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Plant breeding --- Plant genetic engineering --- Plant physiology
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Crops --- Phenotype. --- Genetics. --- Analysis. --- Plant genetics --- Phenotypes --- Genetics --- Genotype-environment interaction --- Agricultural crops --- Crop plants --- Farm crops --- Industrial crops --- Farm produce --- Plants, Cultivated --- Agronomy --- Crop science --- Plant products --- Conreu --- Millorament selectiu de plantes --- Fenotip
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This book examines the application of soybean genome sequences to comparative, structural, and functional genomics. Since the availability of the soybean genome sequence has revolutionized molecular research on this important crop species, the book also describes how the genome sequence has shaped research on transposon biology and applications for gene identification, tilling and positional gene cloning. Further, the book shows how the genome sequence influences research in the areas of genetic mapping, marker development, and genome-wide association mapping for identifying important trait genes and soybean breeding. In closing, the economic and botanical aspects of the soybean are also addressed.
Life sciences. --- Agriculture. --- Plant breeding. --- Life Sciences. --- Plant Breeding/Biotechnology. --- Plant Genetics and Genomics. --- Soybean --- Genetics. --- Beer bean --- Dolichos soja --- Edamame --- Edible soybean --- Garden soybean --- Glycine gracilis --- Glycine hispida --- Glycine max --- Mao dou --- Phaseolus max --- Soja bean --- Soja hispida --- Soja max --- Soy-bean --- Soya --- Soya bean --- Soybean groundnut --- Sweet bean --- Vegetable soybean --- Beans --- Glycine (Plants) --- Plant genetics. --- Farming --- Husbandry --- Industrial arts --- Life sciences --- Food supply --- Land use, Rural --- Plants --- Genetics --- Crops --- Agriculture --- Breeding
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This book examines the application of soybean genome sequences to comparative, structural, and functional genomics. Since the availability of the soybean genome sequence has revolutionized molecular research on this important crop species, the book also describes how the genome sequence has shaped research on transposon biology and applications for gene identification, tilling and positional gene cloning. Further, the book shows how the genome sequence influences research in the areas of genetic mapping, marker development, and genome-wide association mapping for identifying important trait genes and soybean breeding. In closing, the economic and botanical aspects of the soybean are also addressed.
Plant genetics. Plant evolution --- Plant physiology. Plant biophysics --- Botany --- Agriculture. Animal husbandry. Hunting. Fishery --- Biotechnology --- systematische plantkunde --- genomics --- bevolking --- landbouw --- biotechnologie --- klonen --- planten --- moleculaire biologie
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The increased knowledge about the structure of genomes in a number of species, about the complexity of transcriptomes, and the rapid growth in knowledge about mutant phenotypes have set off the large scale use of transgenes to answer basic biological questions, and to generate new crops and novel products. This volume includes twelve chapters, which to variable degrees describe the use of transgenic plants to explore possibilities and approaches for the modification of plant metabolism, adaptation or development. The interests of the authors range from tool development, to basic biochemical
Botanical chemistry. --- Plant biotechnology. --- Plant molecular biology. --- Chimie végétale --- Plantes --- Biologie moléculaire végétale --- Biotechnologie --- Ingeniería Genética y Genómica (70981102) |x Bibliografía recomendada --- Molecular phytobiology --- Phytobiology, Molecular --- Botany --- Molecular biology --- Crop biotechnology --- Crops --- Plants --- Agricultural biotechnology --- Phytochemistry --- Plant biochemistry --- Plant chemistry --- Biochemistry --- Phytochemicals --- Plant biochemical genetics --- Biotechnology
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The increased knowledge about the structure of genomes in a number of species, about the complexity of transcriptomes, and the rapid growth in knowledge about mutant phenotypes have set off the large scale use of transgenes to answer basic biological questions, and to generate new crops and novel products. This volume includes twelve chapters, which to variable degrees describe the use of transgenic plants to explore possibilities and approaches for the modification of plant metabolism, adaptation or development. The interests of the authors range from tool development, to basic biochemical know-how about the engineering of enzymes, to exploring avenues for the modification of complex multigenic pathways, and include several examples for the engineering of specific pathways in different organs and developmental stages. * Prologue by Paul K. Stumpf and Eric E. Conn * Incorporates new concepts and insights in plant biochemistry and biology * Provides a conceptual framework regarding the challenges faced in engineering pathways * Discusses potential in engineering of metabolic end-products that are of vast economical importance including genetic engineering of cellulose, seed storage proteins, and edible and industrial oils.
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This book provides an overview of the innovations in crop phenotyping using emerging technologies, i.e., high-throughput crop phenotyping technology, including its concept, importance, breakthrough and applications in different crops and environments. Emerging technologies in sensing, machine vision and high-performance computing are changing the world beyond our imagination. They are also becoming the most powerful driver of the innovation in agriculture technology, including crop breeding, genetics and management. It includes the state of the art of technologies in high-throughput phenotyping, including advanced sensors, automation systems, ground-based or aerial robotic systems. It also discusses the emerging technologies of big data processing and analytics, such as advanced machine learning and deep learning technologies based on high-performance computing infrastructure. The applications cover different organ levels (root, shoot and seed) of different crops (grains, soybean, maize, potato) at different growth environments (open field and controlled environments). With the contribution of more than 20 world-leading researchers in high-throughput crop phenotyping, the authors hope this book provides readers the needed information to understand the concept, gain the insides and create the innovation of high-throughput phenotyping technology.
Biomathematics. Biometry. Biostatistics --- Biological techniques --- Plant genetics. Plant evolution --- Agriculture. Animal husbandry. Hunting. Fishery --- Biotechnology --- systematische plantkunde --- biologische technieken --- bio-informatica --- biologie --- landbouw --- biotechnologie --- planten
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This eBook is a collection of articles from a Frontiers Research Topic. Frontiers Research Topics are very popular trademarks of the Frontiers Journals Series: they are collections of at least ten articles, all centered on a particular subject. With their unique mix of varied contributions from Original Research to Review Articles, Frontiers Research Topics unify the most influential researchers, the latest key findings and historical advances in a hot research area! Find out more on how to host your own Frontiers Research Topic or contribute to one as an author by contacting the Frontiers Editorial Office: frontiersin.org/about/contact
Science: general issues --- Botany & plant sciences --- drought-resistance --- crop breeding --- genome-wide association study --- transcriptome --- phenotyping --- omics
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This eBook is a collection of articles from a Frontiers Research Topic. Frontiers Research Topics are very popular trademarks of the Frontiers Journals Series: they are collections of at least ten articles, all centered on a particular subject. With their unique mix of varied contributions from Original Research to Review Articles, Frontiers Research Topics unify the most influential researchers, the latest key findings and historical advances in a hot research area! Find out more on how to host your own Frontiers Research Topic or contribute to one as an author by contacting the Frontiers Editorial Office: frontiersin.org/about/contact
drought-resistance --- crop breeding --- genome-wide association study --- transcriptome --- phenotyping --- omics
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