Genetic Mapping And Dna Sequencing Principles Analysis And Applications

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Genetic Mapping and DNA Sequencing: Principles, Analysis and Applications

Proximate DNA sequences on a chromosome are inherited together during sexual reproduction. This tendency of DNA sequences is called genetic linkage. On a chromosome, the closer two genes are, the higher are their chances of being inherited together and lower are the chances of recombination between them. Gene mapping refers to the set of methods that allow the identification of the locus of a gene as well as the distances between genes. It offers evidences regarding the genes that are responsible for the inheritance of disease from parent to child, and also provides clues regarding the location of the genes and the chromosome where they are located. DNA sequencing is the process that determines the nucleic acid sequence or the order of nucleotides in the DNA. It encompasses all methods that can determine the order of the four bases- thymine, guanine, adenine and cytosine. The development of genetic maps and the successful sequencing of the human genome have advanced the frontiers of genetics and medical science. This book aims to shed light on some of the unexplored aspects of genetic mapping and DNA sequencing and the recent researches in these domains. It includes some of the vital pieces of work being conducted across the world, on various topics related to these fields. This book will prove immensely beneficial to geneticists, genetic engineers, students and researchers associated with these areas of study.
Principles and Techniques of Biochemistry and Molecular Biology

Author: Keith Wilson
language: en
Publisher: Cambridge University Press
Release Date: 2010-03-04
Uniquely integrates the theory and practice of key experimental techniques for bioscience undergraduates. Now includes drug discovery and clinical biochemistry.
Principles of Genomics and Proteomics

Principles of Genomics and Proteomics is the perfect reference for graduate students and researchers in these areas to understand its principles and execute precise and reproducible experiments. Following an introductory chapter, the book dives into proper research, including genome mapping. Experiments covered in the book span from Sangers Sequencing, Shotgun sequencing, SAGE analysis, DNA footprinting, Gel retardation, ChIP, and protein resolution methods, including PAGE, 2D gel electrophoresis and isoelectric focusing. Biophysical techniques are also described in detail, including ultraviolet and visible light spectroscopy, fluorescence spectroscopy, NMR and X-ray diffraction. A final proteome analysis is dedicated to functional analysis. Other chapters cover applications of omics technologies broadly. This book is the perfect reference for genetics labs around the world. Graduate students will benefit from the structured and detailed coverage of methods and established researchers will benefit from the book for staff training in research and may find it particularly helpful in enhancing reproducibility of experiments. Provides a comprehensive accounting of the technical aspects of genomic and proteomic analysis and applications in living organisms Includes detailed and standardized coverage of basic research methods in areas covered Presents advanced applications of genomics and proteomics that are highlighted with major significance in medical and agricultural fields