Evgeni M. Zdobnov
· DBLP profile ↗
11ranked-venue papers
3as first author
1since 2021 · last 2022
0000-0002-5178-1498ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Applied, interdisciplinary, general and emerging computing · 11 · 3 first-author · 1 since 2021
Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.
| Interdisciplinary, comprehensive, and emerging computing
8 papers |
Bioinformatics and computational biology · 100% |
Topics — the 12 heaviest of 13, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Bioinformatics and computational biology
metagenomics |
0.4 | 1 | 2020 | Phigaro: high-throughput prophage sequence annotation · Bioinform. 2020 |
Bioinformatics and computational biology › sequence analysis
sequence annotation |
0.4 | 1 | 2020 | Phigaro: high-throughput prophage sequence annotation · Bioinform. 2020 |
Bioinformatics and computational biology › sequence analysis › sequence assembly › genome assembly
assembly quality assessment |
0.2 | 1 | 2015 | BUSCO: assessing genome assembly and annotation completeness with single-copy orthologs · Bioinform. 2015 |
Bioinformatics and computational biology
genome annotation |
0.2 | 1 | 2015 | BUSCO: assessing genome assembly and annotation completeness with single-copy orthologs · Bioinform. 2015 |
Bioinformatics and computational biology › sequence analysis › sequence assembly
genome assembly |
0.2 | 1 | 2015 | BUSCO: assessing genome assembly and annotation completeness with single-copy orthologs · Bioinform. 2015 |
Bioinformatics and computational biology
phylogenetics |
0.1 | 1 | 2010 | The Newick utilities: high-throughput phylogenetic tree processing in the UNIX shell · Bioinform. 2010 |
Bioinformatics and computational biology › molecular evolution
recombination breakpoint detection |
0.1 | 1 | 2010 | The Newick utilities: high-throughput phylogenetic tree processing in the UNIX shell · Bioinform. 2010 |
Bioinformatics and computational biology
data integration |
0.1 | 3 | 2002 | The EBI SRS server-new features · Bioinform. 2002 The EBI SRS server-recent developments · Bioinform. 2002 InterProScan - an integration platform for the signature-recognition methods in InterPro · Bioinform. 2001 |
Bioinformatics and computational biology › data integration
biological database integration |
0.1 | 2 | 2002 | The EBI SRS server-new features · Bioinform. 2002 The EBI SRS server-recent developments · Bioinform. 2002 |
Bioinformatics and computational biology
comparative genomics |
0.0 | 1 | 2002 | Interactive InterPro-based comparisons of proteins in whole genomes · Bioinform. 2002 |
Bioinformatics and computational biology › proteomics
proteome comparison |
0.0 | 1 | 2002 | Interactive InterPro-based comparisons of proteins in whole genomes · Bioinform. 2002 |
Bioinformatics and computational biology
protein sequence analysis |
0.0 | 1 | 2001 | InterProScan - an integration platform for the signature-recognition methods in InterPro · Bioinform. 2001 |
Methods — techniques the papers use, named apart from their topics
sequence analysis · 0.4single-copy ortholog analysis · 0.2XML integration · 0.1virtual databases · 0.0interpro analysis · 0.0sequence scanning · 0.0regular expression · 0.0profile · 0.0hidden markov model · 0.0fingerprint · 0.0
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2022 | Comprehensive mouse microbiota genome catalog reveals major difference to its human counterpartabstractMouse is the most used model for studying the impact of microbiota on its host, but the repertoire of species from the mouse gut microbiome remains largely unknown. Accordingly, the similarity between human and mouse microbiomes at a low taxonomic level is not clear. We construct a comprehensive mouse microbiota genome (CMMG) catalog by assembling all currently available mouse gut metagenomes and combining them with published reference and metagenome-assembled genomes. The 41'798 genomes cluster into 1'573 species, of which 78.1% are uncultured, and we discovered 226 new genera, seven new families, and one new order. CMMG enables an unprecedented coverage of the mouse gut microbiome exceeding 86%, increases the mapping rate over four-fold, and allows functional microbiota analyses of human and mouse linking them to the driver species. Comparing CMMG to microbiota from the unified human gastrointestinal genomes shows an overlap of 62% at the genus but only 10% at the species level, demonstrating that human and mouse gut microbiota are largely distinct. CMMG contains the most comprehensive collection of consistently functionally annotated species of the mouse and human microbiome to date, setting the ground for analysis of new and reanalysis of existing datasets at an unprecedented depth. Silas Kieser, Evgeny M. Zdobnov, Mirko Trajkovski |
PLoS Comput. Biol. | 2 |
| 2020 | Phigaro: high-throughput prophage sequence annotationabstractSUMMARY: Phigaro is a standalone command-line application that is able to detect prophage regions taking raw genome and metagenome assemblies as an input. It also produces dynamic annotated 'prophage genome maps' and marks possible transposon insertion spots inside prophages. It is applicable for mining prophage regions from large metagenomic datasets. AVAILABILITY AND IMPLEMENTATION: Source code for Phigaro is freely available for download at https://github.com/bobeobibo/phigaro along with test data. The code is written in Python. SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online. Elizaveta V. Starikova, Polina O. Tikhonova, Nikita A. Prianichnikov, Chris M. Rands, Evgeny M. Zdobnov, Elena Ilina, Vadim M. Govorun |
Bioinform. | 5 |
| 2020 | ATLAS: a Snakemake workflow for assembly, annotation, and genomic binning of metagenome sequence dataabstractBACKGROUND: Metagenomics studies provide valuable insight into the composition and function of microbial populations from diverse environments; however, the data processing pipelines that rely on mapping reads to gene catalogs or genome databases for cultured strains yield results that underrepresent the genes and functional potential of uncultured microbes. Recent improvements in sequence assembly methods have eased the reliance on genome databases, thereby allowing the recovery of genomes from uncultured microbes. However, configuring these tools, linking them with advanced binning and annotation tools, and maintaining provenance of the processing continues to be challenging for researchers. RESULTS: Here we present ATLAS, a software package for customizable data processing from raw sequence reads to functional and taxonomic annotations using state-of-the-art tools to assemble, annotate, quantify, and bin metagenome data. Abundance estimates at genome resolution are provided for each sample in a dataset. ATLAS is written in Python and the workflow implemented in Snakemake; it operates in a Linux environment, and is compatible with Python 3.5+ and Anaconda 3+ versions. The source code for ATLAS is freely available, distributed under a BSD-3 license. CONCLUSIONS: ATLAS provides a user-friendly, modular and customizable Snakemake workflow for metagenome data processing; it is easily installable with conda and maintained as open-source on GitHub at https://github.com/metagenome-atlas/atlas. Silas Kieser, Joseph Brown, Evgeny M. Zdobnov, Mirko Trajkovski, Lee Ann McCue |
BMC Bioinform. | 3 |
| 2015 | BUSCO: assessing genome assembly and annotation completeness with single-copy orthologsabstractMOTIVATION: Genomics has revolutionized biological research, but quality assessment of the resulting assembled sequences is complicated and remains mostly limited to technical measures like N50. RESULTS: We propose a measure for quantitative assessment of genome assembly and annotation completeness based on evolutionarily informed expectations of gene content. We implemented the assessment procedure in open-source software, with sets of Benchmarking Universal Single-Copy Orthologs, named BUSCO. AVAILABILITY AND IMPLEMENTATION: Software implemented in Python and datasets available for download from http://busco.ezlab.org. CONTACT: [email protected] SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online. Felipe A. Simão, Robert M. Waterhouse, Panagiotis Ioannidis 0001, Evgenia V. Kriventseva, Evgeny M. Zdobnov |
Bioinform. | 5 |
| 2010 | The Newick utilities: high-throughput phylogenetic tree processing in the UNIX shellabstractSUMMARY: We present a suite of Unix shell programs for processing any number of phylogenetic trees of any size. They perform frequently-used tree operations without requiring user interaction. They also allow tree drawing as scalable vector graphics (SVG), suitable for high-quality presentations and further editing, and as ASCII graphics for command-line inspection. As an example we include an implementation of bootscanning, a procedure for finding recombination breakpoints in viral genomes. AVAILABILITY: C source code, Python bindings and executables for various platforms are available from http://cegg.unige.ch/newick_utils. The distribution includes a manual and example data. The package is distributed under the BSD License. CONTACT: [email protected] Thomas Junier, Evgeny M. Zdobnov |
Bioinform. | 2 |
| 2010 | Functional Characterization of Transcription Factor Motifs Using Cross-species Comparison across Large Evolutionary DistancesabstractWe address the problem of finding statistically significant associations between cis-regulatory motifs and functional gene sets, in order to understand the biological roles of transcription factors. We develop a computational framework for this task, whose features include a new statistical score for motif scanning, the use of different scores for predicting targets of different motifs, and new ways to deal with redundancies among significant motif-function associations. This framework is applied to the recently sequenced genome of the jewel wasp, Nasonia vitripennis, making use of the existing knowledge of motifs and gene annotations in another insect genome, that of the fruitfly. The framework uses cross-species comparison to improve the specificity of its predictions, and does so without relying upon non-coding sequence alignment. It is therefore well suited for comparative genomics across large evolutionary divergences, where existing alignment-based methods are not applicable. We also apply the framework to find motifs associated with socially regulated gene sets in the honeybee, Apis mellifera, using comparisons with Nasonia, a solitary species, to identify honeybee-specific associations. Jaebum Kim, Ryan Cunningham, Stefan Wyder, Joshua D. Gibson, Oliver Niehuis, Evgeny M. Zdobnov, Hugh M. Robertson, Gene E. Robinson, John H. Werren, Saurabh Sinha 0002 |
PLoS Comput. Biol. | 7 |
| 2002 | Interactive InterPro-based comparisons of proteins in whole genomesabstractAbstract Motivation: The SWISS-PROT group at the EBI has developed the Proteome Analysis Database utilizing existing resources and providing comprehensive and integrated comparative analysis of the predicted protein coding sequencesof the complete genomes of bacteria, archaea and eukaryotes. The Proteome Analysis Database is accompanied by a program that has been designed to carry out interactive InterPro proteome comparisons for any one proteome against any other one or more of the proteomes in the database. Availability: http://www.ebi.ac.uk/proteome/comparisons.html Contact: [email protected]; [email protected] * To whom all correspondence should be addressed. Alexander Kanapin, Rolf Apweiler, Margaret Biswas, Wolfgang Fleischmann, Youla Karavidopoulou, Paul J. Kersey, Evgenia V. Kriventseva, Virginie Mittard, Nicola J. Mulder, Thomas M. Oinn, Isabelle Phan, Florence Servant, Evgeny M. Zdobnov |
Bioinform. | 13 |
| 2002 | The EBI SRS server-recent developmentsabstractAbstract Motivation: The current data explosion is intractable without advanced data management systems. The numerous data sets become really useful when they are interconnected under a uniform interface—representing the domain knowledge. The SRS has become an integration system for both data retrieval and applications for data analysis. It provides capabilities to search multiple databases by shared attributes and to query across databases fast and efficiently. Results: Here we present recent developments at the EBI SRS server (http://srs.ebi.ac.uk). The EBI SRS server contains today more than 130 biological databases and integrates more than 10 applications. It is a central resource for molecular biology data as well as a reference server for the latest developments in data integration. One of the latest additions to the EBI SRS server is the InterPro database—Integrated Resource of Protein Domains and Functional Sites. Distributed in XML format it became a turning point in low level XML–SRS integration. We present InterProScan as an example of data analysis applications, describe some advanced features of SRS6, and introduce the SRSQuickSearch JavaScript interfaces to SRS. Availability: SRS6 is a licensed product of LION Bioscience AG freely available for academics. The EBI SRS server (http://srs.ebi.ac.uk) is a free central resource for molecular biology data as well as a reference server for the latest developments in data integration. Contact: [email protected]; [email protected] Evgeny M. Zdobnov, Rodrigo Lopez, Rolf Apweiler, Thure Etzold |
Bioinform. | 1 |
| 2002 | The EBI SRS server-new featuresabstractMOTIVATION: Here we report on recent developments at the EBI SRS server (http://srs.ebi.ac.uk). SRS has become an integration system for both data retrieval and sequence analysis applications. The EBI SRS server is a primary gateway to major databases in the field of molecular biology produced and supported at EBI as well as European public access point to the MEDLINE database provided by US National Library of Medicine (NLM). It is a reference server for latest developments in data and application integration. The new additions include: concept of virtual databases, integration of XML databases like the Integrated Resource of Protein Domains and Functional Sites (InterPro), Gene Ontology (GO), MEDLINE, Metabolic pathways, etc., user friendly data representation in 'Nice views', SRSQuickSearch bookmarklets. AVAILABILITY: SRS6 is a licensed product of LION Bioscience AG freely available for academics. The EBI SRS server (http://srs.ebi.ac.uk) is a free central resource for molecular biology data as well as a reference server for the latest developments in data integration. Evgeny M. Zdobnov, Rodrigo Lopez, Rolf Apweiler, Thure Etzold |
Bioinform. | 1 |
| 2001 | InterProScan - an integration platform for the signature-recognition methods in InterProabstractUNLABELLED: InterProScan is a tool that scans given protein sequences against the protein signatures of the InterPro member databases, currently--PROSITE, PRINTS, Pfam, ProDom and SMART. The number of signature databases and their associated scanning tools as well as the further refinement procedures make the problem complex. InterProScan is designed to be a scalable and extensible system with a robust internal architecture. AVAILABILITY: The Perl-based InterProScan implementation is available from the EBI ftp server (ftp://ftp.ebi.ac.uk/pub/software/unix/iprscan/) and the SRS-basedInterProScan is available upon request. We provide the public web interface (http://www.ebi.ac.uk/interpro/scan.html) as well as email submission server ([email protected]). Evgeny M. Zdobnov, Rolf Apweiler |
Bioinform. | 1 |
| 2000 | InterPro-an integrated documentation resource for protein families, domains and functional sitesabstractMOTIVATION: InterPro is a new integrated documentation resource for protein families, domains and functional sites, developed initially as a means of rationalising the complementary efforts of the PROSITE, PRINTS, Pfam and ProDom database projects. RESULTS: Merged annotations from PRINTS, PROSITE and Pfam form the InterPro core. Each combined InterPro entry includes functional descriptions and literature references, and links are made back to the relevant parent database(s), allowing users to see at a glance whether a particular family or domain has associated patterns, profiles, fingerprints, etc. Merged and individual entries (i.e. those that have no counterpart in the companion resources) are assigned unique accession numbers. Release 1.2 of InterPro (June 2000) contains over 3000 entries, representing families, domains, repeats and sites of post-translational modification (PTMs) encoded by 6581 different regular expressions, profiles, fingerprints and Hidden Markov Models (HMMs). Each InterPro entry lists all the matches against SWISS-PROT and TrEMBL (more than 1000000 hits from 264333 different proteins out of 384572 in SWISS-PROT and TrEMBL). Rolf Apweiler, Terri K. Attwood, Amos Bairoch, Alex Bateman, Ewan Birney, Margaret Biswas, Philipp Bucher, Lorenzo Cerutti, Florence Corpet, Michael D. R. Croning, Richard Durbin, Laurent Falquet, Wolfgang Fleischmann, Jérôme Gouzy, Henning Hermjakob, Nicolas Hulo, Inge Jonassen, Daniel Kahn, Alexander Kanapin, Youla Karavidopoulou, Rodrigo Lopez, Beate Marx, Nicola J. Mulder, Thomas M. Oinn, Marco Pagni, Florence Servant, Christian J. A. Sigrist, Evgeny M. Zdobnov |
Bioinform. | 28 |