Population Genomics : Concepts, Approaches and Applications /: Concepts, Approaches and Applications. ([2019])
- Record Type:
- Book
- Title:
- Population Genomics : Concepts, Approaches and Applications /: Concepts, Approaches and Applications. ([2019])
- Main Title:
- Population Genomics : Concepts, Approaches and Applications
- Further Information:
- Note: Editor, Om P. Rajora.
- Editors:
- Rajora, Om P
- Contents:
- Intro; Preface; Contents; Contributors; Part I: Introduction; Population Genomics: Advancing Understanding of Nature; 1 Introduction; 2 When Is Population Genomics Most Valuable?; 2.1 Estimating Population Genetic Parameters with Genome-Wide Markers: Broad Sense Genomics Approaches; 2.1.1 Genetic Variation and Effective Population Size; 2.1.2 Population Structure and Phylogeography; 2.1.3 Demographic History; 2.1.4 Phylogenomics; 2.2 Identifying Adaptive Genetic Variation Underlying Selective Sweeps; 2.3 Genetic Architecture Underlying Adaptive Differentiation; 2.4 Landscape Genomics 2.4.1 Spatial Signatures of Polygenic Adaptation2.4.2 Landscape Community Genomics: Identifying Loci Underlying Both Species and Landscape Interactions; 2.5 Genome-Wide Association Studies: Loci Associated with Traits Within Populations; 2.6 Quantifying Inbreeding, Inbreeding Depression, and Historical Bottlenecks; 2.7 Delineating Adaptively Differentiated Populations; 2.8 Speciation, Hybrid Zones, Admixture, and Adaptive Introgression; 3 Benefits of Mapped Loci in Population Genomics; 3.1 What Can Physical Maps Provide that Linkage Maps Cannot? 3.2 What Can Linkage Maps Provide that Physical Maps Cannot?3.3 Combining Linkage and Physical Maps: The Ideal Genomics Approach; 3.4 Apply Genomics Approaches Without Maps; 4 Genotyping and Sequencing Technologies for Population Genomics; 4.1 Reduced Representation and Genotyping-by-Sequencing; 4.1.1 RADseq; 4.1.2 Targeted Sequence Capture; 4.1.3 RADIntro; Preface; Contents; Contributors; Part I: Introduction; Population Genomics: Advancing Understanding of Nature; 1 Introduction; 2 When Is Population Genomics Most Valuable?; 2.1 Estimating Population Genetic Parameters with Genome-Wide Markers: Broad Sense Genomics Approaches; 2.1.1 Genetic Variation and Effective Population Size; 2.1.2 Population Structure and Phylogeography; 2.1.3 Demographic History; 2.1.4 Phylogenomics; 2.2 Identifying Adaptive Genetic Variation Underlying Selective Sweeps; 2.3 Genetic Architecture Underlying Adaptive Differentiation; 2.4 Landscape Genomics 2.4.1 Spatial Signatures of Polygenic Adaptation2.4.2 Landscape Community Genomics: Identifying Loci Underlying Both Species and Landscape Interactions; 2.5 Genome-Wide Association Studies: Loci Associated with Traits Within Populations; 2.6 Quantifying Inbreeding, Inbreeding Depression, and Historical Bottlenecks; 2.7 Delineating Adaptively Differentiated Populations; 2.8 Speciation, Hybrid Zones, Admixture, and Adaptive Introgression; 3 Benefits of Mapped Loci in Population Genomics; 3.1 What Can Physical Maps Provide that Linkage Maps Cannot? 3.2 What Can Linkage Maps Provide that Physical Maps Cannot?3.3 Combining Linkage and Physical Maps: The Ideal Genomics Approach; 3.4 Apply Genomics Approaches Without Maps; 4 Genotyping and Sequencing Technologies for Population Genomics; 4.1 Reduced Representation and Genotyping-by-Sequencing; 4.1.1 RADseq; 4.1.2 Targeted Sequence Capture; 4.1.3 RAD Capture; 4.1.4 DArT; 4.2 Reference Genomes; 4.3 Whole-Genome Sequencing (WGS) and Resequencing; 4.4 Population Transcriptomics, Gene Expression, and Adaptation; 5 Bioinformatics for Filtering, Genotyping, and Data Analyses 6 Emerging Population Genomics Approaches6.1 Metagenomics; 6.2 Metatranscriptomics; 6.3 Population Epigenomics; 6.3.1 Epigenetic Variation and Mechanisms; 6.3.2 Associations Between Epigenomic Variation and Phenotypic, Ecological, and Disease Traits; 6.4 Population Proteomics; 6.5 Paleogenomics; 7 Does the Field of Population Genomics Promise More Than It Can Deliver?; 8 Future Perspectives and Needs; 9 Conclusions; References; Part II: Methods; Genotyping and Sequencing Technologies in Population Genetics and Genomics; 1 Introduction; 2 Early Molecular Genetic Markers: Allozymes 3 DNA Markers3.1 Restriction Fragment Length Polymorphisms; 3.2 PCR-Based Fingerprinting and Genotyping; 3.3 Microsatellites; 3.4 DNA Sequencing; 4 SNP Genotyping Arrays; 5 High-Throughput Sequencing Methods; 5.1 General Features of Library Preparation; 5.2 Library Strategies: Length, Sequencing Mode, and Multiplexing; 5.3 Genome Complexity Reduction; 5.3.1 Restriction Enzyme-Based Methods; 5.3.2 Sequence Capture; 5.3.3 RNA Sequencing as ``Natural ́́Genome Complexity Reduction; 5.4 Whole-Genome Sequencing and Re-sequencing; 6 Emerging Sequencing and Genotyping Platforms; 6.1 Illumina … (more)
- Publisher Details:
- Cham, Switzerland : Springer
- Publication Date:
- 2019
- Copyright Date:
- 2019
- Extent:
- 1 online resource
- Subjects:
- 572.8/6
Metagenomics
SCIENCE / Life Sciences / Biochemistry
Electronic books - Languages:
- English
- ISBNs:
- 9783030045890
3030045897 - Related ISBNs:
- 9783030045876
3030045870 - Notes:
- Note: Includes bibliographical references and index.
Note: Online resource; title from PDF title page (EBSCO, viewed January 10, 2019). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.382559
- Ingest File:
- 02_368.xml