Triticale: Today and Tomorrow

Triticale: Today and Tomorrow
Title Triticale: Today and Tomorrow PDF eBook
Author Henrique Guedes-Pinto
Publisher Springer Science & Business Media
Pages 837
Release 2012-12-06
Genre Science
ISBN 9400903294

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Triticale's days as a scientific curiosity are definitely over. Its wide acceptance as a feed, grain or forage crop, or for baking and malting, plus its high yields under marginal or stress conditions have made it an economically important crop in countries such as Poland, Germany, Australia, Portugal, Brazil, Morocco and China. This publication contains selected, reviewed, and up-to-date papers presented at the Third International Triticale Symposium held in Lisbon, Portugal, by the International Triticale Association and EUCARPIA. Among the broad spectrum of subjects addressed in these presentations are cytogenetics, biotechnology, genetic resources, breeding, agronomic practices and diseases. Also included are triticale's food, feed and forage uses, as well as its marketing processes. In a world of increasing population and decreasing agricultural resources, triticale offers a genuine solution for increasing land utilization and grain production.

Triticale Improvement and Production

Triticale Improvement and Production
Title Triticale Improvement and Production PDF eBook
Author Mohamed Mergoum
Publisher Food & Agriculture Org.
Pages 176
Release 2004
Genre Business & Economics
ISBN 9789251051825

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Triticale, the first successful human-made cereal grain, was produced in 1875 by crossing wheat with rye. This publication contains updated information on various aspects of triticale production, uses and marketing strategies worldwide; and it includes 13 country reports on the crop's production and research status.

Triticale

Triticale
Title Triticale PDF eBook
Author François Eudes
Publisher Springer
Pages 260
Release 2015-09-10
Genre Science
ISBN 3319225510

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Triticale crop species has received substantial research support since the mid-20th century making it a commercial success in many countries, in diverse value propositions. However, no recent book captures the new knowledge and progresses made in more than 2 decades. The purpose of this work is to review and collate the new knowledge of triticale plant biology and agronomy, while considering the contribution of biotechnology enablers such as molecular markers, doubled haploid technology and genetic engineering in breeding for traits important for crop production, feed, food and industrial end-uses.

Genetic Resources, Chromosome Engineering, and Crop Improvement

Genetic Resources, Chromosome Engineering, and Crop Improvement
Title Genetic Resources, Chromosome Engineering, and Crop Improvement PDF eBook
Author Ram J. Singh
Publisher CRC Press
Pages 457
Release 2006-01-13
Genre Science
ISBN 0203489268

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Summarizing landmark research, Volume 2 of this essential series furnishes information on the availability of germplasm resources that breeders can exploit for producing high-yielding cereal crop varieties. Written by leading international experts, this volume offers the most comprehensive and up-to-date information on employing genetic resources t

Handbook of Cereal Science and Technology, Revised and Expanded

Handbook of Cereal Science and Technology, Revised and Expanded
Title Handbook of Cereal Science and Technology, Revised and Expanded PDF eBook
Author Karel Kulp
Publisher CRC Press
Pages 807
Release 2000-03-28
Genre Technology & Engineering
ISBN 1420027220

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This thoroughly revised second edition addresses the full spectrum of cereal grain science, employing agronomic, chemical, and technological perspectives and providing new and expanded treatment of food enrichment techniques, nutritional standards, and product quality evaluation. Written by over 40 internationally respected authorities, the

Polyploidy and Hybridization for Crop Improvement

Polyploidy and Hybridization for Crop Improvement
Title Polyploidy and Hybridization for Crop Improvement PDF eBook
Author Annaliese S. Mason
Publisher CRC Press
Pages 337
Release 2017-11-22
Genre Science
ISBN 1315352265

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Many of our current agricultural crops are natural or agricultural hybrids (between two or more species), or polyploids (containing more than one genome or set of chromosomes). These include potato, oats, cotton, oilseed rape, wheat, strawberries, kiwifruit, banana, seedless watermelon, triticale and many others. Polyploidy and hybridization can also be used for crop improvement: for example, to introgress disease resistance from wild species into crops, to produce seedless fruits for human consumption, or even to create entirely new crop types. Some crop genera have hundreds of years of interspecific hybridization and ploidy manipulation behind them, while in other genera use of these evolutionary processes for crop improvement is still at the theoretical stage. This book brings together stories and examples by expert researchers and breeders working in diverse crop genera, and details how polyploidy and hybridization processes have shaped our current crops, how these processes have been utilized for crop improvement in the past, and how polyploidy and interspecific hybridization can be used for crop improvement in the future.

Advances in Haploid Production in Higher Plants

Advances in Haploid Production in Higher Plants
Title Advances in Haploid Production in Higher Plants PDF eBook
Author Alisher Touraev
Publisher Springer Science & Business Media
Pages 348
Release 2008-12-18
Genre Science
ISBN 140208854X

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The importance of haploids is well known to geneticists and plant breeders. The discovery of anther-derived haploid Datura plants in 1964 initiated great excitement in the plant breeding and genetics communities as it offered shortcuts in producing highly desirable homozygous plants. Unfortunately, the expected revolution was slow to materialise due to problems in extending methods to other species, including genotypic dependence, recalcitrance, slow development of tissue culture technologies and a lack of knowledge of the underlying processes. Recent years have witnessed great strides in the research and application of haploids in higher plants. After a lull in activities, drivers for the resurgence have been: (1) development of effective tissue culture protocols, (2) identification of genes c- trolling embryogenesis, and (3) large scale and wide spread commercial up-take in plant breeding and plant biotechnology arenas. The first major international symposium on “Haploids in Higher Plants” took place in Guelph, Canada in 1974. At that time there was much excitement about the potential benefits, but in his opening address Sir Ralph Riley offered the following words of caution: “I believe that it is quite likely that haploid research will contr- ute cultivars to agriculture in several crops in the future. However, the more extreme claims of the enthusiasts for haploid breeding must be treated with proper caution. Plant breeding is subject from time to time to sweeping claims from ent- siastic proponents of new procedures.