Association Mapping in Plants (eBook)

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2007 | 2007
XIV, 278 Seiten
Springer New York (Verlag)
978-0-387-36011-9 (ISBN)

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This book provides both basic and advanced understanding of association mapping and an awareness of population genomics tools to facilitate mapping and identification of the underlying causes of quantitative trait variation in plants. It acts as a useful review of the marker technology, the statistical methodology, and the progress to date. It also offers guides to the use of single nucleotide polymorphisms (SNPs) in association studies.



Dr. Nnadozie C. Oraguzie is a Senior Scientist in Genetics at the Horticulture and Food Research Institute of New Zealand Ltd (HortResearch).

Dr. Erik H. A. Rikkerink is a Science Leader at HortResearch, New Zealand.

Dr. Susan E. Gardiner is a Principal Scientist and leader of the Gene Mapping research team at HortResearch, New Zealand.

Dr. H. Nihal De Silva is a Senior Scientist of Biometrics at HortResearch, New Zealand.


For the past decade, there has been success in using conventional map-based strategies in identification and cloning of quantitative trait loci (QTL) in model plant species including tomato and Arabidopsis. These quantitative traits are generally the products of many loci with varying degrees of effect upon the observed phenotypes. Recently, a new approach to genetic mapping has emerged called association mapping. This new technique takes into account the thousands of genes to evaluate for QTL effect and is a more efficient approach that does not require generation of segregating populations/large numbers of progeny. As it can utilize all of the historic recombination events in a diverse population of individuals it can generate higher resolution genetic maps and, is needed to complement current map based cloning methods.Association Mapping in Plants provides both basic and advanced understanding of association mapping and an awareness of population genomics tools to facilitate mapping and identification of the underlying causes of quantitative trait variation in plants. It acts as a useful review of the marker technology, the statistical methodology, and the progress to date. It also offers guides to the use of single nucleotide polymorphisms (SNPs) in association studies.

Dr. Nnadozie C. Oraguzie is a Senior Scientist in Genetics at the Horticulture and Food Research Institute of New Zealand Ltd (HortResearch). Dr. Erik H. A. Rikkerink is a Science Leader at HortResearch, New Zealand. Dr. Susan E. Gardiner is a Principal Scientist and leader of the Gene Mapping research team at HortResearch, New Zealand. Dr. H. Nihal De Silva is a Senior Scientist of Biometrics at HortResearch, New Zealand.

Preface 5
Acknowledgements 7
Contents 9
Contributors 11
Introduction 13
AN OVERVIEW OF ASSOCIATION MAPPING 15
LINKAGE DISEQUILIBRIUM 24
WHAT ARE SNPs? 53
SINGLE NUCLEOTIDE POLYMORPHISM DISCOVERY 65
SINGLE NUCLEOTIDE POLYMORPHISMS GENOTYPING IN PLANTS 89
SNP APPLICATIONS IN PLANTS 107
LINKAGE DISEQUILIBRIUM MAPPING CONCEPTS 115
STATISTICAL ANALYSIS AND EXPERIMENTAL DESIGN 145
LINKAGE DISEQUILIBRIUM-BASED ASSOCIATION MAPPING IN FORAGE SPECIES 209
GENE-ASSISTED SELECTION: APPLICATIONS OF ASSOCIATION GENETICS FOR FOREST TREE BREEDING 222
PROSPECTS OF ASSOCIATION MAPPING IN PERENNIAL HORTICULTURAL CROPS 259
Color Plates 280
INDEX 284

Erscheint lt. Verlag 6.1.2007
Zusatzinfo XIV, 278 p.
Verlagsort New York
Sprache englisch
Themenwelt Studium 1. Studienabschnitt (Vorklinik) Biochemie / Molekularbiologie
Naturwissenschaften Biologie Botanik
Naturwissenschaften Biologie Genetik / Molekularbiologie
Technik
Weitere Fachgebiete Land- / Forstwirtschaft / Fischerei
Schlagworte association mapping • biometrics • Genotyp • Plant genetics • plant genomics • recombination
ISBN-10 0-387-36011-5 / 0387360115
ISBN-13 978-0-387-36011-9 / 9780387360119
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