Bioinformatics

Höfundur Andreas D. Baxevanis; ‎Gary D. Bader; ‎David S. Wishart

Útgefandi Wiley Global Research (STMS)

Snið ePub

Print ISBN 9781119335580

Útgáfa 4

Höfundarréttur 2020

13.990 kr.

Description

Efnisyfirlit

  • Cover
  • Foreword
  • Preface
  • Contributors
  • About the Companion Website
  • 1 Biological Sequence Databases
  • Introduction
  • Nucleotide Sequence Databases
  • Nucleotide Sequence Flatfiles: A Dissection
  • Protein Sequence Databases
  • Summary
  • Acknowledgments
  • Internet Resources
  • Further Reading
  • References
  • 2 Information Retrieval from Biological Databases
  • Introduction
  • Integrated Information Retrieval: The Entrez System
  • Medical Databases
  • Organismal Sequence Databases Beyond NCBI
  • Summary
  • Further Reading
  • References
  • 3 Assessing Pairwise Sequence Similarity: BLAST and FASTA
  • Introduction
  • Global Versus Local Sequence Alignments
  • Scoring Matrices
  • BLAST
  • BLAST 2 Sequences
  • MegaBLAST
  • PSI-BLAST
  • BLAT
  • FASTA
  • Summary
  • Further Reading
  • References
  • 4 Genome Browsers
  • Introduction
  • The UCSC Genome Browser
  • UCSC Table Browser
  • ENSEMBL Genome Browser
  • Ensembl Biomart
  • JBrowse
  • Summary
  • Further Reading
  • References
  • 5 Genome Annotation
  • Introduction
  • Gene Prediction Methods
  • Ab Initio Gene Prediction in Prokaryotic Genomes
  • Ab Initio Gene Prediction in Eukaryotic Genomes
  • How Well Do Gene Predictors Work?
  • Assessing Prokaryotic Gene Predictors
  • Assessing Eukaryotic Gene Predictors
  • Evidence Generation for Genome Annotation
  • Gene Annotation and Evidence Generation using Comparative Gene Prediction
  • Genome Annotation Pipelines
  • Summary
  • Acknowledgments
  • Internet Resources
  • Further Reading
  • References
  • 6 Predictive Methods Using RNA Sequences
  • Introduction
  • Overview of RNA Secondary Structure Prediction Using Thermodynamics
  • Dynamic Programming
  • Accuracy of RNA Secondary Structure Prediction
  • Predicting the Secondary Structure Common to Multiple RNA Sequences
  • Practical Introduction to Single-Sequence Methods
  • Practical Introduction to Multiple Sequence Methods
  • Other Computational Methods to Study RNA Structure
  • Comparison of Methods
  • Predicting RNA Tertiary Structure
  • Summary
  • Further Reading
  • References
  • 7 Predictive Methods Using Protein Sequences
  • Introduction
  • One-Dimensional Prediction of Protein Structure
  • Predicting Protein Function
  • Summary
  • Further Reading
  • References
  • 8 Multiple Sequence Alignments
  • Introduction
  • Measuring Multiple Alignment Quality
  • Making an Alignment: Practical Issues
  • Commonly Used Alignment Packages
  • Viewing a Multiple Alignment
  • Summary
  • References
  • 9 Molecular Evolution and Phylogenetic Analysis
  • Introduction
  • Early Classification Schemes
  • Sequences As Molecular Clocks
  • Background Terminology and the Basics
  • How to Construct a Tree
  • Marker-Based Evolution Studies
  • Phylogenetic Analysis and Data Integration
  • Future Challenges
  • References
  • 10 Expression Analysis
  • Introduction
  • Step 0: Choose an Expression Analysis Technology
  • Step 1: Design the Experiment
  • Step 2: Collect and Manage the Data – and Metadata
  • Step 3: Data Pre-Processing
  • Step 4: Quality Control
  • Step 5: Normalization and Batch Effects
  • Step 6: Exploratory Data Analysis
  • Step 7: Differential Expression Analysis
  • Step 8: Exploring Mechanisms Through Functional Enrichment Analysis
  • Step 9: Developing a Classifier
  • Single-Cell Sequencing
  • Summary
  • Further Reading
  • References
  • 11 Proteomics and Protein Identification by Mass Spectrometry
  • Introduction
  • Mass Spectrometry
  • Tandem Mass Spectrometry for Peptide Identification
  • Sample Preparation
  • Bioinformatics Analysis for MS-based Proteomics
  • Proteomics Strategies
  • Peptide Mass Fingerprinting
  • PMF on the Web
  • Proteomics and Tandem MS
  • PSM Software
  • PSM on the Web
  • Reporting Standards
  • Proteomics Data Repositories
  • Protein/Proteomics Databases
  • Selected Applications of Proteomics
  • Summary
  • Acknowledgments
  • Internet Resources
  • Further Reading
  • References
  • 12 Protein Structure Prediction and Analysis
  • Introduction to Protein Structures
  • How Protein Structures are Determined
  • How Protein Structures are Described
  • Protein Structure Databases
  • Visualizing Proteins
  • Protein Structure Prediction
  • Protein Structure Evaluation
  • Protein Structure Comparison
  • Summary
  • Further Reading
  • References
  • 13 Biological Networks and Pathways
  • Introduction
  • Pathway and Molecular Interaction Mapping: Experiments and Predictions
  • Pathway and Molecular Interaction Databases: An Overview
  • Pathway Databases
  • Molecular Interaction Databases
  • Functional Interaction Databases
  • Strategies for Navigating Pathway and Interaction Databases
  • Standard Data Formats for Pathways and Molecular Interactions
  • Pathway Visualization and Analysis
  • Network Visualization and Analysis
  • Summary
  • Acknowledgments
  • Internet Resources
  • Further Reading
  • References
  • 14 Metabolomics
  • Introduction
  • Data Formats
  • Databases
  • Bioinformatics for Metabolite Identification
  • Multivariate Statistics
  • Bioinformatics for Metabolite Interpretation
  • Summary
  • Further Reading
  • References
  • 15 Population Genetics
  • Introduction
  • Evolutionary Processes and Genetic Variation
  • Allele Frequencies and Population Variation
  • Display Methods
  • Demographic History Inference
  • Admixture and Ancestry Estimation
  • Detection of Natural Selection
  • Other Applications
  • Summary
  • References
  • 16 Metagenomics and Microbial Community Analysis
  • Introduction
  • Why Study the Microbiome?
  • The Origins of Microbiome Analysis
  • Metagenomic Workflow
  • General Considerations in Marker-Gene and Metagenomic Data Analysis
  • Marker Genes
  • Metagenomic Data Analysis
  • Other Techniques to Characterize the Microbiome
  • Summary
  • Further Reading
  • References
  • 17 Translational Bioinformatics
  • Introduction
  • Databases Describing the Genetics of Human Health
  • Prediction and Characterization of Impactful Genetic Variants from Sequence
  • Computing with Patient Phenotype Using Data in Electronic Health Records
  • Informatics and Precision Medicine
  • Ethical, Legal, and Social Implications of Translational Medicine
  • Summary
  • References
  • 18 Statistical Methods for Biologists
  • Introduction
  • Descriptive Representations of Data
  • Statistical Inference and Statistical Hypothesis Testing
  • Summary
  • Acknowledgments
  • Internet Resources
  • Further Reading
  • References
  • Appendices
  • 1.1 Example of a Flatfile Header in ENA Format
  • 1.2 Example of a Flatfile Header in DDBJ/GenBank Format
  • 1.3 Example of a Feature Table in ENA Format
  • 1.4 Example of a Feature Table in GenBank/DDBJ Format
  • 6.1 Dynamic Programming
  • Reference
  • Glossary
  • Index
  • End User License Agreement

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