Advances in Rice Research for Abiotic Stress Tolerance

Advances in Rice Research for Abiotic Stress Tolerance
Title Advances in Rice Research for Abiotic Stress Tolerance PDF eBook
Author Mirza Hasanuzzaman
Publisher Woodhead Publishing
Pages 988
Release 2018-11-12
Genre Science
ISBN 0128143339

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Advances in Rice Research for Abiotic Stress Tolerance provides an important guide to recognizing, assessing and addressing the broad range of environmental factors that can inhibit rice yield. As a staple food for nearly half of the world's population, and in light of projected population growth, improving and increasing rice yield is imperative. This book presents current research on abiotic stresses including extreme temperature variance, drought, hypoxia, salinity, heavy metal, nutrient deficiency and toxicity stresses. Going further, it identifies a variety of approaches to alleviate the damaging effects and improving the stress tolerance of rice. Advances in Rice Research for Abiotic Stress Tolerance provides an important reference for those ensuring optimal yields from this globally important food crop. - Covers aspects of abiotic stress, from research, history, practical field problems faced by rice, and the possible remedies to the adverse effects of abiotic stresses - Provides practical insights into a wide range of management and crop improvement practices - Presents a valuable, single-volume sourcebook for rice scientists dealing with agronomy, physiology, molecular biology and biotechnology

Impact of Rice Research

Impact of Rice Research
Title Impact of Rice Research PDF eBook
Author Prabhu L. Pingali
Publisher Int. Rice Res. Inst.
Pages 438
Release 1998
Genre Technology & Engineering
ISBN 9712201066

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Sustainability of Rice in the Global Food System

Sustainability of Rice in the Global Food System
Title Sustainability of Rice in the Global Food System PDF eBook
Author Noreen G. Dowling
Publisher Int. Rice Res. Inst.
Pages 413
Release 1998
Genre Technology & Engineering
ISBN 9712201074

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Fundamentals of Rice Crop Science

Fundamentals of Rice Crop Science
Title Fundamentals of Rice Crop Science PDF eBook
Author Shouichi Yoshida
Publisher Int. Rice Res. Inst.
Pages 278
Release 1981
Genre Rice
ISBN 9711040522

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Growth and development of the rice plant. Climatic environments and its influence. Mineral nutrition of rice. Nutritional disorders. Photosynthesis and respiration. Rice plant characters in relation to yielding ability. Physiological analysis of rice yield.

Recent Advances in Rice Research

Recent Advances in Rice Research
Title Recent Advances in Rice Research PDF eBook
Author Mahmood-Ur- Rahman Ansari
Publisher BoD – Books on Demand
Pages 260
Release 2021-03-03
Genre Technology & Engineering
ISBN 1838810315

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“Recent Advances in Rice Research” is an interdisciplinary book dealing with diverse topics related to recent developments in rice research. The book discusses the latest research activities in the field of hybrid rice, various metabolites produced in rice and its biology, stress studies, and strategies to combat various biotic and abiotic stresses as well as rice economics, value addition, and product development. The book is written by an international team of researchers from all over the globe sharing their results in the field of rice research. I am hopeful that the scientific information available in this book will provide advanced knowledge for rice researchers, students, life scientists, and interested readers on some of the latest developments in rice research.

Principles and Practices of Rice Production

Principles and Practices of Rice Production
Title Principles and Practices of Rice Production PDF eBook
Author Surajit K. De Datta
Publisher Int. Rice Res. Inst.
Pages 642
Release 1981
Genre Rice
ISBN 0471097608

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Rice Improvement

Rice Improvement
Title Rice Improvement PDF eBook
Author Jauhar Ali
Publisher Springer Nature
Pages 507
Release 2021-05-05
Genre Technology & Engineering
ISBN 3030665305

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This book is open access under a CC BY 4.0 license. By 2050, human population is expected to reach 9.7 billion. The demand for increased food production needs to be met from ever reducing resources of land, water and other environmental constraints. Rice remains the staple food source for a majority of the global populations, but especially in Asia where ninety percent of rice is grown and consumed. Climate change continues to impose abiotic and biotic stresses that curtail rice quality and yields. Researchers have been challenged to provide innovative solutions to maintain, or even increase, rice production. Amongst them, the ‘green super rice’ breeding strategy has been successful for leading the development and release of multiple abiotic and biotic stress tolerant rice varieties. Recent advances in plant molecular biology and biotechnologies have led to the identification of stress responsive genes and signaling pathways, which open up new paradigms to augment rice productivity. Accordingly, transcription factors, protein kinases and enzymes for generating protective metabolites and proteins all contribute to an intricate network of events that guard and maintain cellular integrity. In addition, various quantitative trait loci associated with elevated stress tolerance have been cloned, resulting in the detection of novel genes for biotic and abiotic stress resistance. Mechanistic understanding of the genetic basis of traits, such as N and P use, is allowing rice researchers to engineer nutrient-efficient rice varieties, which would result in higher yields with lower inputs. Likewise, the research in micronutrients biosynthesis opens doors to genetic engineering of metabolic pathways to enhance micronutrients production. With third generation sequencing techniques on the horizon, exciting progress can be expected to vastly improve molecular markers for gene-trait associations forecast with increasing accuracy. This book emphasizes on the areas of rice science that attempt to overcome the foremost limitations in rice production. Our intention is to highlight research advances in the fields of physiology, molecular breeding and genetics, with a special focus on increasing productivity, improving biotic and abiotic stress tolerance and nutritional quality of rice.