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1 Introduction to Plant Breeding |
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1 | (18) |
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Plant Breeding and Society |
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2 | (1) |
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Genetics, Omics, and Plant Breeding |
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3 | (1) |
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4 | (1) |
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5 | (2) |
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7 | (1) |
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8 | (1) |
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8 | (2) |
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10 | (1) |
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Genotype-by-Environment Interaction |
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11 | (2) |
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13 | (1) |
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14 | (1) |
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15 | (4) |
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2 Plant Genetic Resources for Food and Agriculture |
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19 | (22) |
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Crop Evolution and Plant Species Feeding the World |
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20 | (2) |
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22 | (1) |
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23 | (1) |
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Describing Variation and Identifying Redundancy |
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24 | (1) |
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25 | (1) |
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26 | (3) |
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Documentation and Bioinformatics |
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29 | (1) |
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Geo-documentation to Identify Germplasm |
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29 | (1) |
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Genebank Sampling and Core Subsets |
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30 | (2) |
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Genomics of Plant Genetic Resources |
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32 | (2) |
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Putting Genes into Usable Forms |
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34 | (1) |
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35 | (6) |
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41 | (20) |
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DNA Markers for Mapping Quantitative Trait Loci (QTL) and Aided Breeding |
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42 | (3) |
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Inbreeding and Line Development |
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45 | (3) |
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48 | (2) |
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Adaptability: Learning for Model Plant Systems |
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50 | (1) |
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Breeding for Stress-Prone Environments and Resource-Use Efficiency |
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51 | (2) |
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Host Plant Resistance Breeding |
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53 | (1) |
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Participatory and Client-Driven Plant Breeding |
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54 | (1) |
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55 | (6) |
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61 | (18) |
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Recurrent Selection and Breeding Populations |
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61 | (2) |
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Genome-Wide Association and Quantitative Trait Variation |
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63 | (4) |
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Plant Genomics and Marker-Assisted Selection |
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67 | (3) |
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Genomic Selection and Prediction of Breeding Values |
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70 | (2) |
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72 | (7) |
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5 Heterosis and Interspecific Hybridization |
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79 | (14) |
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80 | (1) |
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81 | (1) |
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Heterosis in Plant Breeding |
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81 | (1) |
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Understanding Hybrid Vigor in Model Plants and Crops |
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82 | (1) |
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Omics Research on Heterosis |
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83 | (2) |
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Hybrids in Selfing Species |
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85 | (1) |
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86 | (1) |
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Interspecific Hybridization |
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87 | (1) |
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88 | (5) |
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6 Mutations and Epigenetics |
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93 | (10) |
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Induced Mutations and Plant Breeding |
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93 | (1) |
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Induced Mutations and Genomics-Led Plant Breeding |
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94 | (1) |
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Targeting Induced Local Lesions in Genomes (TILLING) |
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95 | (2) |
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97 | (2) |
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99 | (4) |
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7 Genetic Engineering and Transgenic Breeding |
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103 | (22) |
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Plant Genetic Engineering "Issues" |
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104 | (1) |
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105 | (1) |
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106 | (2) |
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Pest Resistance and Impacts on Non-target Organisms |
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108 | (2) |
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Detecting Genetically Modified Organisms and Other Safety Assessments |
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110 | (1) |
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Transgenic Agriculture and Coexistence |
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111 | (1) |
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Plant Genetic Engineering Impacts |
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112 | (1) |
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Transgenic Agriculture Outlook |
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113 | (1) |
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New Plant Breeding Techniques |
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114 | (2) |
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116 | (9) |
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8 DNA Sequencing, Other Omics and Synthetic Biology |
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125 | (16) |
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126 | (1) |
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Next-Generation Sequencing |
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127 | (1) |
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128 | (1) |
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Other Relevant Omics for Plant Breeding |
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129 | (2) |
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131 | (1) |
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Case Study: Omics-Led Legume Breeding |
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132 | (2) |
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Plant Synthetic Biology: Another Tool for Plant Breeding? |
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134 | (1) |
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134 | (7) |
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9 Breeding Self-Fertilizing Plants: From Inbred to Hybrid Cultivars |
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141 | (32) |
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141 | (10) |
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151 | (8) |
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159 | (3) |
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162 | (11) |
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10 Breeding Open-Pollinated, Hybrid and Transgenic Outcrossing Species |
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173 | (28) |
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173 | (12) |
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185 | (3) |
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188 | (4) |
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192 | (9) |
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11 Polyploidy and Plant Breeding |
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201 | (24) |
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205 | (8) |
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213 | (4) |
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217 | (8) |
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12 Seeds, Clones, and Perennials |
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225 | (10) |
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Seed Development: Learning from a Model Plant System |
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227 | (1) |
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Inbred and Open Pollinated Seed Cultivars |
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228 | (1) |
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228 | (1) |
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Rapid Multiplication of Healthy and Improved Planting Material of Vegetatively Propagated Crops |
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229 | (1) |
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230 | (1) |
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Apomixis; Procreation Without Recreation |
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231 | (1) |
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231 | (2) |
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233 | (2) |
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13 Diversity, Intellectual Property, and Plant Variety Protection |
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235 | (12) |
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239 | (1) |
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The Question of Derivatives |
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239 | (1) |
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Multinational Private and Public Seed Sectors |
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240 | (2) |
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Managing Agro-biotechnology Intellectual Property Rights |
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242 | (1) |
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243 | (4) |
Index |
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247 | |