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Bioinformatics and Molecular Evolution - ISBN 9781405106832

Bioinformatics and Molecular Evolution

ISBN 9781405106832

Autor: Paul G. Higgs, Teresa K. Attwood

Wydawca: Wiley

Dostępność: 3-6 tygodni

Cena: 338,10 zł

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ISBN13:      

9781405106832

ISBN10:      

1405106832

Autor:      

Paul G. Higgs, Teresa K. Attwood

Oprawa:      

Paperback

Rok Wydania:      

2004-12-15

Ilość stron:      

384

Wymiary:      

245x181

Tematy:      

PN

In the current era of complete genome sequencing, Bioinformatics and Molecular Evolution provides an up–to–date and comprehensive introduction to bioinformatics in the context of evolutionary biology.
This accessible text:

provides a thorough examination of sequence analysis, biological databases, pattern recognition, and applications to genomics, microarrays, and proteomics
emphasizes the theoretical and statistical methods used in bioinformatics programs in a way that is accessible to biological science students
places bioinformatics in the context of evolutionary biology, including population genetics, molecular evolution, molecular phylogenetics, and their applications
features end–of–chapter problems and self–tests to help students synthesize the materials and apply their understanding
is accompanied by a dedicated website – www.blackwellpublishing.com/higgs – containing downloadable sequences, links to web resources, answers to self–test questions, and all artwork in downloadable format (artwork also available to instructors on CD–ROM).
This important textbook will equip readers with a thorough understanding of the quantitative methods used in the analysis of molecular evolution, and will be essential reading for advanced undergraduates, graduates, and researchers in molecular biology, genetics, genomics, computational biology, and bioinformatics courses.

Spis treści:
Preface.
Chapter Plan.
Chapter 1. Introduction: The Revolution in Biological Information.
Chapter 2. Nucleic Acids, Proteins, and Amino Acids.
Chapter 3. Molecular Evolution and Population Genetics.
Chapter 4. Models of Sequence Evolution.
Chapter 5. Information Resources for Genes and Proteins.
Chapter 6. Sequence Alignment Algorithms.
Chapter 7. Searching Sequence Databases.
Chapter 8. Phylogenetic Methods.< br>Chapter 9. Patterns in Protein Families.
Chapter 10. Probabilistic Methods and Machine Learning.
Chapter 11. Further Topics in Molecular Evolution and Phylogenetics.
Chapter 12. Genome Evolution.
Chapter 13. DNA Microarrays and the ′omes.
Mathematical Appendix.
List of Web address.
Glossary.
Index.

Nota biograficzna:
Paul Higgs is currently the Canada Research Chair in Biophysics at McMaster University. Previously, he was the course director of the Bioinformatics MSc at Manchester University. He has a PhD in statistical physics from the University of Cambridge. His current research interests include RNA structure and sequence evolution, molecular phylogenetics, theoretical evolutionary biology, and population genetics.
Teresa Attwood is Professor of Bioinformatics at Manchester University, Visiting Fellow at the European Bioinformatics Institute, and author of the PRINTS protein fingerprint database. She has a PhD in biophysics from the University of Leeds, and now teaches national and international courses in bioinformatics. Her current research interests include protein sequence analysis, data visualization, and biomedical text mining.

Okładka tylna:
In the current era of complete genome sequencing, Bioinformatics and Molecular Evolution provides an up–to–date and comprehensive introduction to bioinformatics in the context of evolutionary biology.
This accessible text:

provides a thorough examination of sequence analysis, biological databases, pattern recognition, and applications to genomics, microarrays, and proteomics
emphasizes the theoretical and statistical methods used in bioinformatics programs in a way that is accessible to biological science students
places bioinformatics in the context of evolutionary biology, including population genetics, molecular evolution, molecular phylogenetics, and their applicat ions
features end–of–chapter problems and self–tests to help students synthesize the materials and apply their understanding
is accompanied by a dedicated website – www.blackwellpublishing.com/higgs – containing downloadable sequences, links to web resources, answers to self–test questions, and all artwork in downloadable format (artwork also available to instructors on CD–ROM).
This important textbook will equip readers with a thorough understanding of the quantitative methods used in the analysis of molecular evolution, and will be essential reading for advanced undergraduates, graduates, and researchers in molecular biology, genetics, genomics, computational biology, and bioinformatics courses.

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