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Predictive Methods for Genomics and Evolution
Towards a New Analytical Biology
Max Garzon (Author), Luis F. Garcia (Author), Alexander Colorado (Author)
9781394317424, Wiley
Hardback, published 17 October 2025
272 pages
24.4 x 17 x 1.6 cm, 0.771 kg
Innovative title providing a systematic account of new alignment-free methods in genomics and bioinformatics, emphasizing their potential to add predictive capabilities to address major and current questions in the science of biology Predictive Methods for Genomics and Evolution provides a cohesive overview of major alignment-based and alignment-free methods in genomics and bioinformatics, primarily based on DNA/RNA. Throughout the book, contrasts between current conventional methods and novel alignment-free methods are presented and evaluated across a wide range of topics. Written by a team of experienced academics with significant research experience in the field, Predictive Methods for Genomics and Evolution discusses major topics including: Predictive Methods for Genomics and Evolution is an essential guide on the subject for professionals, academics, researchers, and students within the fields of genomics, evolutionary biology, phylogenetics and taxonomy, and computational biology and bioinformatics, as well as medical practitioners in related fields.
A companion website for this text can be found here: bmc.memphis.edu/predBiology
Preface xi 1 What Is Biology? 1 2 Genomes to Phenotypes, Environments, and Genomes 37 3 Species Definitions and Their Limitations 57 4 Speciation and Evolution 89 5 From Genomes to Evolution 113 6 Conventional Phylogenetics and Systematics 139 7 New Approaches to Phylogenetics 173 8 About the Origin of Life 185 9 Toward an Analytical Biology 217 10 Appendices 235 Bibliography 244
Acknowledgments xiii
Acronyms xv
1.1 DNA: Nature, Role, and Function 3
1.2 Hybridization Affinity 19
1.3 Summary 30
2.1 Phenotype Determination: The Conventional View 37
2.2 Environments and Autopoiesis 45
2.3 Phenotype Determination: An Alternative View 47
2.4 Summary 52
3.1 The Importance of the Concept of Species 57
3.2 Current Species Definitions 62
3.3 What Exactly Is a "Species"? 69
3.4 A Deeper Definition of "Species" 73
3.5 Summary 84
4.1 Darwinian Evolution 89
4.2 Neo-Darwinian Evolution: The Modern Synthesis 94
4.3 Speciation Processes 97
4.4 Summary 108
5.1 From Genotypes to Phenotypes: Evolutionary Scale 114
5.2 Is the Course of Evolution Predictable at the Macroscale? 120
5.3 Is the Course of Evolution Predictable at the Lineage Scale? 125
5.4 Summary 134
6.1 DNA: The Thin Thread of Life 140
6.2 Distance Methods versus Parsimony Analysis 146
6.3 Probabilistic Methods and Evolutionary Models 149
6.4 Case Study in Molecular Taxonomy: COI 155
6.5 Summary 165
7.1 Phylogenetic Trees 173
7.2 Phylogenetic Tree Assessment 177
7.3 Phylogenetic Hypotheses Based on Deep DNA Structure 178
7.4 Summary 180
8.1 Theories of the Origin of Life on Earth: From Creationism to Panspermia 185
8.2 Complex Systems: A Holistic Approach 188
8.3 A Case Study: Polytene Chromosomes in Black Flies 195
8.4 Summary 210
9.1 What Is Data Science (DS)? 218
9.2 What Is Machine Learning (ML)? 224
9.3 Causality vs. Correlation 226
9.4 What Is Artificial Intelligence (AI)? 228
9.5 The Natural Intelligence of DNA and Biological Organisms 229
9.6 Summary 231
10.1 Genotypes 235
10.2 Standard Biological Taxonomies 235
10.3 Divergence in Black Flies 238
10.4 Software 244
Index 245
Subject Areas: Biology, life sciences [PS]
