Physiological and biochemical basis of maize seed quality

Physiological and biochemical basis of maize seed quality
Title Physiological and biochemical basis of maize seed quality PDF eBook
Author
Publisher Cuvillier Verlag
Pages 151
Release 2003-03-11
Genre Science
ISBN 3736906714

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Physiological and biochemical basis of maize seed quality

Physiological and biochemical basis of maize seed quality
Title Physiological and biochemical basis of maize seed quality PDF eBook
Author Sunday Adesola Ajayi
Publisher Cuvillier Verlag
Pages 145
Release 2003
Genre
ISBN 9783898736718

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Biological and Genetic Basis of Agronomical and Seed Quality Traits in Legumes

Biological and Genetic Basis of Agronomical and Seed Quality Traits in Legumes
Title Biological and Genetic Basis of Agronomical and Seed Quality Traits in Legumes PDF eBook
Author Jose C. Jimenez-Lopez
Publisher Frontiers Media SA
Pages 448
Release 2022-11-10
Genre Science
ISBN 2832504949

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Seeds

Seeds
Title Seeds PDF eBook
Author J. Derek Bewley
Publisher Springer Science & Business Media
Pages 400
Release 2012-10-23
Genre Science
ISBN 1461446937

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This updated and much revised third edition of Seeds: Physiology of Development, Germination and Dormancy provides a thorough overview of seed biology and incorporates much of the progress that has been made during the past fifteen years. With an emphasis on placing information in the context of the seed, this new edition includes recent advances in the areas of molecular biology of development and germination, as well as fresh insights into dormancy, ecophysiology, desiccation tolerance, and longevity. Authored by preeminent authorities in the field, this book is an invaluable resource for researchers, teachers, and students interested in the diverse aspects of seed biology.

Handbook of Seed Physiology

Handbook of Seed Physiology
Title Handbook of Seed Physiology PDF eBook
Author Roberto Benech-Arnold
Publisher CRC Press
Pages 501
Release 2004-09-21
Genre Science
ISBN 1482277948

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The latest findings in seed physiologydiscussed as they relate to agricultural problems! Presenting the latest findings in the area of seed physiology as well as the practical applications of that knowledge in the field, the Handbook of Seed Physiology: Applications to Agriculture provides a comprehensive view of seed biology and it

Nutrient Use Efficiency: from Basics to Advances

Nutrient Use Efficiency: from Basics to Advances
Title Nutrient Use Efficiency: from Basics to Advances PDF eBook
Author Amitava Rakshit
Publisher Springer
Pages 417
Release 2014-12-26
Genre Technology & Engineering
ISBN 8132221699

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This book addresses in detail multifaceted approaches to boosting nutrient use efficiency (NUE) that are modified by plant interactions with environmental variables and combine physiological, microbial, biotechnological and agronomic aspects. Conveying an in-depth understanding of the topic will spark the development of new cultivars and strains to induce NUE, coupled with best management practices that will immensely benefit agricultural systems, safeguarding their soil, water, and air quality. Written by recognized experts in the field, the book is intended to provide students, scientists and policymakers with essential insights into holistic approaches to NUE, as well as an overview of some successful case studies. In the present understanding of agriculture, NUE represents a question of process optimization in response to the increasing fragility of our natural resources base and threats to food grain security across the globe. Further improving nutrient use efficiency is a prerequisite to reducing production costs, expanding crop acreage into non-competitive marginal lands with low nutrient resources, and preventing environmental contamination. The nutrients most commonly limiting plant growth are N, P, K, S and micronutrients like Fe, Zn, B and Mo. NUE depends on the ability to efficiently take up the nutrient from the soil, but also on transport, storage, mobilization, usage within the plant and the environment. A number of approaches can help us to understand NUE as a whole. One involves adopting best crop management practices that take into account root-induced rhizosphere processes, which play a pivotal role in controlling nutrient dynamics in the soil-plant-atmosphere continuum. New technologies, from basic tools like leaf color charts to sophisticated sensor-based systems and laser land leveling, can reduce the dependency on laboratory assistance and manual labor. Another approach concerns the development of crop plants through genetic manipulations that allow them to take up and assimilate nutrients more efficiently, as well as identifying processes of plant responses to nutrient deficiency stress and exploring natural genetic variation. Though only recently introduced, the ability of microbial inoculants to induce NUE is gaining in importance, as the loss, immobilization, release and availability of nutrients are mediated by soil microbial processes.

Drought Stress in Maize (Zea mays L.)

Drought Stress in Maize (Zea mays L.)
Title Drought Stress in Maize (Zea mays L.) PDF eBook
Author Muhammad Aslam
Publisher Springer
Pages 79
Release 2015-11-20
Genre Science
ISBN 3319254421

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This book focuses on early germination, one of maize germplasm most important strategies for adapting to drought-induced stress. Some genotypes have the ability to adapt by either reducing water losses or by increasing water uptake. Drought tolerance is also an adaptive strategy that enables crop plants to maintain their normal physiological processes and deliver higher economical yield despite drought stress. Several processes are involved in conferring drought tolerance in maize: the accumulation of osmolytes or antioxidants, plant growth regulators, stress proteins and water channel proteins, transcription factors and signal transduction pathways. Drought is one of the most detrimental forms of abiotic stress around the world and seriously limits the productivity of agricultural crops. Maize, one of the leading cereal crops in the world, is sensitive to drought stress. Maize harvests are affected by drought stress at different growth stages in different regions. Numerous events in the life of maize crops can be affected by drought stress: germination potential, seedling growth, seedling stand establishment, overall growth and development, pollen and silk development, anthesis silking interval, pollination, and embryo, endosperm and kernel development. Though every maize genotype has the ability to avoid or withstand drought stress, there is a concrete need to improve the level of adaptability to drought stress to address the global issue of food security. The most common biological strategies for improving drought stress resistance include screening available maize germplasm for drought tolerance, conventional breeding strategies, and marker-assisted and genomic-assisted breeding and development of transgenic maize. As a comprehensive understanding of the effects of drought stress, adaptive strategies and potential breeding tools is the prerequisite for any sound breeding plan, this brief addresses these aspects.