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result(s) for
"Antipov, Dmitry"
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Analysis of metagenome-assembled viral genomes from the human gut reveals diverse putative CrAss-like phages with unique genomic features
2021
CrAssphage is the most abundant human-associated virus and the founding member of a large group of bacteriophages, discovered in animal-associated and environmental metagenomes, that infect bacteria of the phylum Bacteroidetes. We analyze 4907 Circular Metagenome Assembled Genomes (cMAGs) of putative viruses from human gut microbiomes and identify nearly 600 genomes of crAss-like phages that account for nearly 87% of the DNA reads mapped to these cMAGs. Phylogenetic analysis of conserved genes demonstrates the monophyly of crAss-like phages, a putative virus order, and of 5 branches, potential families within that order, two of which have not been identified previously. The phage genomes in one of these families are almost twofold larger than the crAssphage genome (145-192 kilobases), with high density of self-splicing introns and inteins. Many crAss-like phages encode suppressor tRNAs that enable read-through of UGA or UAG stop-codons, mostly, in late phage genes. A distinct feature of the crAss-like phages is the recurrent switch of the phage DNA polymerase type between A and B families. Thus, comparative genomic analysis of the expanded assemblage of crAss-like phages reveals aspects of genome architecture and expression as well as phage biology that were not apparent from the previous work on phage genomics.
Here, the authors analyze 4907 Circular Metagenome Assembled Genomes from human microbiomes and identify and characterize nearly 600 diverse genomes of crAss-like phages, finding two putative families with unusual genomic features, including high density of self-splicing introns and inteins.
Journal Article
SPAligner: alignment of long diverged molecular sequences to assembly graphs
2020
Background
Graph-based representation of genome assemblies has been recently used in different contexts — from improved reconstruction of plasmid sequences and refined analysis of metagenomic data to read error correction and reference-free haplotype reconstruction. While many of these applications heavily utilize the alignment of long nucleotide sequences to assembly graphs, first general-purpose software tools for finding such alignments have been released only recently and their deficiencies and limitations are yet to be discovered. Moreover, existing tools can not perform alignment of amino acid sequences, which could prove useful in various contexts — in particular the analysis of metagenomic sequencing data.
Results
In this work we present a novel SPAligner (Saint-Petersburg Aligner) tool for aligning long diverged nucleotide and amino acid sequences to assembly graphs. We demonstrate that SPAligner is an efficient solution for mapping third generation sequencing reads onto assembly graphs of various complexity and also show how it can facilitate the identification of known genes in complex metagenomic datasets.
Conclusions
Our work will facilitate accelerating the development of graph-based approaches in solving sequence to genome assembly alignment problem. SPAligner is implemented as a part of SPAdes tools library and is available on Github.
Journal Article
Thousands of previously unknown phages discovered in whole-community human gut metagenomes
2021
Background
Double-stranded DNA bacteriophages (dsDNA phages) play pivotal roles in structuring human gut microbiomes; yet, the gut virome is far from being fully characterized, and additional groups of phages, including highly abundant ones, continue to be discovered by metagenome mining. A multilevel framework for taxonomic classification of viruses was recently adopted, facilitating the classification of phages into evolutionary informative taxonomic units based on hallmark genes. Together with advanced approaches for sequence assembly and powerful methods of sequence analysis, this revised framework offers the opportunity to discover and classify unknown phage taxa in the human gut.
Results
A search of human gut metagenomes for circular contigs encoding phage hallmark genes resulted in the identification of 3738 apparently complete phage genomes that represent 451 putative genera. Several of these phage genera are only distantly related to previously identified phages and are likely to found new families. Two of the candidate families, “Flandersviridae” and “Quimbyviridae”, include some of the most common and abundant members of the human gut virome that infect
Bacteroides
,
Parabacteroides
, and
Prevotella
. The third proposed family, “Gratiaviridae,” consists of less abundant phages that are distantly related to the families
Autographiviridae
,
Drexlerviridae
, and
Chaseviridae
. Analysis of CRISPR spacers indicates that phages of all three putative families infect bacteria of the phylum Bacteroidetes. Comparative genomic analysis of the three candidate phage families revealed features without precedent in phage genomes. Some “Quimbyviridae” phages possess Diversity-Generating Retroelements (DGRs) that generate hypervariable target genes nested within defense-related genes, whereas the previously known targets of phage-encoded DGRs are structural genes. Several “Flandersviridae” phages encode enzymes of the isoprenoid pathway, a lipid biosynthesis pathway that so far has not been known to be manipulated by phages. The “Gratiaviridae” phages encode a HipA-family protein kinase and glycosyltransferase, suggesting these phages modify the host cell wall, preventing superinfection by other phages. Hundreds of phages in these three and other families are shown to encode catalases and iron-sequestering enzymes that can be predicted to enhance cellular tolerance to reactive oxygen species.
Conclusions
Analysis of phage genomes identified in whole-community human gut metagenomes resulted in the delineation of at least three new candidate families of
Caudovirales
and revealed diverse putative mechanisms underlying phage-host interactions in the human gut. Addition of these phylogenetically classified, diverse, and distinct phages to public databases will facilitate taxonomic decomposition and functional characterization of human gut viromes.
E-7rced89cjMzTjfwKghHn
Video abstract
Journal Article
viralFlye: assembling viruses and identifying their hosts from long-read metagenomics data
by
Antipov, Dmitry
,
Pevzner, Pavel A.
,
Kolmogorov, Mikhail
in
Animal Genetics and Genomics
,
Assembly
,
Bioinformatics
2022
Although the use of long-read sequencing improves the contiguity of assembled viral genomes compared to short-read methods, assembling complex viral communities remains an open problem. We describe the viralFlye tool for identification and analysis of metagenome-assembled viruses in long-read assemblies. We show it significantly improves viral assemblies and demonstrate that long-reads result in a much larger array of predicted virus-host associations as compared to short-read assemblies. We demonstrate that the identification of novel CRISPR arrays in bacterial genomes from a newly assembled metagenomic sample provides information for predicting novel hosts for novel viruses.
Journal Article
Extending rnaSPAdes functionality for hybrid transcriptome assembly
2020
Background
De novo RNA-Seq assembly is a powerful method for analysing transcriptomes when the reference genome is not available or poorly annotated. However, due to the short length of Illumina reads it is usually impossible to reconstruct complete sequences of complex genes and alternative isoforms. Recently emerged possibility to generate long RNA reads, such as PacBio and Oxford Nanopores, may dramatically improve the assembly quality, and thus the consecutive analysis. While reference-based tools for analysing long RNA reads were recently developed, there is no established pipeline for de novo assembly of such data.
Results
In this work we present a novel method that allows to perform high-quality de novo transcriptome assemblies by combining accuracy and reliability of short reads with exon structure information carried out from long error-prone reads. The algorithm is designed by incorporating existing hybridSPAdes approach into rnaSPAdes pipeline and adapting it for transcriptomic data.
Conclusion
To evaluate the benefit of using long RNA reads we selected several datasets containing both Illumina and Iso-seq or Oxford Nanopore Technologies (ONT) reads. Using an existing quality assessment software, we show that hybrid assemblies performed with rnaSPAdes contain more full-length genes and alternative isoforms comparing to the case when only short-read data is used.
Journal Article
Varidnaviruses in the Human Gut: A Major Expansion of the Order Vinavirales
by
Antipov, Dmitry
,
Wolf, Yuri I.
,
Koonin, Eugene V.
in
Adenosine Triphosphatases - genetics
,
adenosinetriphosphatase
,
alpha-Proteobacteria
2022
Bacteriophages play key roles in the dynamics of the human microbiome. By far the most abundant components of the human gut virome are tailed bacteriophages of the realm Duplodnaviria, in particular, crAss-like phages. However, apart from duplodnaviruses, the gut virome has not been dissected in detail. Here we report a comprehensive census of a minor component of the gut virome, the tailless bacteriophages of the realm Varidnaviria. Tailless phages are primarily represented in the gut by prophages, that are mostly integrated in genomes of Alphaproteobacteria and Verrucomicrobia and belong to the order Vinavirales, which currently consists of the families Corticoviridae and Autolykiviridae. Phylogenetic analysis of the major capsid proteins (MCP) suggests that at least three new families should be established within Vinavirales to accommodate the diversity of prophages from the human gut virome. Previously, only the MCP and packaging ATPase genes were reported as conserved core genes of Vinavirales. Here we report an extended core set of 12 proteins, including MCP, packaging ATPase, and previously undetected lysis enzymes, that are shared by most of these viruses. We further demonstrate that replication system components are frequently replaced in the genomes of Vinavirales, suggestive of selective pressure for escape from yet unknown host defenses or avoidance of incompatibility with coinfecting related viruses. The results of this analysis show that, in a sharp contrast to marine viromes, varidnaviruses are a minor component of the human gut virome. Moreover, they are primarily represented by prophages, as indicated by the analysis of the flanking genes, suggesting that there are few, if any, lytic varidnavirus infections in the gut at any given time. These findings complement the existing knowledge of the human gut virome by exploring a group of viruses that has been virtually overlooked in previous work.
Journal Article
Multiplex de Bruijn graphs enable genome assembly from long, high-fidelity reads
by
Antipov, Dmitry
,
Pevzner, Pavel A.
,
Kolmogorov, Mikhail
in
631/114/2785/2302
,
631/61/212/2302
,
Accuracy
2022
Although most existing genome assemblers are based on de Bruijn graphs, the construction of these graphs for large genomes and large
k
-mer sizes has remained elusive. This algorithmic challenge has become particularly pressing with the emergence of long, high-fidelity (HiFi) reads that have been recently used to generate a semi-manual telomere-to-telomere assembly of the human genome. To enable automated assemblies of long, HiFi reads, we present the La Jolla Assembler (LJA), a fast algorithm using the Bloom filter, sparse de Bruijn graphs and disjointig generation. LJA reduces the error rate in HiFi reads by three orders of magnitude, constructs the de Bruijn graph for large genomes and large
k
-mer sizes and transforms it into a multiplex de Bruijn graph with varying
k
-mer sizes. Compared to state-of-the-art assemblers, our algorithm not only achieves five-fold fewer misassemblies but also generates more contiguous assemblies. We demonstrate the utility of LJA via the automated assembly of a human genome that completely assembled six chromosomes.
A multiplex de Bruijn graph algorithm allows high-accuracy genome assembly from long, high-fidelity reads.
Journal Article
Varidnaviruses in the Human Gut: A Major Expansion of the Order IVinavirales/I
by
Antipov, Dmitry
,
Koonin, Eugene V
,
Rayko, Mike
in
Genetic aspects
,
Microbiota (Symbiotic organisms)
,
Natural history
2022
Bacteriophages play key roles in the dynamics of the human microbiome. By far the most abundant components of the human gut virome are tailed bacteriophages of the realm Duplodnaviria, in particular, crAss-like phages. However, apart from duplodnaviruses, the gut virome has not been dissected in detail. Here we report a comprehensive census of a minor component of the gut virome, the tailless bacteriophages of the realm Varidnaviria. Tailless phages are primarily represented in the gut by prophages, that are mostly integrated in genomes of Alphaproteobacteria and Verrucomicrobia and belong to the order Vinavirales, which currently consists of the families Corticoviridae and Autolykiviridae. Phylogenetic analysis of the major capsid proteins (MCP) suggests that at least three new families should be established within Vinavirales to accommodate the diversity of prophages from the human gut virome. Previously, only the MCP and packaging ATPase genes were reported as conserved core genes of Vinavirales. Here we report an extended core set of 12 proteins, including MCP, packaging ATPase, and previously undetected lysis enzymes, that are shared by most of these viruses. We further demonstrate that replication system components are frequently replaced in the genomes of Vinavirales, suggestive of selective pressure for escape from yet unknown host defenses or avoidance of incompatibility with coinfecting related viruses. The results of this analysis show that, in a sharp contrast to marine viromes, varidnaviruses are a minor component of the human gut virome. Moreover, they are primarily represented by prophages, as indicated by the analysis of the flanking genes, suggesting that there are few, if any, lytic varidnavirus infections in the gut at any given time. These findings complement the existing knowledge of the human gut virome by exploring a group of viruses that has been virtually overlooked in previous work.
Journal Article
FMEA QUALITY IMPROVEMENT METHOD OF FLAME SPRAYING THERMAL INSULATION
by
Antipov, Dmitry
,
Glushkov, Sergey
,
Klochkov, Yury
in
Coating
,
Design analysis
,
Failure analysis
2021
FMEA is a very popular and effective analysis. The main advantage is the arrangemnet of expert groups, which define risks, their effects and organize corrective and preventive actions. But such analysis also has some disadvantage, first of all it is the uncertainties, the other one is the need to choose the corrective event among those that have been suggested. Besides, a typical model for assessing the risks of potential failures of the coating applied by the method of gas-thermal plasma spraying on the blades of a gas turbine of a gas turbine engine has been developed. The model is based on the Design Failure Mode and Effect Analysis. The structural and functional analysis of the coating design was carried out. The failures resulting from the failure of the coating to perform the function are determined. The potential causes and consequences of failures have been identified. An assessment of the risks of failures was carried out and the priority of actions for their elimination was established. Measures to improve the quality of the coating applied by the method of gas-thermal plasma spraying are described.
Journal Article
Peculiarities of Enterprises Functioning Under Conditions of Cyclicality of the Economy
by
Rudenko, Alexander Alekseevich
,
Iskoskov, Maxim Olegovich
,
Zaharov, Sergey Olegovich
in
Business cycles
,
Economic development
,
Economic policy
2016
It is necessary to note that under contemporary conditions of economic management that is characterized by a high level of indefiniteness of the market environment, there is a potential risk of a decline in the activeness in economy on the macro level to the level that is below admissible. On the contrary, the interest to problems related to providing stable economic development of enterprises under conditions of unbalanced state of economy sharply grows. Under these conditions special importance is acquired by the search for regularities of economy functioning for the future development of efficient organizational and economic mechanism that can provide competitive functioning of integrated structures of the power engineering at any phase of the economic cycle. Herewith, the crisis of 2008 had a considerable unfavorable impact on the whole Russian industry.
Journal Article