Insights in plant abiotic stress: 2021
Title | Insights in plant abiotic stress: 2021 PDF eBook |
Author | Luisa M. Sandalio |
Publisher | Frontiers Media SA |
Pages | 229 |
Release | 2023-01-06 |
Genre | Science |
ISBN | 2832511015 |
Insights in Plant Physiology: 2021
Title | Insights in Plant Physiology: 2021 PDF eBook |
Author | Anna N. Stepanova |
Publisher | Frontiers Media SA |
Pages | 150 |
Release | 2022-10-18 |
Genre | Science |
ISBN | 2832502776 |
Abiotic and Biotic Stress in Horticultural Crops: Insight into Recent Advances in the Underlying Tolerance Mechanism
Title | Abiotic and Biotic Stress in Horticultural Crops: Insight into Recent Advances in the Underlying Tolerance Mechanism PDF eBook |
Author | Milan Kumar Lal |
Publisher | Frontiers Media SA |
Pages | 697 |
Release | 2023-06-21 |
Genre | Science |
ISBN | 283252690X |
Insights in plant biotechnology: 2021
Title | Insights in plant biotechnology: 2021 PDF eBook |
Author | James Lloyd |
Publisher | Frontiers Media SA |
Pages | 291 |
Release | 2023-03-02 |
Genre | Science |
ISBN | 2832516580 |
Microbial Management of Plant Stresses
Title | Microbial Management of Plant Stresses PDF eBook |
Author | Ajay Kumar |
Publisher | Woodhead Publishing |
Pages | 282 |
Release | 2021-07-31 |
Genre | Science |
ISBN | 0323859208 |
Microbial Management of Plant Stresses: Current Trends, Application and Challenges explores plant microbiota including isolated microbial communities that have been used to study the functional capacities, ecological structure and dynamics of the plant-microbe interaction with focus on agricultural crops. Presenting multiple examples and evidence of the potential genetic flexibility of microbial systems to counteract the climate induced stresses associated with their host as a part of indigenous system, this book presents strategies and approaches for improvement of microbiome. As climate changes have altered the global carbon cycling and ecological dynamics, the regular and periodic occurrences of severe salinity, drought, and heat stresses across the different regimes of the agro-ecological zones have put additional constraints on agricultural ecosystem to produce efficient foods and other derived products for rapidly growing world population through low cost and sustainable technology. Furthermore chemical amendments, agricultural inputs and other innovative technologies although may have fast results with fruitful effects for enhancing crop productivity but also have other ecological drawbacks and environmental issues and offer limited use opportunities. Microbial formulations and/or microbial consortia deploying two or multiple partners have been frequently used for mitigation of various stresses, however, field success is often variable and improvement Smart, knowledge-driven selection of microorganisms is needed as well as the use of suitable delivery approaches and formulations. Microbial Management of Plant Stresses: Current Trends, Application and Challenges presents the functional potential of plant microbiota to address current challenges in crop production addressing this urgent need to bring microbial innovations into practice. - Demonstrates microbial ecosystems as an indigenous system for improving plant growth, health and stress resilience - Covers all the novel aspects of microbial regulatory mechanism. Key challenges associated with microbial delivery and successful establishment for plant growth promotion and stress avoidance - Explores plant microbiome and the modulation of plant defense and ecological dynamics under stressed environment
Root Adaptations to Multiple Stress Factors
Title | Root Adaptations to Multiple Stress Factors PDF eBook |
Author | Idupulapati Madhusudana Rao |
Publisher | Frontiers Media SA |
Pages | 197 |
Release | 2021-02-25 |
Genre | Science |
ISBN | 2889665143 |
Plant Performance Under Environmental Stress
Title | Plant Performance Under Environmental Stress PDF eBook |
Author | Azamal Husen |
Publisher | Springer Nature |
Pages | 604 |
Release | 2021-08-23 |
Genre | Science |
ISBN | 3030785211 |
Global climate change is bound to create a number of abiotic and biotic stresses in the environment, which would affect the overall growth and productivity of plants. Like other living beings, plants have the ability to protect themselves by evolving various mechanisms against stresses, despite being sessile in nature. They manage to withstand extremes of temperature, drought, flooding, salinity, heavy metals, atmospheric pollution, toxic chemicals and a variety of living organisms, especially viruses, bacteria, fungi, nematodes, insects and arachnids and weeds. Incidence of abiotic stresses may alter the plant-pest interactions by enhancing susceptibility of plants to pathogenic organisms. These interactions often change plant response to abiotic stresses. Plant growth regulators modulate plant responses to biotic and abiotic stresses, and regulate their growth and developmental cascades. A number of physiological and molecular processes that act together in a complex regulatory network, further manage these responses. Crosstalk between autophagy and hormones also occurs to develop tolerance in plants towards multiple abiotic stresses. Similarly, biostimulants, in combination with correct agronomic practices, have shown beneficial effects on plant metabolism due to the hormonal activity that stimulates different metabolic pathways. At the same time, they reduce the use of agrochemicals and impart tolerance to biotic and abiotic stress. Further, the use of bio- and nano-fertilizers seem to hold promise to improve the nutrient use efficiency and hence the plant yield under stressful environments. It has also been shown that the seed priming agents impart stress tolerance. Additionally, tolerance or resistance to stress may also be induced by using specific chemical compounds such as polyamines, proline, glycine betaine, hydrogen sulfide, silicon, β-aminobutyric acid, γ-aminobutyric acid and so on. This book discusses the advances in plant performance under stressful conditions. It should be very useful to graduate students, researchers, and scientists in the fields of botanical science, crop science, agriculture, horticulture, ecological and environmental science.