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Journal Article
by Elsik, Christine G and Worley, Kim C and Bennett, Anna K and Beye, Martin and Camara, Francisco and Childers, Christopher P and de Graaf, Dirk C and Debyser, Griet and Deng, Jixin and Devreese, Bart and Elhaik, Eran and Evans, Jay D and Foster, Leonard J and Graur, Dan and Guigo, Roderic and Hoff, Katharina J and Holder, Michael E and Hudson, Matthew E and Hunt, Greg J and Jiang, Huaiyang and Joshi, Vandita and Khetani, Radhika S and Kosarev, Peter and Kovar, Christie L and Ma, Jian and Maleszka, Ryszard and Moritz, Robin F. A and Munoz-Torres, Monica C and Murphy, Terence D and Muzny, Donna M and Newsham, Irene F and Reese, Justin T and Robertson, Hugh M and Robinson, Gene E and Rueppell, Olav and Solovyev, Victor and Stanke, Mario and Stolle, Eckart and Tsuruda, Jennifer M and Vaerenbergh, Matthias V and Waterhouse, Robert M and Weaver, Daniel B and Whitfield, Charles W and Wu, Yuanqing and Zdobnov, Evgeny M and Zhang, Lan and Zhu, Dianhui and Gibbs, Richard A and Patil, S and Gubbala, S and Aqrawi, P and Arias, F and Bess, C and Blankenburg, K.B and Brocchini, M and Buhay, C and Challis, D and Chang, K and Chen, D and Coleman, P and Drummond, J and English, A and Evani, U and Francisco, L and Fu, Q and Goodspeed, R and Haessly, T.H and Hale, W and Han, H and Hu, Y and Jackson, L and Jakkamsetti, A and Jayaseelan, J.C and Kakkar, N and Kalra, D and Kandadi, H and Lee, S and Li, H and Liu, Y and Macmil, S and Mandapat, C.M and Mata, R and Mathew, T and Matskevitch, T and Munidasa, M and Nagaswamy, U and Najjar, R and Nguyen, N and Niu, J and Opheim, D and Palculict, T and Paul, S and Pellon, M and Perales, L and Pham, C and Pham, P and Pu, L.-L and Qi, S and Qu, J and Ren, Y and ... and Honey Bee Genome Sequencing Consor and HGSC Prod Teams and Honey Bee Genome Sequencing Consortium and HGSC production teams and on behalf of Honey Bee Genome Sequencing Consortium
BMC Genomics, ISSN 1471-2164, 01/2014, Volume 15, Issue 1, pp. 86 - 86
Journal Article
PLoS ONE, ISSN 1932-6203, 2010, Volume 5, Issue 5, pp. e10433 - e10433
Many bacteria in the environment have adapted to the presence of toxic heavy metals. Over the last 30 years, this heavy metal tolerance was the subject of... 
TRANSPORTER CLASSIFICATION DATABASE | 2 CAPSULAR POLYSACCHARIDES | COENZYME-A REDUCTASE | MULTIDISCIPLINARY SCIENCES | HEAVY-METAL RESISTANCE | RALSTONIA-EUTROPHA | INTRACELLULAR 3-HYDROXYBUTYRATE-OLIGOMER HYDROLASE | MICROBIAL SIGNAL-TRANSDUCTION | COPPER-BINDING PROTEIN | ALCALIGENES-EUTROPHUS CH34 | COMPLETE NUCLEOTIDE-SEQUENCE | Multigene Family - genetics | Cupriavidus - genetics | Transcription, Genetic - drug effects | Genes, Bacterial - genetics | Microbial Viability - drug effects | Humans | Bacterial Proteins - genetics | Microbial Viability - genetics | Bacterial Proteins - secretion | Phylogeny | Cupriavidus - metabolism | Sequence Analysis, DNA | Cupriavidus - drug effects | Sequence Homology, Amino Acid | Gene Expression Regulation, Bacterial - drug effects | Genome, Bacterial - genetics | Interspersed Repetitive Sequences - genetics | Metals, Heavy - toxicity | Base Sequence | Plasmids - genetics | Environment | Biological Transport - drug effects | Biological Transport - genetics | Proteins | Ionizing radiation | Transposons | Analysis | Genes | Genomics | Cellular signal transduction | Genetic aspects | Genomes | Heavy metals | Transcription | Arsenic | Laboratories | Metals | Metal concentrations | Biological evolution | Gene sequencing | Reduction (metal working) | Annotations | Bacteria | Oxidation | Chromosomes | Bioinformatics | Efflux | Cadmium | Nucleotide sequence | Gene transfer | Cell division | Anthropogenic factors | Environmental effects | Cellular biology | Plasmids | Transduction | Nuclear physics | Index Medicus
Journal Article
Nature Genetics, ISSN 1061-4036, 11/2014, Volume 47, Issue 1, pp. 84 - 87
A scarlet fever outbreak began in mainland China and Hong Kong in 2011 (refs. 1-6). Macrolide-and tetracycline-resistant Streptococcus pyogenes emm12 isolates... 
INFECTIONS | EVOLUTION | GROUP-A STREPTOCOCCUS | CHINA | GENETICS & HEREDITY | PYOGENES | EPIDEMICS | OUTBREAK | SPREAD | TOOL | Genetic Drift | Humans | Middle Aged | Child, Preschool | Molecular Sequence Data | Phylogeny | Antigens, Bacterial - genetics | Streptococcus pyogenes - genetics | Young Adult | Interspersed Repetitive Sequences - genetics | Disease Outbreaks | Adult | Bacterial Toxins - genetics | Streptococcus pyogenes - classification | Child | Bacterial Outer Membrane Proteins - genetics | Scarlet Fever - epidemiology | Streptococcal Infections - microbiology | Streptococcus pyogenes - drug effects | Bacterial Proteins - genetics | Streptococcal Infections - epidemiology | Mutation Rate | Streptococcus pyogenes - metabolism | Streptococcus pyogenes - virology | Prophages - genetics | Carrier Proteins - genetics | Streptococcus pyogenes - isolation & purification | DNA, Bacterial - genetics | Hong Kong - epidemiology | Adolescent | Exotoxins - genetics | Scarlet Fever - microbiology | Aged | Polymorphism, Single Nucleotide | Drug Resistance, Multiple, Bacterial - genetics | Population Surveillance | Drug resistance in microorganisms | Scarlet fever | Causes of | Streptococcus pyogenes | Genetic aspects | Research | Health aspects | Studies | Surveillance | Genes | Cloning | Phylogenetics | Population | Software | Genomes | Bacteriology | Fever | Acquisitions & mergers | Streptococcus infections | Index Medicus
Journal Article
BMC Genomics, ISSN 1471-2164, 01/2013, Volume 14, Issue 1, pp. 47 - 47
Background: Listeria monocytogenes is an important food-borne pathogen and model organism for host-pathogen interaction, thus representing an invaluable target... 
STATIONARY-PHASE | PHYLOGENETIC LINEAGES | SMALL NONCODING RNA | POSITIVE SELECTION | BACILLUS-SUBTILIS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GENETICS & HEREDITY | SURFACE-PROTEINS | PATHOGENICITY ISLAND | VIRULENCE GENES | SEROVAR 4A | SEROTYPE 4B | Inverted Repeat Sequences - genetics | Rabbits | Genomic Islands - genetics | Species Specificity | Genomics | Humans | Listeria monocytogenes - virology | Phylogeny | Genome, Bacterial - genetics | Interspersed Repetitive Sequences - genetics | Listeria monocytogenes - pathogenicity | Animals | Adaptation, Physiological - genetics | Genetic Markers - genetics | DNA Transposable Elements - genetics | Conserved Sequence | Listeria monocytogenes - genetics | RNA, Small Untranslated - genetics | Models, Genetic | Internet | Listeria monocytogenes - physiology | Evolution, Molecular | Prophages - physiology | Microbial genetics | Usage | Listeria monocytogenes | Physiological aspects | Genetic aspects | Nucleotide sequencing | Research | DNA sequencing | Proteins | Oxidative stress | Microbiology | Listeria | Mortality | Bacteria | Regulation | Genomes | Gene expression | Experiments | Index Medicus | Adaptations | Pathogens | Integration | RNA | Phages | Virulence | Listeriosis | Data processing | Evolutionary genetics | Single-nucleotide polymorphism | Host-pathogen interactions | Cores | Pathogenicity | Serotypes | Evolution | genomics | Models | Mutation | Prophages | transposon Tn916 | Islands | Niches | Food
Journal Article