Water Transport in Plants Under Climatic Stress
Title | Water Transport in Plants Under Climatic Stress PDF eBook |
Author | M. Borghetti |
Publisher | Cambridge University Press |
Pages | 328 |
Release | 1993-05-13 |
Genre | Nature |
ISBN | 9780521442190 |
The prospect of future climate change has stimulated research into the physiological responses of plants to stress. Water is a key factor controlling the distribution and abundance of plants. This book brings together contributions from a range of experts who have worked on the cavitation of water in the transport system.
Plant Ecophysiology and Adaptation under Climate Change: Mechanisms and Perspectives II
Title | Plant Ecophysiology and Adaptation under Climate Change: Mechanisms and Perspectives II PDF eBook |
Author | Mirza Hasanuzzaman |
Publisher | Springer Nature |
Pages | 866 |
Release | 2020-06-01 |
Genre | Science |
ISBN | 9811521727 |
This book presents the state-of-the-art in plant ecophysiology. With a particular focus on adaptation to a changing environment, it discusses ecophysiology and adaptive mechanisms of plants under climate change. Over the centuries, the incidence of various abiotic stresses such as salinity, drought, extreme temperatures, atmospheric pollution, metal toxicity due to climate change have regularly affected plants and, and some estimates suggest that environmental stresses may reduce the crop yield by up to 70%. This in turn adversely affects the food security. As sessile organisms, plants are frequently exposed to various environmental adversities. As such, both plant physiology and plant ecophysiology begin with the study of responses to the environment. Provides essential insights, this book can be used for courses such as Plant Physiology, Environmental Science, Crop Production and Agricultural Botany. Volume 2 provides up-to-date information on the impact of climate change on plants, the general consequences and plant responses to various environmental stresses.
Adaptation of Plants to Water and High Temperature Stress
Title | Adaptation of Plants to Water and High Temperature Stress PDF eBook |
Author | Neil C. Turner |
Publisher | John Wiley & Sons |
Pages | 504 |
Release | 1980 |
Genre | Science |
ISBN |
Morphological adaptations to water stress. Physiological adaptations to water stress. Adaptation to high temperature stress. Interaction and integration of adaptations to stress. Breeding and selection for adaptation to stress.
Responses of Organisms to Water Stress
Title | Responses of Organisms to Water Stress PDF eBook |
Author | Sener Akinci |
Publisher | BoD – Books on Demand |
Pages | 191 |
Release | 2013-01-16 |
Genre | Science |
ISBN | 9535109332 |
The same amount of water has been present on our planet for about 4 billion years, since shortly after the Earth was formed. Since then it has cycled through evaporation, condensation, precipitation and surface runoff multiple times. Water scarcity as an abiotic factor ranging from moderate to severe stress levels, accompanied by loss of moisture in the soil, is extremely hard for most organisms to cope with, particularly terrestrial plants and their food-chain dependents. Because of the potential for increasing temporary, or posssibly permanent, drought conditions in the future, there is intense focus on improving plant resistance to drought and increasing yield performance in water- limited environments through genotype selection in important crops. This book aims to contribute to understanding of how plants and other organisms respond to water stress conditions, and the various survival strategies adopted under differing moisture levels.
Climate Change and Crop Stress
Title | Climate Change and Crop Stress PDF eBook |
Author | Arun K.Shanker |
Publisher | Academic Press |
Pages | 601 |
Release | 2021-11-19 |
Genre | Science |
ISBN | 0128165359 |
Climate Change and Crop Stress: Molecules to Ecosystems expounds on the transitional period where science has progressed to ‘post-genomics’ and the gene editing era, putting field performance of crops to the forefront and challenging the production of practical applicability vs. theoretical possibility. Researchers have concentrated efforts on the effects of environmental stress conditions such as drought, heat, salinity, cold, or pathogen infection which can have a devastating impact on plant growth and yield. Designed to deliver information to combat stress both in isolation and through simultaneous crop stresses, this edited compilation provides a comprehensive view on the challenges and impacts of simultaneous stresses. Presents a multidisciplinary view of crop stresses, empowering readers to quickly align their individual experience and perspective with the broader context Combines the mechanistic aspects of stresses with the strategic aspects Presents both abiotic and biotic stresses in a single volume
Plant Metabolomics
Title | Plant Metabolomics PDF eBook |
Author | Kazuki Saito |
Publisher | Springer Science & Business Media |
Pages | 351 |
Release | 2006-06-29 |
Genre | Science |
ISBN | 3540297820 |
Metabolomics – which deals with all metabolites of an organism – is a rapidly-emerging sector of post-genome research fields. It plays significant roles in a variety of fields from medicine to agriculture and holds a fundamental position in functional genomics studies and their application in plant biotechnology. This volume comprehensively covers plant metabolomics for the first time. The chapters offer cutting-edge information on analytical technology, bioinformatics and applications. They were all written by leading researchers who have been directly involved in plant metabolomics research throughout the world. Up-to-date information and future developments are described, thereby producing a volume which is a landmark of plant metabolomics research and a beneficial guideline to graduate students and researchers in academia, industry, and technology transfer organizations in all plant science fields.
Drought Stress Tolerance in Plants, Vol 1
Title | Drought Stress Tolerance in Plants, Vol 1 PDF eBook |
Author | Mohammad Anwar Hossain |
Publisher | Springer |
Pages | 538 |
Release | 2016-05-25 |
Genre | Technology & Engineering |
ISBN | 3319288997 |
Abiotic stress adversely affects crop production worldwide, decreasing average yields for most of the crops to 50%. Among various abiotic stresses affecting agricultural production, drought stress is considered to be the main source of yield reduction around the globe. Due to an increasing world population, drought stress will lead to a serious food shortage by 2050. The situation may become worse due to predicated global climate change that may multiply the frequency and duration and severity of such abiotic stresses. Hence, there is an urgent need to improve our understanding on complex mechanisms of drought stress tolerance and to develop modern varieties that are more resilient to drought stress. Identification of the potential novel genes responsible for drought tolerance in crop plants will contribute to understanding the molecular mechanism of crop responses to drought stress. The discovery of novel genes, the analysis of their expression patterns in response to drought stress, and the determination of their potential functions in drought stress adaptation will provide the basis of effective engineering strategies to enhance crop drought stress tolerance. Although the in-depth water stress tolerance mechanisms is still unclear, it can be to some extent explained on the basis of ion homeostasis mediated by stress adaptation effectors, toxic radical scavenging, osmolyte biosynthesis, water transport, and long distance signaling response coordination. Importantly, complete elucidation of the physiological, biochemical, and molecular mechanisms for drought stress, perception, transduction, and tolerance is still a challenge to the plant biologists. The findings presented in volume 1 call attention to the physiological and biochemical modalities of drought stress that influence crop productivity, whereas volume 2 summarizes our current understanding on the molecular and genetic mechanisms of drought stress resistance in plants.