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1.
Genesis ; 53(8): 523-534, 2015 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-26088819

RESUMEN

dictyBase is the model organism database for the social amoeba Dictyostelium discoideum and related species. The primary mission of dictyBase is to provide the biomedical research community with well-integrated high quality data, and tools that enable original research. Data presented at dictyBase is obtained from sequencing centers, groups performing high throughput experiments such as large-scale mutagenesis studies, and RNAseq data, as well as a growing number of manually added functional gene annotations from the published literature, including Gene Ontology, strain, and phenotype annotations. Through the Dicty Stock Center we provide the community with an impressive amount of annotated strains and plasmids. Recently, dictyBase accomplished a major overhaul to adapt an outdated infrastructure to the current technological advances, thus facilitating the implementation of innovative tools and comparative genomics. It also provides new strategies for high quality annotations that enable bench researchers to benefit from the rapidly increasing volume of available data. dictyBase is highly responsive to its users needs, building a successful relationship that capitalizes on the vast efforts of the Dictyostelium research community. dictyBase has become the trusted data resource for Dictyostelium investigators, other investigators or organizations seeking information about Dictyostelium, as well as educators who use this model system.


Asunto(s)
Curaduría de Datos/métodos , Bases de Datos Genéticas , Dictyostelium/genética , Programas Informáticos , Animales , Curaduría de Datos/normas , Dictyostelium/metabolismo , Estudios de Asociación Genética , Anotación de Secuencia Molecular/métodos , Anotación de Secuencia Molecular/normas
2.
Nucleic Acids Res ; 40(Database issue): D237-41, 2012 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-22140108

RESUMEN

CharProtDB (http://www.jcvi.org/charprotdb/) is a curated database of biochemically characterized proteins. It provides a source of direct rather than transitive assignments of function, designed to support automated annotation pipelines. The initial data set in CharProtDB was collected through manual literature curation over the years by analysts at the J. Craig Venter Institute (JCVI) [formerly The Institute of Genomic Research (TIGR)] as part of their prokaryotic genome sequencing projects. The CharProtDB has been expanded by import of selected records from publicly available protein collections whose biocuration indicated direct rather than homology-based assignment of function. Annotations in CharProtDB include gene name, symbol and various controlled vocabulary terms, including Gene Ontology terms, Enzyme Commission number and TransportDB accession. Each annotation is referenced with the source; ideally a journal reference, or, if imported and lacking one, the original database source.


Asunto(s)
Bases de Datos de Proteínas , Anotación de Secuencia Molecular , Proteínas/química , Proteínas/genética , Proteínas/fisiología
3.
Nucleic Acids Res ; 38(Database issue): D408-14, 2010 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-19843611

RESUMEN

Pathema (http://pathema.jcvi.org) is one of the eight Bioinformatics Resource Centers (BRCs) funded by the National Institute of Allergy and Infectious Disease (NIAID) designed to serve as a core resource for the bio-defense and infectious disease research community. Pathema strives to support basic research and accelerate scientific progress for understanding, detecting, diagnosing and treating an established set of six target NIAID Category A-C pathogens: Category A priority pathogens; Bacillus anthracis and Clostridium botulinum, and Category B priority pathogens; Burkholderia mallei, Burkholderia pseudomallei, Clostridium perfringens and Entamoeba histolytica. Each target pathogen is represented in one of four distinct clade-specific Pathema web resources and underlying databases developed to target the specific data and analysis needs of each scientific community. All publicly available complete genome projects of phylogenetically related organisms are also represented, providing a comprehensive collection of organisms for comparative analyses. Pathema facilitates the scientific exploration of genomic and related data through its integration with web-based analysis tools, customized to obtain, display, and compute results relevant to ongoing pathogen research. Pathema serves the bio-defense and infectious disease research community by disseminating data resulting from pathogen genome sequencing projects and providing access to the results of inter-genomic comparisons for these organisms.


Asunto(s)
Infecciones Bacterianas/microbiología , Enfermedades Transmisibles/microbiología , Biología Computacional/métodos , Bases de Datos Genéticas , Secuencia de Aminoácidos , Animales , Infecciones Bacterianas/diagnóstico , Biología Computacional/tendencias , Genoma Bacteriano , Humanos , Almacenamiento y Recuperación de la Información/métodos , Internet , Datos de Secuencia Molecular , National Institute of Allergy and Infectious Diseases (U.S.) , Homología de Secuencia de Aminoácido , Programas Informáticos , Estados Unidos
4.
PLoS Genet ; 4(7): e1000141, 2008 Jul 25.
Artículo en Inglés | MEDLINE | ID: mdl-18654632

RESUMEN

We report here the sequencing and analysis of the genome of the nitrogen-fixing endophyte, Klebsiella pneumoniae 342. Although K. pneumoniae 342 is a member of the enteric bacteria, it serves as a model for studies of endophytic, plant-bacterial associations due to its efficient colonization of plant tissues (including maize and wheat, two of the most important crops in the world), while maintaining a mutualistic relationship that encompasses supplying organic nitrogen to the host plant. Genomic analysis examined K. pneumoniae 342 for the presence of previously identified genes from other bacteria involved in colonization of, or growth in, plants. From this set, approximately one-third were identified in K. pneumoniae 342, suggesting additional factors most likely contribute to its endophytic lifestyle. Comparative genome analyses were used to provide new insights into this question. Results included the identification of metabolic pathways and other features devoted to processing plant-derived cellulosic and aromatic compounds, and a robust complement of transport genes (15.4%), one of the highest percentages in bacterial genomes sequenced. Although virulence and antibiotic resistance genes were predicted, experiments conducted using mouse models showed pathogenicity to be attenuated in this strain. Comparative genomic analyses with the presumed human pathogen K. pneumoniae MGH78578 revealed that MGH78578 apparently cannot fix nitrogen, and the distribution of genes essential to surface attachment, secretion, transport, and regulation and signaling varied between each genome, which may indicate critical divergences between the strains that influence their preferred host ranges and lifestyles (endophytic plant associations for K. pneumoniae 342 and presumably human pathogenesis for MGH78578). Little genome information is available concerning endophytic bacteria. The K. pneumoniae 342 genome will drive new research into this less-understood, but important category of bacterial-plant host relationships, which could ultimately enhance growth and nutrition of important agricultural crops and development of plant-derived products and biofuels.


Asunto(s)
Genoma Bacteriano , Klebsiella pneumoniae/genética , Klebsiella pneumoniae/patogenicidad , Fijación del Nitrógeno , Análisis de Secuencia de ADN , Animales , Animales no Consanguíneos , Secuencia de Bases , Cromosomas Bacterianos/química , Femenino , Klebsiella pneumoniae/metabolismo , Ratones , Ratones Endogámicos C3H , Datos de Secuencia Molecular , Virulencia
5.
Nature ; 432(7019): 910-3, 2004 Dec 16.
Artículo en Inglés | MEDLINE | ID: mdl-15602564

RESUMEN

Since the recognition of prokaryotes as essential components of the oceanic food web, bacterioplankton have been acknowledged as catalysts of most major biogeochemical processes in the sea. Studying heterotrophic bacterioplankton has been challenging, however, as most major clades have never been cultured or have only been grown to low densities in sea water. Here we describe the genome sequence of Silicibacter pomeroyi, a member of the marine Roseobacter clade (Fig. 1), the relatives of which comprise approximately 10-20% of coastal and oceanic mixed-layer bacterioplankton. This first genome sequence from any major heterotrophic clade consists of a chromosome (4,109,442 base pairs) and megaplasmid (491,611 base pairs). Genome analysis indicates that this organism relies upon a lithoheterotrophic strategy that uses inorganic compounds (carbon monoxide and sulphide) to supplement heterotrophy. Silicibacter pomeroyi also has genes advantageous for associations with plankton and suspended particles, including genes for uptake of algal-derived compounds, use of metabolites from reducing microzones, rapid growth and cell-density-dependent regulation. This bacterium has a physiology distinct from that of marine oligotrophs, adding a new strategy to the recognized repertoire for coping with a nutrient-poor ocean.


Asunto(s)
Adaptación Fisiológica/genética , Genoma Bacteriano , Plancton/genética , Plancton/fisiología , Roseobacter/genética , Roseobacter/fisiología , Agua de Mar/microbiología , Proteínas Portadoras/genética , Proteínas Portadoras/metabolismo , Genes Bacterianos/genética , Biología Marina , Datos de Secuencia Molecular , Océanos y Mares , Filogenia , Plancton/clasificación , ARN Ribosómico 16S/genética , Roseobacter/clasificación
6.
Appl Environ Microbiol ; 75(7): 2046-56, 2009 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-19201974

RESUMEN

The complete genomes of three strains from the phylum Acidobacteria were compared. Phylogenetic analysis placed them as a unique phylum. They share genomic traits with members of the Proteobacteria, the Cyanobacteria, and the Fungi. The three strains appear to be versatile heterotrophs. Genomic and culture traits indicate the use of carbon sources that span simple sugars to more complex substrates such as hemicellulose, cellulose, and chitin. The genomes encode low-specificity major facilitator superfamily transporters and high-affinity ABC transporters for sugars, suggesting that they are best suited to low-nutrient conditions. They appear capable of nitrate and nitrite reduction but not N(2) fixation or denitrification. The genomes contained numerous genes that encode siderophore receptors, but no evidence of siderophore production was found, suggesting that they may obtain iron via interaction with other microorganisms. The presence of cellulose synthesis genes and a large class of novel high-molecular-weight excreted proteins suggests potential traits for desiccation resistance, biofilm formation, and/or contribution to soil structure. Polyketide synthase and macrolide glycosylation genes suggest the production of novel antimicrobial compounds. Genes that encode a variety of novel proteins were also identified. The abundance of acidobacteria in soils worldwide and the breadth of potential carbon use by the sequenced strains suggest significant and previously unrecognized contributions to the terrestrial carbon cycle. Combining our genomic evidence with available culture traits, we postulate that cells of these isolates are long-lived, divide slowly, exhibit slow metabolic rates under low-nutrient conditions, and are well equipped to tolerate fluctuations in soil hydration.


Asunto(s)
Bacterias/genética , Bacterias/aislamiento & purificación , ADN Bacteriano/genética , Genoma Bacteriano , Microbiología del Suelo , Antibacterianos/biosíntesis , Transporte Biológico , Metabolismo de los Hidratos de Carbono , Cianobacterias/genética , ADN Bacteriano/química , Hongos/genética , Macrólidos/metabolismo , Datos de Secuencia Molecular , Nitrógeno/metabolismo , Filogenia , Proteobacteria/genética , Análisis de Secuencia de ADN , Homología de Secuencia
7.
PLoS Genet ; 2(2): e21, 2006 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-16482227

RESUMEN

Anaplasma (formerly Ehrlichia) phagocytophilum, Ehrlichia chaffeensis, and Neorickettsia (formerly Ehrlichia) sennetsu are intracellular vector-borne pathogens that cause human ehrlichiosis, an emerging infectious disease. We present the complete genome sequences of these organisms along with comparisons to other organisms in the Rickettsiales order. Ehrlichia spp. and Anaplasma spp. display a unique large expansion of immunodominant outer membrane proteins facilitating antigenic variation. All Rickettsiales have a diminished ability to synthesize amino acids compared to their closest free-living relatives. Unlike members of the Rickettsiaceae family, these pathogenic Anaplasmataceae are capable of making all major vitamins, cofactors, and nucleotides, which could confer a beneficial role in the invertebrate vector or the vertebrate host. Further analysis identified proteins potentially involved in vacuole confinement of the Anaplasmataceae, a life cycle involving a hematophagous vector, vertebrate pathogenesis, human pathogenesis, and lack of transovarial transmission. These discoveries provide significant insights into the biology of these obligate intracellular pathogens.


Asunto(s)
Ehrlichia/genética , Ehrlichiosis/genética , Genómica/métodos , Animales , Biotina/metabolismo , Reparación del ADN , Ehrlichiosis/microbiología , Genoma , Humanos , Modelos Biológicos , Filogenia , Rickettsia/genética , Garrapatas
8.
Int J Dev Biol ; 63(8-9-10): 563-572, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-31840793

RESUMEN

After serving the Dictyostelium community for many years, the first version of dictyBase (Chisholm et al., 2006; Fey et al., 2006) was in need of a decisive update. The original dictyBase software was not adaptable to more current demands such as handling the import of large-scale data from recently sequenced genomes, keeping up with changes in the Gene Ontology (GO), or handling the automatic annotation of over 20,000 new strains. Therefore, we have embarked on a complete overhaul of dictyBase. The new infrastructure will allow the introduction of new data, such as more expressive GO annotations and Dictyostelium disease orthologs. A modern user interface aims to streamline usage of the database including orders from the Dicty Stock Center (DSC). New displays will allow novel views including the combination of data in two new tools. With the underlying software infrastructure now in place, dictyBase software engineers and curators are currently adding the user interfaces, new tools and content pages for the evolving version 2.0 of dictyBase. This review highlights the emerging status of the new dictyBase, updated pages and annotations that will soon be available in the new environment, an overview of our annotation procedures, and plans to involve the community in curation efforts.


Asunto(s)
Bancos de Muestras Biológicas , Bases de Datos Genéticas , Dictyostelium/genética , Dictyostelium/fisiología , Animales , Genes Protozoarios , Genoma de Protozoos , Almacenamiento y Recuperación de la Información , Internet , Mutación , Fenotipo , Plásmidos/genética , Programas Informáticos , Integración de Sistemas , Interfaz Usuario-Computador
9.
BMC Genomics ; 9: 597, 2008 Dec 11.
Artículo en Inglés | MEDLINE | ID: mdl-19077236

RESUMEN

BACKGROUND: Acidithiobacillus ferrooxidans is a major participant in consortia of microorganisms used for the industrial recovery of copper (bioleaching or biomining). It is a chemolithoautrophic, gamma-proteobacterium using energy from the oxidation of iron- and sulfur-containing minerals for growth. It thrives at extremely low pH (pH 1-2) and fixes both carbon and nitrogen from the atmosphere. It solubilizes copper and other metals from rocks and plays an important role in nutrient and metal biogeochemical cycling in acid environments. The lack of a well-developed system for genetic manipulation has prevented thorough exploration of its physiology. Also, confusion has been caused by prior metabolic models constructed based upon the examination of multiple, and sometimes distantly related, strains of the microorganism. RESULTS: The genome of the type strain A. ferrooxidans ATCC 23270 was sequenced and annotated to identify general features and provide a framework for in silico metabolic reconstruction. Earlier models of iron and sulfur oxidation, biofilm formation, quorum sensing, inorganic ion uptake, and amino acid metabolism are confirmed and extended. Initial models are presented for central carbon metabolism, anaerobic metabolism (including sulfur reduction, hydrogen metabolism and nitrogen fixation), stress responses, DNA repair, and metal and toxic compound fluxes. CONCLUSION: Bioinformatics analysis provides a valuable platform for gene discovery and functional prediction that helps explain the activity of A. ferrooxidans in industrial bioleaching and its role as a primary producer in acidic environments. An analysis of the genome of the type strain provides a coherent view of its gene content and metabolic potential.


Asunto(s)
Acidithiobacillus/genética , Acidithiobacillus/metabolismo , Genoma Bacteriano , Biología Computacional , Genes Bacterianos , Microbiología Industrial , Datos de Secuencia Molecular , Familia de Multigenes
10.
PLoS Biol ; 3(1): e15, 2005 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-15660156

RESUMEN

Sequencing and comparative genome analysis of four strains of Campylobacter including C. lari RM2100, C. upsaliensis RM3195, and C. coli RM2228 has revealed major structural differences that are associated with the insertion of phage- and plasmid-like genomic islands, as well as major variations in the lipooligosaccharide complex. Poly G tracts are longer, are greater in number, and show greater variability in C. upsaliensis than in the other species. Many genes involved in host colonization, including racR/S, cadF, cdt, ciaB, and flagellin genes, are conserved across the species, but variations that appear to be species specific are evident for a lipooligosaccharide locus, a capsular (extracellular) polysaccharide locus, and a novel Campylobacter putative licABCD virulence locus. The strains also vary in their metabolic profiles, as well as their resistance profiles to a range of antibiotics. It is evident that the newly identified hypothetical and conserved hypothetical proteins, as well as uncharacterized two-component regulatory systems and membrane proteins, may hold additional significant information on the major differences in virulence among the species, as well as the specificity of the strains for particular hosts.


Asunto(s)
Campylobacter/genética , Campylobacter/patogenicidad , Genoma Bacteriano , Virulencia/genética , Animales , Proteínas Bacterianas/genética , Enfermedades de las Aves/microbiología , Aves , Campylobacter/clasificación , Bovinos , Enfermedades de los Bovinos/microbiología , Funciones de Verosimilitud , Datos de Secuencia Molecular , Filogenia , Alineación de Secuencia , Homología de Secuencia de Aminoácido , Porcinos , Enfermedades de los Porcinos/microbiología
11.
Nat Biotechnol ; 23(7): 873-8, 2005 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-15980861

RESUMEN

Pseudomonas fluorescens Pf-5 is a plant commensal bacterium that inhabits the rhizosphere and produces secondary metabolites that suppress soilborne plant pathogens. The complete sequence of the 7.1-Mb Pf-5 genome was determined. We analyzed repeat sequences to identify genomic islands that, together with other approaches, suggested P. fluorescens Pf-5's recent lateral acquisitions include six secondary metabolite gene clusters, seven phage regions and a mobile genomic island. We identified various features that contribute to its commensal lifestyle on plants, including broad catabolic and transport capabilities for utilizing plant-derived compounds, the apparent ability to use a diversity of iron siderophores, detoxification systems to protect from oxidative stress, and the lack of a type III secretion system and toxins found in related pathogens. In addition to six known secondary metabolites produced by P. fluorescens Pf-5, three novel secondary metabolite biosynthesis gene clusters were also identified that may contribute to the biocontrol properties of P. fluorescens Pf-5.


Asunto(s)
Genoma Bacteriano , Pseudomonas fluorescens/genética , Secuencia de Bases , Transporte Biológico/genética , Genes Bacterianos , Datos de Secuencia Molecular , Familia de Multigenes , Plantas/microbiología , Pseudomonas fluorescens/metabolismo , Análisis de Secuencia de ADN , Sideróforos/biosíntesis , Sideróforos/genética
12.
PLoS Genet ; 1(5): e65, 2005 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-16311624

RESUMEN

We report here the sequencing and analysis of the genome of the thermophilic bacterium Carboxydothermus hydrogenoformans Z-2901. This species is a model for studies of hydrogenogens, which are diverse bacteria and archaea that grow anaerobically utilizing carbon monoxide (CO) as their sole carbon source and water as an electron acceptor, producing carbon dioxide and hydrogen as waste products. Organisms that make use of CO do so through carbon monoxide dehydrogenase complexes. Remarkably, analysis of the genome of C. hydrogenoformans reveals the presence of at least five highly differentiated anaerobic carbon monoxide dehydrogenase complexes, which may in part explain how this species is able to grow so much more rapidly on CO than many other species. Analysis of the genome also has provided many general insights into the metabolism of this organism which should make it easier to use it as a source of biologically produced hydrogen gas. One surprising finding is the presence of many genes previously found only in sporulating species in the Firmicutes Phylum. Although this species is also a Firmicutes, it was not known to sporulate previously. Here we show that it does sporulate and because it is missing many of the genes involved in sporulation in other species, this organism may serve as a "minimal" model for sporulation studies. In addition, using phylogenetic profile analysis, we have identified many uncharacterized gene families found in all known sporulating Firmicutes, but not in any non-sporulating bacteria, including a sigma factor not known to be involved in sporulation previously.


Asunto(s)
Monóxido de Carbono/química , Genoma Bacteriano , Peptococcaceae/genética , Secuencia de Bases , Genes Bacterianos , Genómica , Calor , Modelos Biológicos , Datos de Secuencia Molecular , Estrés Oxidativo , Análisis de Secuencia de ADN
13.
PLoS Biol ; 2(10): e303, 2004 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-15383840

RESUMEN

Methanotrophs are ubiquitous bacteria that can use the greenhouse gas methane as a sole carbon and energy source for growth, thus playing major roles in global carbon cycles, and in particular, substantially reducing emissions of biologically generated methane to the atmosphere. Despite their importance, and in contrast to organisms that play roles in other major parts of the carbon cycle such as photosynthesis, no genome-level studies have been published on the biology of methanotrophs. We report the first complete genome sequence to our knowledge from an obligate methanotroph, Methylococcus capsulatus (Bath), obtained by the shotgun sequencing approach. Analysis revealed a 3.3-Mb genome highly specialized for a methanotrophic lifestyle, including redundant pathways predicted to be involved in methanotrophy and duplicated genes for essential enzymes such as the methane monooxygenases. We used phylogenomic analysis, gene order information, and comparative analysis with the partially sequenced methylotroph Methylobacterium extorquens to detect genes of unknown function likely to be involved in methanotrophy and methylotrophy. Genome analysis suggests the ability of M. capsulatus to scavenge copper (including a previously unreported nonribosomal peptide synthetase) and to use copper in regulation of methanotrophy, but the exact regulatory mechanisms remain unclear. One of the most surprising outcomes of the project is evidence suggesting the existence of previously unsuspected metabolic flexibility in M. capsulatus, including an ability to grow on sugars, oxidize chemolithotrophic hydrogen and sulfur, and live under reduced oxygen tension, all of which have implications for methanotroph ecology. The availability of the complete genome of M. capsulatus (Bath) deepens our understanding of methanotroph biology and its relationship to global carbon cycles. We have gained evidence for greater metabolic flexibility than was previously known, and for genetic components that may have biotechnological potential.


Asunto(s)
Regulación Bacteriana de la Expresión Génica , Genoma , Metano/metabolismo , Methylococcus capsulatus/genética , Proteínas Bacterianas/química , Carbono/química , Transporte de Electrón , Ácidos Grasos/química , Genoma Bacteriano , Genómica/métodos , Metano/química , Modelos Biológicos , Datos de Secuencia Molecular , Nitrógeno/química , Oxígeno/química , Oxígeno/metabolismo , Péptidos/química , Filogenia , Análisis de Secuencia de ADN
14.
Nat Biotechnol ; 22(5): 554-9, 2004 May.
Artículo en Inglés | MEDLINE | ID: mdl-15077118

RESUMEN

Desulfovibrio vulgaris Hildenborough is a model organism for studying the energy metabolism of sulfate-reducing bacteria (SRB) and for understanding the economic impacts of SRB, including biocorrosion of metal infrastructure and bioremediation of toxic metal ions. The 3,570,858 base pair (bp) genome sequence reveals a network of novel c-type cytochromes, connecting multiple periplasmic hydrogenases and formate dehydrogenases, as a key feature of its energy metabolism. The relative arrangement of genes encoding enzymes for energy transduction, together with inferred cellular location of the enzymes, provides a basis for proposing an expansion to the 'hydrogen-cycling' model for increasing energy efficiency in this bacterium. Plasmid-encoded functions include modification of cell surface components, nitrogen fixation and a type-III protein secretion system. This genome sequence represents a substantial step toward the elucidation of pathways for reduction (and bioremediation) of pollutants such as uranium and chromium and offers a new starting point for defining this organism's complex anaerobic respiration.


Asunto(s)
Desulfovibrio vulgaris/genética , Genoma Bacteriano , Desulfovibrio vulgaris/metabolismo , Metabolismo Energético , Datos de Secuencia Molecular
15.
Nat Biotechnol ; 20(11): 1118-23, 2002 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-12368813

RESUMEN

Shewanella oneidensis is an important model organism for bioremediation studies because of its diverse respiratory capabilities, conferred in part by multicomponent, branched electron transport systems. Here we report the sequencing of the S. oneidensis genome, which consists of a 4,969,803-base pair circular chromosome with 4,758 predicted protein-encoding open reading frames (CDS) and a 161,613-base pair plasmid with 173 CDSs. We identified the first Shewanella lambda-like phage, providing a potential tool for further genome engineering. Genome analysis revealed 39 c-type cytochromes, including 32 previously unidentified in S. oneidensis, and a novel periplasmic [Fe] hydrogenase, which are integral members of the electron transport system. This genome sequence represents a critical step in the elucidation of the pathways for reduction (and bioremediation) of pollutants such as uranium (U) and chromium (Cr), and offers a starting point for defining this organism's complex electron transport systems and metal ion-reducing capabilities.


Asunto(s)
Regulación Bacteriana de la Expresión Génica , Genoma Bacteriano , Análisis de Secuencia de ADN , Análisis de Secuencia de Proteína , Shewanella/genética , Shewanella/metabolismo , Secuencia de Aminoácidos , Biodegradación Ambiental , Respiración de la Célula , Transporte de Electrón , Expresión Génica , Metales/metabolismo , Datos de Secuencia Molecular , Sistemas de Lectura Abierta/genética , Compuestos Orgánicos/metabolismo , Oxidación-Reducción , Plásmidos , Proteómica/métodos , Alineación de Secuencia/métodos , Shewanella/clasificación , Shewanella/patogenicidad , Especificidad de la Especie , Contaminantes Químicos del Agua/metabolismo , Purificación del Agua/métodos
16.
Nucleic Acids Res ; 32(8): 2386-95, 2004.
Artículo en Inglés | MEDLINE | ID: mdl-15115801

RESUMEN

The genomes of three strains of Listeria monocytogenes that have been associated with food-borne illness in the USA were subjected to whole genome comparative analysis. A total of 51, 97 and 69 strain-specific genes were identified in L.monocytogenes strains F2365 (serotype 4b, cheese isolate), F6854 (serotype 1/2a, frankfurter isolate) and H7858 (serotype 4b, meat isolate), respectively. Eighty-three genes were restricted to serotype 1/2a and 51 to serotype 4b strains. These strain- and serotype-specific genes probably contribute to observed differences in pathogenicity, and the ability of the organisms to survive and grow in their respective environmental niches. The serotype 1/2a-specific genes include an operon that encodes the rhamnose biosynthetic pathway that is associated with teichoic acid biosynthesis, as well as operons for five glycosyl transferases and an adenine-specific DNA methyltransferase. A total of 8603 and 105 050 high quality single nucleotide polymorphisms (SNPs) were found on the draft genome sequences of strain H7858 and strain F6854, respectively, when compared with strain F2365. Whole genome comparative analyses revealed that the L.monocytogenes genomes are essentially syntenic, with the majority of genomic differences consisting of phage insertions, transposable elements and SNPs.


Asunto(s)
Microbiología de Alimentos , Genoma Bacteriano , Genómica , Listeria monocytogenes/clasificación , Listeria monocytogenes/genética , Composición de Base , Cromosomas Bacterianos/genética , Elementos Transponibles de ADN/genética , Genes Bacterianos/genética , Listeria monocytogenes/metabolismo , Carne/microbiología , Sistemas de Lectura Abierta/genética , Mapeo Físico de Cromosoma , Polimorfismo de Nucleótido Simple/genética , Profagos/genética , Serotipificación , Especificidad de la Especie , Sintenía , Virulencia/genética
17.
Methods Mol Biol ; 983: 59-92, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-23494302

RESUMEN

dictyBase (http://dictybase.org), the model organism database for Dictyostelium discoideum, includes the complete genome sequence and expression data for this organism. Relevant literature is integrated into the database, and gene models and functional annotation are manually curated from experimental results and comparative multigenome analyses. dictyBase has recently expanded to include the genome sequences of three additional Dictyostelids and has added new software tools to facilitate multigenome comparisons. The Dicty Stock Center, a strain and plasmid repository for Dictyostelium research, has relocated to Northwestern University in 2009. This allowed us integrating all Dictyostelium resources to better serve the research community. In this chapter, we will describe how to navigate the Web site and highlight some of our newer improvements.


Asunto(s)
Bases de Datos Genéticas , Dictyostelium/genética , Interfaz Usuario-Computador , Secuencia de Bases , Minería de Datos , Genoma de Protozoos , Anotación de Secuencia Molecular , Datos de Secuencia Molecular , Fenotipo , Proteínas Protozoarias/genética , Motor de Búsqueda , Programas Informáticos
18.
Proc Natl Acad Sci U S A ; 103(36): 13555-9, 2006 Sep 05.
Artículo en Inglés | MEDLINE | ID: mdl-16938853

RESUMEN

Coastal aquatic environments are typically more highly productive and dynamic than open ocean ones. Despite these differences, cyanobacteria from the genus Synechococcus are important primary producers in both types of ecosystems. We have found that the genome of a coastal cyanobacterium, Synechococcus sp. strain CC9311, has significant differences from an open ocean strain, Synechococcus sp. strain WH8102, and these are consistent with the differences between their respective environments. CC9311 has a greater capacity to sense and respond to changes in its (coastal) environment. It has a much larger capacity to transport, store, use, or export metals, especially iron and copper. In contrast, phosphate acquisition seems less important, consistent with the higher concentration of phosphate in coastal environments. CC9311 is predicted to have differences in its outer membrane lipopolysaccharide, and this may be characteristic of the speciation of some cyanobacterial groups. In addition, the types of potentially horizontally transferred genes are markedly different between the coastal and open ocean genomes and suggest a more prominent role for phages in horizontal gene transfer in oligotrophic environments.


Asunto(s)
Adaptación Fisiológica , Ambiente , Genoma Bacteriano , Synechococcus/genética , Synechococcus/fisiología , Emparejamiento Base , Secuencia de Bases , Cromosomas Bacterianos , Mutación del Sistema de Lectura , Modelos Biológicos , Datos de Secuencia Molecular , Sistemas de Lectura Abierta , Operón , Filogenia , Mutación Puntual , ARN de Transferencia
19.
J Bacteriol ; 188(19): 6841-50, 2006 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-16980487

RESUMEN

The dimorphic prosthecate bacteria (DPB) are alpha-proteobacteria that reproduce in an asymmetric manner rather than by binary fission and are of interest as simple models of development. Prior to this work, the only member of this group for which genome sequence was available was the model freshwater organism Caulobacter crescentus. Here we describe the genome sequence of Hyphomonas neptunium, a marine member of the DPB that differs from C. crescentus in that H. neptunium uses its stalk as a reproductive structure. Genome analysis indicates that this organism shares more genes with C. crescentus than it does with Silicibacter pomeroyi (a closer relative according to 16S rRNA phylogeny), that it relies upon a heterotrophic strategy utilizing a wide range of substrates, that its cell cycle is likely to be regulated in a similar manner to that of C. crescentus, and that the outer membrane complements of H. neptunium and C. crescentus are remarkably similar. H. neptunium swarmer cells are highly motile via a single polar flagellum. With the exception of cheY and cheR, genes required for chemotaxis were absent in the H. neptunium genome. Consistent with this observation, H. neptunium swarmer cells did not respond to any chemotactic stimuli that were tested, which suggests that H. neptunium motility is a random dispersal mechanism for swarmer cells rather than a stimulus-controlled navigation system for locating specific environments. In addition to providing insights into bacterial development, the H. neptunium genome will provide an important resource for the study of other interesting biological processes including chromosome segregation, polar growth, and cell aging.


Asunto(s)
Alphaproteobacteria/genética , Caulobacter crescentus/genética , Genoma Bacteriano , Alphaproteobacteria/citología , Alphaproteobacteria/fisiología , Proteínas de la Membrana Bacteriana Externa/genética , Caulobacter crescentus/citología , Caulobacter crescentus/fisiología , Ciclo Celular/genética , Quimiotaxis/genética , Quimiotaxis/fisiología , ADN Bacteriano/química , ADN Bacteriano/genética , Flagelos/fisiología , Viabilidad Microbiana , Datos de Secuencia Molecular , Movimiento , Análisis de Secuencia de ADN , Homología de Secuencia , Transducción de Señal
20.
Genome Res ; 16(8): 1031-40, 2006 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-16825665

RESUMEN

Clostridium perfringens is a Gram-positive, anaerobic spore-forming bacterium commonly found in soil, sediments, and the human gastrointestinal tract. C. perfringens is responsible for a wide spectrum of disease, including food poisoning, gas gangrene (clostridial myonecrosis), enteritis necroticans, and non-foodborne gastrointestinal infections. The complete genome sequences of Clostridium perfringens strain ATCC 13124, a gas gangrene isolate and the species type strain, and the enterotoxin-producing food poisoning strain SM101, were determined and compared with the published C. perfringens strain 13 genome. Comparison of the three genomes revealed considerable genomic diversity with >300 unique "genomic islands" identified, with the majority of these islands unusually clustered on one replichore. PCR-based analysis indicated that the large genomic islands are widely variable across a large collection of C. perfringens strains. These islands encode genes that correlate to differences in virulence and phenotypic characteristics of these strains. Significant differences between the strains include numerous novel mobile elements and genes encoding metabolic capabilities, strain-specific extracellular polysaccharide capsule, sporulation factors, toxins, and other secreted enzymes, providing substantial insight into this medically important bacterial pathogen.


Asunto(s)
Clostridium perfringens/genética , Genoma Bacteriano , Toxinas Bacterianas , Secuencia de Bases , ADN Bacteriano , Datos de Secuencia Molecular , Reacción en Cadena de la Polimerasa
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