Details

Plant Breeding Reviews, Volume 38


Plant Breeding Reviews, Volume 38


Plant Breeding Reviews 1. Aufl.

von: Jules Janick

197,99 €

Verlag: Wiley-Blackwell
Format: PDF
Veröffentl.: 07.11.2014
ISBN/EAN: 9781118916858
Sprache: englisch
Anzahl Seiten: 320

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Beschreibungen

<i>Plant Breeding Reviews</i> presents state-of-the-art reviews on plant genetics and the breeding of all types of crops by both traditional means and molecular methods. Many of the crops widely grown today stem from a very narrow genetic base; understanding and preserving crop genetic resources is vital to the security of food systems worldwide. The emphasis of the series is on methodology, a fundamental understanding of crop genetics, and applications to major crops. It is a serial title that appears in the form of one or two volumes per year.
Contributors ix <p><b>1. Daniel Zohary: Geneticist and Explorer of Plant Domestication 1</b><br /> <i>Giora Simchen</i></p> <p>I. Early Days 2</p> <p>II. Genetic Relationships among Related Plant Species 3</p> <p>III. Domestication of Crops and Fruit Trees 4</p> <p>IV. The Scientific Approach and Methodology of Daniel Zohary 6</p> <p>V. The Book 7</p> <p>VI. Awards, Honors, and Recognition 8</p> <p>VII. Personality 9</p> <p>Literature Cited and Selected Publications of Daniel Zohary 10</p> <p><b>2. The Use of Association Genetics Approaches in Plant Breeding 17</b><br /> <i>María F. Álvarez, Teresa Mosquera, and Matthew W. Blair</i></p> <p>I. Introduction 19</p> <p>II. Advantages of Association Mapping Approaches 20</p> <p>III. Methods of Association Genetics 26</p> <p>IV. Examples of Association Mapping 34</p> <p>V. Software for Data Analysis 46</p> <p>VI. Association Mapping Compared with Linkage Mapping 48</p> <p>VII. Genome-Wide Selection and Genomic Selection 52</p> <p>VIII. Outlook 54</p> <p>Acknowledgments 57</p> <p>Literature Cited 57</p> <p><b>3. Epigenetics Connects the Genome to Its Environment 69</b><br /> <i>Ray A. Bressan, Jian-Kang Zhu, Michael J. Van Oosten, Albino Maggio, Hans J. Bohnert, and Viswanathan</i> Chinnusamy</p> <p>I. Introduction 71</p> <p>II. Historical Perspective and Conceptual Framework 72</p> <p>III. Epigenetics 80</p> <p>IV. Epigenetic Memory 90</p> <p>V. Sex, Epigenetics, and the Genome 93</p> <p>VI. Adaptation is a Form of Development 102</p> <p>VII. Evolution: The Engine of Ideas 108</p> <p>Acknowledgments 121</p> <p>Literature Cited 121</p> <p><b>4. Peanut Improvement for Human Health 143</b><br /> <i>Sangam Dwivedi, Naveen Puppala, Soheila Maleki, Peggy Ozias-Akins, and Rodomiro Ortiz</i></p> <p>I. Introduction 146</p> <p>II. Genetic Variability for Nutritional Traits 149</p> <p>III. Peanut Allergens 153</p> <p>IV. Predicting Seed Quality and Allergens 156</p> <p>V. Genetic and Molecular Bases of High Oleate Trait 159</p> <p>VI. Sequencing the Peanut Genome and Implications in Breeding 159</p> <p>VII. Transgene(s) to Produce Nutrient-Dense and Toxin and Allergen-Free Peanuts 161</p> <p>VIII. Breeding Opportunities 165</p> <p>IX. Outlook 169</p> <p>Acknowledgments 171</p> <p>Literature Cited 171</p> <p><b>5. Rice Breeding in Latin America 187</b><br /> <i>César P. Martínez, Edgar A. Torres, Marc Chatel, Gloria Mosquera, Jorge Duitama, Manabu Ishitani, Michael Selvaraj, Beata Dedicova, Joe Tohme, Cécile Grenier, Mathias Lorieux, Maribel Cruz, Luis Berrío, Edgar Corredor, Gonzalo Zorrilla de San Martin, Flavio Breseghello, Orlando Peixoto, Jose Manoel Colombari Filho, Adriano Pereira de Castro, Sergio Iraçu Gindri Lopes, Mara Barbosa, Gustavo Rodrigo Daltrozzo Funck, Pedro Blanco, Fernando Pérez de Vida, Federico Molina, Juan Rosas, Sebastián Martínez, Victoria Bonnecarrere, Silvia Garaycochea, Gonzalo Carracelas, Alfredo Marin, Fernando Correa-Victoria, Ismael Camargo, and Carlos Bernardo Bruzzone</i></p> <p><i>I. Introductory Remarks 192</i></p> <p>II. The CIAT Rice Program 194</p> <p>III. Advances in Population Improvement in Latin America and the Caribbean 202</p> <p>IV. Genetics and Genomics Approaches to Improve Rice Breeding 206</p> <p>V. Breeding for Resistance to Rice Pathogens 216</p> <p>VI. Breeding for Adaptation to Abiotic Stresses 223</p> <p>VII. Hybrid Rice Breeding 230</p> <p>VIII. Rice Breeding Programs 234</p> <p>IX. Perspectives and Future Directions 265</p> <p>Literature Cited 266</p> <p>Subject Index 279</p> <p>Cumulative Subject Index 281</p> <p>Cumulative Contributor Index 307</p>
<b>Jules Janick</b> is James Troop Distinguished Professor in Horticulture within the Department of Horticulture & Landscape Architecture at Purdue University in West Lafayette, IN, USA.

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