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Genome-Wide Association Studies and Genomic Prediction (Paperback, Softcover reprint of the original 1st ed. 2013): Cedric... Genome-Wide Association Studies and Genomic Prediction (Paperback, Softcover reprint of the original 1st ed. 2013)
Cedric Gondro, Julius Van Der Werf, Ben Hayes
R4,701 Discovery Miles 47 010 Ships in 10 - 15 working days

With the detailed genomic information that is now becoming available, we have a plethora of data that allows researchers to address questions in a variety of areas. Genome-wide association studies (GWAS) have become a vital approach to identify candidate regions associated with complex diseases in human medicine, production traits in agriculture, and variation in wild populations. Genomic prediction goes a step further, attempting to predict phenotypic variation in these traits from genomic information. Genome-Wide Association Studies and Genomic Prediction pulls together expert contributions to address this important area of study. The volume begins with a section covering the phenotypes of interest as well as design issues for GWAS, then moves on to discuss efficient computational methods to store and handle large datasets, quality control measures, phasing, haplotype inference, and imputation. Later chapters deal with statistical approaches to data analysis where the experimental objective is either to confirm the biology by identifying genomic regions associated to a trait or to use the data to make genomic predictions about a future phenotypic outcome (e.g. predict onset of disease). As part of the Methods in Molecular Biology series, chapters provide helpful, real-world implementation advice.

Genome-Wide Association Studies and Genomic Prediction (Hardcover, 2013 ed.): Cedric Gondro, Julius Van Der Werf, Ben Hayes Genome-Wide Association Studies and Genomic Prediction (Hardcover, 2013 ed.)
Cedric Gondro, Julius Van Der Werf, Ben Hayes
R7,459 Discovery Miles 74 590 Ships in 10 - 15 working days

With the detailed genomic information that is now becoming available, we have a plethora of data that allows researchers to address questions in a variety of areas. Genome-wide association studies (GWAS) have become a vital approach to identify candidate regions associated with complex diseases in human medicine, production traits in agriculture, and variation in wild populations. Genomic prediction goes a step further, attempting to predict phenotypic variation in these traits from genomic information. Genome-Wide Association Studies and Genomic Prediction pulls together expert contributions to address this important area of study. The volume begins with a section covering the phenotypes of interest as well as design issues for GWAS, then moves on to discuss efficient computational methods to store and handle large datasets, quality control measures, phasing, haplotype inference, and imputation. Later chapters deal with statistical approaches to data analysis where the experimental objective is either to confirm the biology by identifying genomic regions associated to a trait or to use the data to make genomic predictions about a future phenotypic outcome (e.g. predict onset of disease). As part of the Methods in Molecular Biology series, chapters provide helpful, real-world implementation advice.

Adaptation and Fitness in Animal Populations - Evolutionary and Breeding Perspectives on Genetic Resource Management... Adaptation and Fitness in Animal Populations - Evolutionary and Breeding Perspectives on Genetic Resource Management (Paperback, Softcover reprint of hardcover 1st ed. 2009)
Julius Van Der Werf, Hans-Ulrich Graser, Richard Frankham, Cedric Gondro
R5,733 Discovery Miles 57 330 Ships in 10 - 15 working days

Fitness and adaptation are fundamental characteristics of plant and animal species, enabling them to survive in their environment and to adapt to the inevitable changes in this environment. This is true for both the genetic resources of natural ecosystems as well as those used in agricultural production.

Extensive genetic variation exists between varieties/breeds in a species and amongst individuals within breeds. This variation has developed over very long periods of time. A major ongoing challenge is how to best utilize this variation to meet short-term demands whilst also conserving it for longer-term possible use.

Many animal breeding programs have led to increased performance for production traits but this has often been accompanied by reduced fitness. In addition, the global use of genetic resources prompts the question whether introduced genotypes are adapted to local production systems. Understanding the genetic nature of fitness and adaptation will enable us to better manage genetic resources allowing us to make efficient and sustainable decisions for the improvement or breeding of these resources.

This book had an ambitious goal in bringing together a sample of the world s leading scientists in animal breeding and evolutionary genetics to exchange knowledge to advance our understanding of these vital issues.

Adaptation and Fitness in Animal Populations - Evolutionary and Breeding Perspectives on Genetic Resource Management... Adaptation and Fitness in Animal Populations - Evolutionary and Breeding Perspectives on Genetic Resource Management (Hardcover, 2009 ed.)
Julius Van Der Werf, Hans-Ulrich Graser, Richard Frankham, Cedric Gondro
R5,922 Discovery Miles 59 220 Ships in 10 - 15 working days

Fitness and adaptation are fundamental characteristics of plant and animal species, enabling them to survive in their environment and to adapt to the inevitable changes in this environment. This is true for both the genetic resources of natural ecosystems as well as those used in agricultural production.

Extensive genetic variation exists between varieties/breeds in a species and amongst individuals within breeds. This variation has developed over very long periods of time. A major ongoing challenge is how to best utilize this variation to meet short-term demands whilst also conserving it for longer-term possible use.

Many animal breeding programs have led to increased performance for production traits but this has often been accompanied by reduced fitness. In addition, the global use of genetic resources prompts the question whether introduced genotypes are adapted to local production systems. Understanding the genetic nature of fitness and adaptation will enable us to better manage genetic resources allowing us to make efficient and sustainable decisions for the improvement or breeding of these resources.

This book had an ambitious goal in bringing together a sample of the world s leading scientists in animal breeding and evolutionary genetics to exchange knowledge to advance our understanding of these vital issues.

Advances in Breeding of Dairy Cattle (Hardcover): Julius Van Der Werf, Jennie E. Pryce Advances in Breeding of Dairy Cattle (Hardcover)
Julius Van Der Werf, Jennie E. Pryce; Contributions by Allison Fleming, Tatiane Chud, Luiz Brito, …
R5,946 Discovery Miles 59 460 Ships in 10 - 15 working days

This collection reviews the latest research on dairy cattle genetics and advanced methods of genetic evaluation and selection. After an overview of genetic improvements achieved so far, Part 1 assesses the problem of inbreeding and genetic diversity in modern dairy cattle as well as opportunities for crossbreeding. Part 2 then goes onto review research on targeting non-production traits such as fertility, feed conversion efficiency and methane emissions as well as resistance to disease and resilience to heat stress. Part 3 then surveys the latest techniques and advances in genomic selection (GS) in such areas as functional annotation and use of sequence variants to improve genomic prediction, as well as developments in genetic evaluation (GE). The final part of the book reviews developments in embryo technologies, gene editing and the way new techniques are being integrated in practice into dairy breeding programmes.

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