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Biotechnology to Enhance Sugarcane Productivity and Stress Tolerance

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Biotechnology to Enhance Sugarcane Productivity and Stress Tolerance Synopsis

Sugarcane is the most important plant source for sugar and alcohol production and is cultivated in more than 80 countries in tropical and subtropical areas. However, environmental factors negatively influence its yield and jeopardize the prospect to meet the increasing demand for sugar, other sugarcane derived by products and bioethanol. The development of stress tolerant plants is fundamental for the maintenance and increase of crop yields. Biotechnology to Enhance Sugarcane Productivity and Stress Tolerance provides a comprehensive account of both theoretical and practical aspects of sugarcane production. It contains extensive coverage of genome mapping and molecular breeding in sugarcane and presents the status of the elucidation and improvement of plant genomes of economic interest. Through 14 chapters written by eminent scientists with global influence, this book examines various methods for sugarcane improvement through biotechnology. The book focuses on genetic and physical mapping, positioning, cloning, and monitoring of desirable genes using biotechnological approaches for high sugarcane productivity and the development of stress tolerance. Additional information includes the bioengineering of sugarcane, procedures to boost productivity, genetics and assessments for resistance to drought and salinity, genetics for high yields, and various topics of research on sugarcane genetics. It serves as a detailed reference source for cane growers, sugar and sugarcane technologists, students, and professors.

About This Edition

ISBN: 9781498754651
Publication date: 1st February 2018
Author: Kalpana (Sardar Vallabhbhai Patel University of Agriculture and Technology, Meerut, Uttar Pradesh, India) Sengar
Publisher: CRC Press Inc an imprint of Taylor & Francis Inc
Format: Hardback
Pagination: 314 pages
Genres: Agribusiness and primary industries
Agricultural science
Botany and plant sciences
Molecular biology