Maize In The Third World

Maize In The Third World

Author: Christopher Dowswell

Publisher: CRC Press

Published: 2019-04-01

Total Pages: 277

ISBN-13: 042972375X

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Maize is the world's most widely grown cereal and a dietary staple throughout the Third World, but its full potential has only begun to be tapped. This book thoroughly examines the biological and economic issues relevant to improving the productivity of maize in developing countries. The authors explore a wide range of practical problems, from maxi


Specialty Corns

Specialty Corns

Author: Arnel R. Hallauer

Publisher: CRC Press

Published: 2000-08-23

Total Pages: 492

ISBN-13: 1420038567

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Completely revised and updated, the Second Edition of Specialty Corns includes everything in the first edition and more. Considered the standard in this field, significant changes have been made to keep all the information current and bring the references up-to-date. Two new chapters have been added to keep up with the latest trends: Blue Corn and


Maize Seed Industries in Developing Countries

Maize Seed Industries in Developing Countries

Author: Michael L. Morris

Publisher: Lynne Rienner Publishers

Published: 1998

Total Pages: 422

ISBN-13: 9781555877903

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Divided into four parts, this volume first lays out the importance of maize seed industries and presents a conceptual framework. The second section describes the key products and processes associated with maize seed industries, including varietal development, marketing, and industrial regulation. The third section offers nine country case studies, while the fourth part discusses the likely future course of seed industry development and alternative organizational forms. Paper edition (unseen), $29.95. Annotation copyrighted by Book News, Inc., Portland, OR


Genomics of the Saccharinae

Genomics of the Saccharinae

Author: Andrew Paterson

Publisher: Springer Science & Business Media

Published: 2012-09-13

Total Pages: 562

ISBN-13: 1441959467

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The Saccharinae clade of the Poaceae (grass) family of flowering plants includes several important crops with a rich history of contributions to humanity and the promise of still-greater contributions, as a result of some of the highest biomass productivity levels known, resilience to drought and other environmental challenges that are likely to increase, amenability to production systems that may mitigate or even reverse losses of ecological capital such as topsoil erosion, and the recent blossoming of sorghum as a botanical and genomic model for the clade. In Genomics of the Saccharinae, advances of the past decade and earlier are summarized and synthesized to elucidate the current state of knowledge of the structure, function, and evolution of the Sorghum, Saccharum, and Miscanthus genera, and progress in the application of this knowledge to crop improvement. As a backdrop, it is important to understand the naturally occurring diversity in each genus, its organization and distribution, and its evolutionary history. Genomic tools and methods for Saccharinae biology and improvement have improved dramatically in the past few years – a detailed summary of these tools and their applications is a central element of this book. Application of genomic tools to priorities in crop improvement, including understanding and manipulating plant growth and development, composition, and defense, as well as increasing the quality and productivity of seed/grain, sugar, biomass, and other value-added products under a range of conditions and inputs, are addressed. In particular, as the first native African crop to emerge as a genomic model, sorghum offers an excellent case study of challenges and opportunities in linking new advances in biosciences to solving some of Africa’s major agricultural problems. Several members of the clade, exemplified by Sorghum halepense (Johnsongrass) offer insights into weediness and invasion biology. The first sequence for a member of the clade, sorghum, as well as progress and challenges toward sequencing of additional members and the new opportunities that this will create, are also explored. Indeed, the very complexities that have hindered study of some clade members also offer intriguing opportunities to gain insight into fundamental questions such as roles of polyploidy in agricultural productivity and post-polyploidy evolution.