about
Metagenomics - a guide from sampling to data analysisThe importance of metagenomic surveys to microbial ecology: or why Darwin would have been a metagenomic scientistPrediction of a novel RNA binding domain in crocodilepox Zimbabwe Gene 157.Predicted Relative Metabolomic Turnover (PRMT): determining metabolic turnover from a coastal marine metagenomic dataset.Beginner's guide to comparative bacterial genome analysis using next-generation sequence data.Base-By-Base version 2: single nucleotide-level analysis of whole viral genome alignments.The Regulatory Network of Pseudomonas aeruginosa.Linear normalised hash function for clustering gene sequences and identifying reference sequences from multiple sequence alignmentsUse of the University of Minnesota Biocatalysis/Biodegradation Database for study of microbial degradation.Mycobacterium tuberculosis and Clostridium difficille interactomes: demonstration of rapid development of computational system for bacterial interactome prediction.Where the bugs are: analyzing distributions of bacterial phyla by descriptor keyword search in the nucleotide database.PerPlot & PerScan: tools for analysis of DNA curvature-related periodicity in genomic nucleotide sequencesThe zinc-ribbon domain of Helicobacter pylori HP0958: requirement for RpoN accumulation and possible roles of homologs in other bacteria.Large-scale experimental studies show unexpected amino acid effects on protein expression and solubility in vivo in E. coli.Translational web robots for pathogen genome analysis.Bacterial phylogenetic tree construction based on genomic translation stop signalsAn efficient rRNA removal method for RNA sequencing in GC-rich bacteriaDeep sequencing of evolving pathogen populations: applications, errors, and bioinformatic solutions.Stringent response of Escherichia coli: revisiting the bibliome using literature mining.Analysis of evolutionary patterns of genes in Campylobacter jejuni and C. coliComputational genomics-proteomics and Phylogeny analysis of twenty one mycobacterial genomes (Tuberculosis & non Tuberculosis strains).A systematic search for discriminating sites in the 16S ribosomal RNA geneQuantifying the effect of environment stability on the transcription factor repertoire of marine microbesSialic acid utilization by Cronobacter sakazakii.Growth comparison of several Escherichia coli strains exposed to various concentrations of lactoferrin using linear spline regression.Welcome to microbial informatics and experimentationBioinformatic identification of Mycobacterium tuberculosis proteins likely to target host cell mitochondria: virulence factors?Natural genetic engineering: intelligence & design in evolution?
P1433
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P1433
description
journal
@en
revista científica
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wetenschappelijk tijdschrift
@nl
wissenschaftliche Fachzeitschrift
@de
name
Microbial informatics and experimentation
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Microbial informatics and experimentation
@en
Microbial informatics and experimentation
@es
Microbial informatics and experimentation
@nl
type
label
Microbial informatics and experimentation
@ast
Microbial informatics and experimentation
@en
Microbial informatics and experimentation
@es
Microbial informatics and experimentation
@nl
altLabel
Microb Inform Exp
@en
prefLabel
Microbial informatics and experimentation
@ast
Microbial informatics and experimentation
@en
Microbial informatics and experimentation
@es
Microbial informatics and experimentation
@nl
P3181
P1055
P1156
21100853974
P1476
Microbial informatics and experimentation
@en