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Genetic Analysis: An Integrated Approach with MasteringGenetics / Edition 1
     

Genetic Analysis: An Integrated Approach with MasteringGenetics / Edition 1

by Mark F. Sanders, John L. Bowman
 

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ISBN-10: 0321690869

ISBN-13: 9780321690869

Pub. Date: 01/06/2012

Publisher: Benjamin Cummings

ALERT: Before you purchase, check with your instructor or review your course syllabus to ensure that you select the correct ISBN. Several versions of Pearson's MyLab & Mastering products exist for each title, including customized versions for individual schools, and registrations are not transferable. In addition, you may need a CourseID,

Overview

ALERT: Before you purchase, check with your instructor or review your course syllabus to ensure that you select the correct ISBN. Several versions of Pearson's MyLab & Mastering products exist for each title, including customized versions for individual schools, and registrations are not transferable. In addition, you may need a CourseID, provided by your instructor, to register for and use Pearson's MyLab & Mastering products.

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Informed by many years of genetics teaching and research experience, authors Mark Sanders and John Bowman use an integrative approach that helps contextualize three core challenges of learning genetics: solving problems, understanding evolution, and understanding the connection between traditional genetics models and more modern approaches.

Product Details

ISBN-13:
9780321690869
Publisher:
Benjamin Cummings
Publication date:
01/06/2012
Edition description:
Older Edition
Pages:
850
Product dimensions:
8.80(w) x 11.10(h) x 1.20(d)

Table of Contents

1 The Molecular Basis of Heredity, Variation, and Evolution

2 Transmission Genetics

3 Cell Division and Chromosome Heredity

4 Gene Interaction

5 Genetic Linkage and Mapping in Eukaryotes

6 Genetic Analysis and Mapping in Bacteria and Bacteriophage

7 DNA Structure and Replication

8 Molecular Biology of Transcription and RNA Processing

9 The Molecular Biology of Translation

10 The Integration of Genetic Approaches: Understanding Sickle Cell Disease

11 Chromosome Structure

12 Gene Mutation, DNA Repair, and Homologous Recombination

13 Chromosome Aberrations and Transposition

14 Regulation of Gene Expression in Bacteria and Bacteriophage

15 Regulation of Gene Expression in Eukaryotes

16 Forward Genetics and Recombinant DNA Technology

17 Applications of Recombinant DNA Technology and Reverse Genetics

18 Genomics: Genetics from a Whole-Genome Perspective

19 Cytoplasmic Inheritance and the Evolution of Organelle Genomes

20 Developmental Genetics

21 Genetic Analysis of Quantitative Traits

22 Population Genetics and Evolution

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