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In den WarenkorbHardcover. Zustand: Near Fine. Zustand des Schutzumschlags: No Dust Jacket. Slight wear. Crisp copy.; This second volume of In Vitro Haploid Production in Higher Plants is broadly concerned with special applications and phenomena uniquely associated with haploid plants and their derivation. The first section (18 chapters) covers such topics as genetic stability of microspore-derived doubled haploids, transformation of pollen and microspores, gametoclonal variation, bread-making quality of wheat doubled haploids, DNA amplification of doubled haploids, RFLP mapping with haploids, genetics of green plant regeneration from anther culture, combining mutation breeding with haploidy for the improvement of rapeseed, segregation distortion among anther-derived plants, chromosome engineering, self-incompatibility and pollen rejection, statistical models for the detection of quantitative trait loci, haploid protoplasts, gametosomatic hybrids, potential of using dihaploid/diploid genotypes in breeding potato by somatic hybridization, cryopreservation, prospects of microspore-derived embryos for artificial seeds and the future prospects for crop improvement through anther and microspore culture. Section 2 (3 chapters) is concerned with genetic transformation of wheat and Petunia via pollen, and rice through microspore-derived protoplasts. Table of contentsSection 1: 1. Genetic stability of microspore derived doubled haploids; S.J. Louge. 2. Transformation of pollen and microspores - a review; W. A. Harwood, et al. 3. Gametoclonal variation in crop improvement; B. Huang. 4. Breadmaking quality of doubled haploid lines of wheat; Z. Bedo, et al. 5. DNA amplification of doubled haploids of Nicotiana; S.M. Reed. 6. RFLP-mapping the haploid genome of barley (Hordeum vulgare L.); A. Graner. 7. Mutation and selection for improved oil and meal quality in Brassica napus utilizing microspore culture; L. Kott, et al. 8. Genetics of green plant regeneration from anther culture in cereals; H. Zhou. 9. Segregation distortion in androgenic plants; N. Foisset, R. Delourme. 10. Chromosome engineering in the triticeae using pollen derived plants; Hu Han. 11. Self incompatibility and pollen rejection in angiosperms; A. McCubbin, T.H. Kao. 12. Statistical models for the detection of genes controlling quantitative trait loci expression; E.A. Carbonell, M.J. Asins. 13. Haploid protoplasts: pollen protoplasts; I. Tanaka. 14. Somatic-gameto protoplast fusion; M.K. Davey. 15. The potentials of using dihaploid/diploid genotypes in breeding potato by somatic hybridization; S. Waara. 16. Cryopreservation of androgenics in vitro cultured of cereals; H. Lorz. 17. Artificial seeds from microspore derived embryos of cereals; S.K. Datta. 18. Future prospects for crop improvement through anther and microspore culture; K.N. Kao. Section 2: 19. Genetic transformation of Petunia via pollen; D. Hess. 20. Genetic transformation of wheat via pollen; D. Hess. 21. Genetic transformation of rice from protoplasts of haploid origin; S.K. Datta. ; Current Plant Science And Biotechnology In Agriculture, 24; Vol. 24; 458 pages.
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - Since the beginning of agricultural production, there has been a continuous effort to grow more and better quality food to feed ever increasing popula tions. Both improved cultural practices and improved crop plants have allowed us to divert more human resources to non-agricultural activities while still increasing agricultural production. Malthusian population predictions continue to alarm agricultural researchers, especially plant breeders, to seek new technologies that will continue to allow us to produce more and better food by fewer people on less land. Both improvement of existing cultivars and development of new high-yielding cultivars are common goals for breeders of all crops. In vitro haploid production is among the new technologies that show great promise toward the goal of increasing crop yields by making similar germplasm available for many crops that was used to implement one of the greatest plant breeding success stories of this century, i. e. , the development of hybrid maize by crosses of inbred lines. One of the main applications of anther culture has been to produce diploid homozygous pure lines in a single generation, thus saving many generations of backcrossing to reach homozygosity by traditional means or in crops where self-pollination is not possible. Because doubled haploids are equivalent to inbred lines, their value has been appreciated by plant breeders for decades. The search for natural haploids and methods to induce them has been ongoing since the beginning of the 20th century.
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - Since the beginning of agricultural production, there has been a continuous effort to grow more and better quality food to feed ever increasing popula tions. Both improved cultural practices and improved crop plants have allowed us to divert more human resources to non-agricultural activities while still increasing agricultural production. Malthusian population predictions continue to alarm agricultural researchers, especially plant breeders, to seek new technologies that will continue to allow us to produce more and better food by fewer people on less land. Both improvement of existing cultivars and development of new high-yielding cultivars are common goals for breeders of all crops. In vitro haploid production is among the new technologies that show great promise toward the goal of increasing crop yields by making similar germplasm available for many crops that was used to implement one of the greatest plant breeding success stories of this century, i. e. , the development of hybrid maize by crosses of inbred lines. One of the main applications of anther culture has been to produce diploid homozygous pure lines in a single generation, thus saving many generations of backcrossing to reach homozygosity by traditional means or in crops where self-pollination is not possible. Because doubled haploids are equivalent to inbred lines, their value has been appreciated by plant breeders for decades. The search for natural haploids and methods to induce them has been ongoing since the beginning of the 20th century.
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Verlag: Springer Netherlands, Springer Netherlands, 1997
ISBN 10: 0792339797 ISBN 13: 9780792339793
Sprache: Englisch
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In den WarenkorbBuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - Since the beginning of agricultural production, there has been a continuous effort to grow more and better quality food to feed ever increasing popula tions. Both improved cultural practices and improved crop plants have allowed us to divert more human resources to non-agricultural activities while still increasing agricultural production. Malthusian population predictions continue to alarm agricultural researchers, especially plant breeders, to seek new technologies that will continue to allow us to produce more and better food by fewer people on less land. Both improvement of existing cultivars and development of new high-yielding cultivars are common goals for breeders of all crops. In vitro haploid production is among the new technologies that show great promise toward the goal of increasing crop yields by making similar germplasm available for many crops that was used to implement one of the greatest plant breeding success stories of this century, i. e. , the development of hybrid maize by crosses of inbred lines. One of the main applications of anther culture has been to produce diploid homozygous pure lines in a single generation, thus saving many generations of backcrossing to reach homozygosity by traditional means or in crops where self-pollination is not possible. Because doubled haploids are equivalent to inbred lines, their value has been appreciated by plant breeders for decades. The search for natural haploids and methods to induce them has been ongoing since the beginning of the 20th century.
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In den WarenkorbZustand: New. 2010. Paperback. . . . . . Books ship from the US and Ireland.
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In den WarenkorbZustand: New. 1996. Hardcover. . . . . . Books ship from the US and Ireland.
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In den WarenkorbPaperback. Zustand: Brand New. 1997 edition. 240 pages. 9.25x6.10x0.63 inches. In Stock.
Verlag: Kluwer Academic Publishers, 1997
ISBN 10: 0792339797 ISBN 13: 9780792339793
Sprache: Englisch
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In den WarenkorbZustand: New. This fifth and final volume on "In Vitro Haploid Production in Higher Plants" comprises 13 chapters and is divided into three sections. Most chapters are crop specific and each chapter contains an introduction about the selected plant. Editor(s): Jain, S. Mohan; Sopory, S. K.; Veilleux, R. E. (Dept. of Horticulture, Virginia Polytechnic Institute and State University, Blacksburg, USA). Series: Current Plant Science and Biotechnology in Agriculture. Num Pages: 258 pages, 38 black & white tables, biography. BIC Classification: PSD; PST; TV. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly. Dimension: 254 x 178 x 17. Weight in Grams: 1250. . 1997. 1997th Edition. hardcover. . . . . Books ship from the US and Ireland.
Verlag: Springer Netherlands, Springer Netherlands, 2010
ISBN 10: 9048145791 ISBN 13: 9789048145799
Sprache: Englisch
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - The 18 chapters making up In Vitro Haploid Production in Higher Plants are divided into two sections. Section 1 (eight chapters) covers historical and fundamental aspects of haploidy in crop improvement. Section 2 deals with methods of haploid production, including anther culture, micropore culture, ovary culture, pollination with irradiated pollen, in vitro pollination, and special culture techniques, including polyhaploid production in the Triticeae by sexual hybridization, the influence of ethylene and gelling agents on anther culture, conditional lethal markers, and methods of chromosome doubling.
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - Since the beginning of agricultural production, there has been a continuous effort to grow more and better quality food to feed ever increasing popula tions. Both improved cultural practices and improved crop plants have alIowed us to divert more human resources to non-agricultural activities while still increasing agricultural production. Malthusian population predictions continue to alarm agricultural researchers, especially plant breeders, to seek new technologies that will continue to allow us to produce more and better food by fewer people on less land. Both improvement of existing cultivars and development of new high-yielding cultivars are common goals for breeders of alI crops. In vitro haploid production is among the new technologies that show great promise toward the goal of increasing crop yields by making similar germplasm available for many crops that was used to implement one of the greatest plant breeding success stories of this century, i. e. , the development of hybrid maize by crosses of inbred lines. One of the main applications of anther culture has been to produce diploid homozygous pure lines in a single generation, thus saving many generations of backcrossing to reach homozygosity by traditional means or in crops where self-pollination is not possible. Because doubled haploids are equivalent to inbred lines, their value has been appreciated by plant breeders for decades. The search for natural haploids and methods to induce them has been ongoing since the beginning of the 20th century.