<p>Part I: Animal Breeding and Genetics for Food<br>Animal Breeding and Genetics, Introduction<br>Animal Breeding Methods and Sustainability<br>Animal Breeding, Foundations of<br>Animal Breeding, Long-Term Challenges<br>Animal Breeding, Modeling in<br>Animal Genetic in Environment Interaction<br>Animal Molecular Genetics from Major Genes to Genomics<br>Breeding in Beef Cattle<br>Breeding in Developing Countries and Tropics<br>Breeding in Horses<br>Dairy Cattle Breeding<br>Pig Breeding for Increased Sustainability<br>Poultry Breeding<br>Socially Affected Traits, Inheritance and Genetic Improvement </p><p>Part II: Crop Science and Technology<br>Abiotic Stress Tolerant Crops: Genes, Pathways and Bottlenecks<br>Biomass Crops for Biofuels and Bio-based Products<br>Biotechnology and Nutritional Improvement of Crops<br>Commercialisation of GM Crops: Comparison of Regulatory Frameworks<br>Crop Breeding for Sustainable Agriculture, Genomics Interventions in<br>Crop Plants Transformation MethodsCrop Science and Technology, Introduction<br>Crop Traits: Gene Isolation<br>Genetic Engineering of Crops for Insect Resistance<br>Global Economic Impact of Transgenic/Biotech Crops (1996–2008)<br>GM Crop Risk Debate, Science and Socioeconomics<br>Medicinal Plants, Engineering of Secondary Metabolites in Cell Cultures<br>Molecular Breeding Platforms in World Agriculture<br>Plant Molecular Pharming, Industrial Enzymes<br>Plant Molecular Pharming, Pharmaceuticals for Human Health<br>Plant Molecular Pharming, Veterinary Applications<br>Sustainable Herbicide-Resistant Crops<br>Transgene Expression in Plants, Control of<br>Transgenic Crops Resistant to Fungal, Bacterial, and Viral Pathogens<br>Transgenic Crops, Environmental Impact<br>Transgenic Crops, Next Generation<br>Transgenic Crops, Risk Assessment and Regulatory Framework in the European Union</p><p><p>Part III: Ocean Farming and Sustainable Aquaculture Science and Technology<br>Aquaculture and Renewable Energy Systems, Integration of<br>Aquaculture, Ecological<br>Aquaculture, Integrated Multi-trophic (IMTA)<br>Aquaculture, Sustainability Science in<br>Aquapod Systems for Sustainable Ocean Aquaculture<br>Carrying Capacity for Aquaculture, Modeling Frameworks for Determination of<br>Carrying Capacity for Sustainable Bivalve Aquaculture<br>Environmental Impacts of an Open Ocean Mariculture Operation in Kona, Hawaii<br>Life Cycle Assessments and Their Applications to Aquaculture Production Systems<br>Mariculture Systems, Integrated Land-Based<br>Marine Aquaculture in the Mediterranean<br>Marine Fisheries Enhancement, Coming of Age in the New Millennium<br>Mussel Culture, Open Ocean Innovations<br>Ocean Farming and Sustainable Aquaculture Science and Technology, An Introduction to<br>Polyculture in Aquaculture<br>Seaweed Aquaculture for Human Foods in Land-Based and IMTA Systems<br>Shellfish Aquaculture, Methods of Sustainable<br>Sustainable Ecological Aquaculture </p><p>Part IV: Transgenic Livestock for Food Production<br>Avian Specific Transgenesis<br>Disease-Resistant Transgenic Animals<br>Livestock Somatic Cell Nuclear Transfer<br>Nuclear Transfer to Produce Transgenic Mammals<br>Transgenic Fishes: Applications, State of the Art, and Risk Concerns<br>Transgenic Livestock for Food Production, Introduction<br>Transgenic Livestock Technologies<br>Transgenic Livestock, Decreasing Environmental Impact of<br>Transgenic Livestock, Enhanced Nutritional Quality in<br>Transgenic Livestock, Ethical Concerns and Debate<br>Transgenic Technologies and Increased Livestock Fertility<br>Transgenics: Alternative Gene Transfer Methods</p></p><p>Part III: Ocean Farming and Sustainable Aquaculture Science and Technology<br>Aquaculture and Renewable Energy Systems, Integration of<br>Aquaculture, Ecological<br>Aquaculture, Integrated Multi-trophic (IMTA)<br>Aquaculture, Sustainability Science in<br>Aquapod Systems for Sustainable Ocean Aquaculture<br>Carrying Capacity for Aquaculture, Modeling Frameworks for Determination of<br>Carrying Capacity for Sustainable Bivalve Aquaculture<br>Environmental Impacts of an Open Ocean Mariculture Operation in Kona, Hawaii<br>Life Cycle Assessments and Their Applications to Aquaculture Production Systems<br>Mariculture Systems, Integrated Land-Based<br>Marine Aquaculture in the Mediterranean<br>Marine Fisheries Enhancement, Coming of Age in the New Millennium<br>Mussel Culture, Open Ocean Innovations<br>Ocean Farming and Sustainable Aquaculture Science and Technology, An Introduction to<br>Polyculture in Aquaculture<br>Seaweed Aquaculture for Human Foods in Land-Based and IMTA Systems<br>Shellfish Aquaculture, Methods of Sustainable<br>Sustainable Ecological Aquaculture </p><p>Part IV: Transgenic Livestock for Food Production<br>Avian Specific Transgenesis<br>Disease-Resistant Transgenic Animals<br>Livestock Somatic Cell Nuclear Transfer<br>Nuclear Transfer to Produce Transgenic Mammals<br>Transgenic Fishes: Applications, State of the Art, and Risk Concerns<br>Transgenic Livestock for Food Production, Introduction<br>Transgenic Livestock Technologies<br>Transgenic Livestock, Decreasing Environmental Impact of<br>Transgenic Livestock, Enhanced Nutritional Quality in<br>Transgenic Livestock, Ethical Concerns and Debate<br>Transgenic Technologies and Increased Livestock Fertility<br>Transgenics: Alternative Gene Transfer Methods</p><p><p>Part III: Ocean Farming and Sustainable Aquaculture Science and Technology<br>Aquaculture and Renewable Energy Systems, Integration of<br>Aquaculture, Ecological<br>Aquaculture, Integrated Multi-trophic (IMTA)<br>Aquaculture, Sustainability Science in<br>Aquapod Systems for Sustainable Ocean Aquaculture<br>Carrying Capacity for Aquaculture, Modeling Frameworks for Determination of<br>Carrying Capacity for Sustainable Bivalve Aquaculture<br>Environmental Impacts of an Open Ocean Mariculture Operation in Kona, Hawaii<br>Life Cycle Assessments and Their Applications to Aquaculture Production Systems<br>Mariculture Systems, Integrated Land-Based<br>Marine Aquaculture in the Mediterranean<br>Marine Fisheries Enhancement, Coming of Age in the New Millennium<br>Mussel Culture, Open Ocean Innovations<br>Ocean Farming and Sustainable Aquaculture Science and Technology, An Introduction to<br>Polyculture in Aquaculture<br>Seaweed Aquaculture for Human Foods in Land-Based and IMTA Systems<br>Shellfish Aquaculture, Methods of Sustainable<br>Sustainable Ecological Aquaculture </p><p>Part IV: Transgenic Livestock for Food Production<br>Avian Specific Transgenesis<br>Disease-Resistant Transgenic Animals<br>Livestock Somatic Cell Nuclear Transfer<br>Nuclear Transfer to Produce Transgenic Mammals<br>Transgenic Fishes: Applications, State of the Art, and Risk Concerns<br>Transgenic Livestock for Food Production, Introduction<br>Transgenic Livestock Technologies<br>Transgenic Livestock, Decreasing Environmental Impact of<br>Transgenic Livestock, Enhanced Nutritional Quality in<br>Transgenic Livestock, Ethical Concerns and Debate<br>Transgenic Technologies and Increased Livestock Fertility<br>Transgenics: Alternative Gene Transfer Methods<br><br>Index</p>