Selenium Supplementation In Horticultural Crops

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Selenium Supplementation in Horticultural Crops

Author : Alžbeta Hegedűsová,Ondrej Hegedűs,Silvia Jakabová,Alena Andrejiová,Miroslav Šlosár,Ivana Mezeyová,Marcel Golian
Publisher : Springer Nature
Page : 164 pages
File Size : 50,5 Mb
Release : 2021-04-23
Category : Technology & Engineering
ISBN : 9783030704865

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Selenium Supplementation in Horticultural Crops by Alžbeta Hegedűsová,Ondrej Hegedűs,Silvia Jakabová,Alena Andrejiová,Miroslav Šlosár,Ivana Mezeyová,Marcel Golian Pdf

Selenium plays a significant role in preventing certain types of cancer and cardiovascular diseases. The level of Selenium in the human body depends on its concentration in food. In turn, the content in vegetable crops is a function of the soil-plant system. There are many countries in the world with low Selenium content in the soil. The average daily human intake is thus limited through food chain. Analysis of Selenium status suggests that fortification of the soil substrate with Sodium Selenate, and foliar application to agricultural crops are both effective means of Selenium enrichment. Our intention for this publication is to present the possibilities of augmenting Selenium content by biofortification of soils and plants through differentiated nutrition. In the first part of the monograph, the results of Selenium supplementation in model vegetation experiments are presented. The next part of the monograph presents the results of foliar supplementation of Selenium in field conditions. This book is an outstanding reference source for plant breeders and researchers engaged in biofortification of horticulture crops. It is also beneficial to agricultural companies and other stakeholders.

Selenium Supplementation in Horticultural Crops

Author : Alžbeta Hegedűsová,Ondrej Hegedűs,Silvia Jakabová,Alena Andrejiová,Miroslav Šlosár,Ivana Mezeyová,Marcel Golian
Publisher : Unknown
Page : 0 pages
File Size : 49,5 Mb
Release : 2021
Category : Electronic
ISBN : 3030704874

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Selenium Supplementation in Horticultural Crops by Alžbeta Hegedűsová,Ondrej Hegedűs,Silvia Jakabová,Alena Andrejiová,Miroslav Šlosár,Ivana Mezeyová,Marcel Golian Pdf

Selenium plays a significant role in preventing certain types of cancer and cardiovascular diseases. The level of Selenium in the human body depends on its concentration in food. In turn, the content in vegetable crops is a function of the soil-plant system. There are many countries in the world with low Selenium content in the soil. The average daily human intake is thus limited through food chain. Analysis of Selenium status suggests that fortification of the soil substrate with Sodium Selenate, and foliar application to agricultural crops are both effective means of Selenium enrichment. Our intention for this publication is to present the possibilities of augmenting Selenium content by biofortification of soils and plants through differentiated nutrition. In the first part of the monograph, the results of Selenium supplementation in model vegetation experiments are presented. The next part of the monograph presents the results of foliar supplementation of Selenium in field conditions. This book is an outstanding reference source for plant breeders and researchers engaged in biofortification of horticulture crops. It is also beneficial to agricultural companies and other stakeholders.

Selenium and Nano-Selenium in Environmental Stress Management and Crop Quality Improvement

Author : Mohammad Anwar Hossain,Golam Jalal Ahammed,Zsuzsanna Kolbert,Hassan El-Ramady,Tofazzal Islam,Michela Schiavon
Publisher : Springer Nature
Page : 467 pages
File Size : 45,9 Mb
Release : 2022-09-29
Category : Science
ISBN : 9783031070631

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Selenium and Nano-Selenium in Environmental Stress Management and Crop Quality Improvement by Mohammad Anwar Hossain,Golam Jalal Ahammed,Zsuzsanna Kolbert,Hassan El-Ramady,Tofazzal Islam,Michela Schiavon Pdf

Crop plants growing under field conditions are constantly exposed to various abiotic and biotic stress factors leading to decreased yield and quality of produce. In order to achieve sustainable development in agriculture and to increase agricultural production for feeding an increasing global population, it is necessary to use ecologically compatible and environmentally friendly strategies to decrease the adverse effects of stresses on the plant. Selenium is one of the critical elements from the biological contexts because it is essential for human health; however, it becomes toxic at high concentrations. It has been widely reported that selenium can promote plant growth and alleviate various stresses as well as increase the quantity and quality of the yield of many plant species. Nonetheless, at high concentrations, selenium causes phytotoxicity. In the last decade, nanotechnology has emerged as a prominent tool for enhancing agricultural productivity. The production and applications of nanoparticles (NPs) have greatly increased in many industries, such as energy production, healthcare, agriculture, and environmental protection. The application of NPs has attracted interest for their potential to alleviate abiotic and biotic stresses in a more rapid, cost-effective, and more sustainable way than conventional treatment technologies. Recently, research related to selenium-NPs-mediated abiotic stresses and nutritional improvements in plants has received considerable interest by the scientific community. While significant progress was made in selenium biochemistry in relation to stress tolerance, an in-depth understanding of the molecular mechanisms associated with the selenium- and nano-selenium-mediated stress tolerance and bio-fortification in plants is still lacking. Gaining a better knowledge of the regulatory and molecular mechanisms that control selenium uptake, assimilation, and tolerance in plants is therefore vital and necessary to develop modern crop varieties that are more resilient to environmental stress. This book provides a comprehensive overview of the latest understanding of the physiological, biochemical, and molecular basis of selenium- and nano-selenium-mediated environmental stress tolerance and crop quality improvements in plants. It helps researchers to develop strategies to enhance crop productivity under stressful conditions and to better utilize natural resources to ensure future food security and to reduce environmental contamination. Finally, this book is a valuable resource for promoting future research into plant stress tolerance, and a reference book for researchers working on developing plants tolerant to abiotic and biotic stressors as well as bio-fortification and phytoremediation.

Selenium in plants

Author : Elizabeth A.H. Pilon-Smits,Lenny H.E. Winkel,Zhi-Qing Lin
Publisher : Springer
Page : 324 pages
File Size : 49,5 Mb
Release : 2017-05-10
Category : Science
ISBN : 9783319562490

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Selenium in plants by Elizabeth A.H. Pilon-Smits,Lenny H.E. Winkel,Zhi-Qing Lin Pdf

This book covers many facets of plant selenium (Se) accumulation: molecular genetics, biochemistry, physiology, and ecological and evolutionary aspects. Broader impacts and applications of plant Se accumulation also receive attention. Plant Se accumulation is very relevant for environmental and human health. Selenium is both essential at low levels and toxic at high levels, and both Se deficiency and toxicity are problems worldwide. Selenium can positively affect crop productivity and nutritional value. Plants may also be used to clean up excess environmental Se. Selenium in plants has profound ecological impact, and likely contributes to Se movement in ecosystems and global Se cycling.

Recent Advances on Nitrogen Use Efficiency in Crop Plants and Climatic Challenges

Author : Hamada AbdElgawad
Publisher : Frontiers Media SA
Page : 423 pages
File Size : 43,8 Mb
Release : 2023-08-25
Category : Science
ISBN : 9782832532478

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Recent Advances on Nitrogen Use Efficiency in Crop Plants and Climatic Challenges by Hamada AbdElgawad Pdf

Nitrogen (N) is a mineral nutrient that is essential for the normal growth and development of plants that is required in the highest quantity. It is an element of nucleic acids, proteins, and photosynthetic metabolites, therefore crucial for crop growth and metabolic processes. Recently, it was estimated that N fertilizers could meet the 48% demand of the world’s population. However, overuse and misuse of N fertilizers raised environmental concerns associated with N losses by nitrous oxide (N2O) emissions, ammonia (NH3) volatilization, and nitrate (NO3−) leaching. For instance, NH3 is a pollutant in the atmosphere, N2O is a greenhouse gas that has a warming potential 298 times higher than CO2 and contributes to ozone depletion, and NO3− causes eutrophication of water bodies. Agricultural practices account for about 90% of NH3 and 70% of N2O anthropogenic emissions worldwide. The efficient use of N chemical fertilizers can be attained through cultural and agronomic practices. Nitrogen use efficiency (NUE) is an important trait that has been studied for decades in different crops. The grain production or economic return from the per unit supply of N fertilizer simply explained the NUE. Several definitions were suggested by different researchers. NUE can be defined as the product of N uptake efficiency (NUpE) and N utilization efficiency (NUtE). An increase in NUE increases the yield, biomass, quality, and quantity of crops. N is generally applied as chemical fertilizer to the soil, whereas a small amount is added to some crops like grain legumes through the fixation process. On the other hand, crop plants take N through the root system in the form of nitrate or ammonium which is thereby used in different metabolic processes. A number of studies have been conducted to increase the NUE in different crops and it has been indicated that NUE can be improved by agronomic, physiological, biochemical, breeding as well as molecular approaches. Nitrogen is the main limiting nutrient after carbon, hydrogen, and oxygen for the photosynthetic process, phyto-hormonal and proteomic changes, and the growth-development of plants to complete their lifecycle. Excessive and inefficient use of N fertilizer results in enhanced crop production costs and atmospheric pollution. Atmospheric nitrogen (71%) in the molecular form is not available for the plants. For the world's sustainable food production and atmospheric benefits, there is an urgent need to upgrade nitrogen use efficiency in the agricultural farming system. Nitrogen losses are too high, due to excess amount, low plant population, poor application methods, etc., which can go up to 70% of total available nitrogen. These losses can be minimized up to 15–30% by adopting improved agronomic approaches such as optimal dosage of nitrogen, application of N by using canopy sensors, maintaining plant population, drip fertigation, and legume-based intercropping. Therefore, the major concern of modern days is to save economic resources without sacrificing farm yield as well as the safety of the global environment, i.e. greenhouse gas emissions, ammonium volatilization, and nitrate leaching.

Selenium in Agriculture

Author : Myron Sallee Anderson
Publisher : Unknown
Page : 80 pages
File Size : 43,6 Mb
Release : 1961
Category : Selenium
ISBN : UIUC:30112019252045

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Selenium in Agriculture by Myron Sallee Anderson Pdf

Salinity and Drought Tolerance in Plants

Author : Ashwani Kumar,Pooja Dhansu,Anita Mann
Publisher : Springer Nature
Page : 606 pages
File Size : 54,6 Mb
Release : 2023-11-01
Category : Technology & Engineering
ISBN : 9789819946693

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Salinity and Drought Tolerance in Plants by Ashwani Kumar,Pooja Dhansu,Anita Mann Pdf

This edited book is a comprehensive collection of scientific research on different plants under drought and salt stress conditions. The main focus of this book is to elaborate on the mechanisms being operative in plants under stress and how various biological factors mitigate the adverse effects for better plant productivity. This book covers all physiological, biochemical, and molecular mechanisms operating under drought and saline stresses. The current status and impact of drought and salinity on various crop plants have been elaborated on in different chapters. Agricultural lands are either turning barren or becoming more saline and drought-prone with increasing temperatures, decreasing water tables, untimely rainfall, and other environmental factors. In India, salt-affected soils occupy an area of about 6.73 million ha of which saline and sodic soils constitute roughly 40 and 60%, respectively. All these factors individually or cumulatively, affect the plant growth and development and hence, the crop productivity with the monetary loss. The inbuilt plant's ability with modified/acclimatized mechanisms has been described in various chapters with step-wise descriptions. The role of various plant growth-promoting agents including nano-particles, micro-organisms, metabolites or phytohormones, etc in mitigating adverse effects of drought and salinity has been explained precisely. Updated information on the use of speed breeding, proteomics, epigenetics, and transcriptomics in different crops along with high throughput technologies is included for the cross-talk of various network mechanisms. This book is helpful for the readers in knowing salinity and drought through the physiological, biochemical and genetic, and molecular levels to understand plant behaviour under stress conditions. Also, the book serves as additional reading material for undergraduate and graduate students of agriculture, plant physiology, biochemistry, forestry, and environmental sciences. National and international agricultural scientists and policymakers will also find this to be a useful read.

Significance of Glutathione to Plant Adaptation to the Environment

Author : D. Grill,Michael M. Tausz,L.J. de Kok
Publisher : Springer Science & Business Media
Page : 270 pages
File Size : 55,9 Mb
Release : 2006-04-11
Category : Science
ISBN : 9780306476440

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Significance of Glutathione to Plant Adaptation to the Environment by D. Grill,Michael M. Tausz,L.J. de Kok Pdf

Glutathione is a thiol-containing tripeptide, which appears to be present in nearly all living organisms and which is involved in many important metabolic and physiological processes. The present volume focuses on the biological significance of glutathione in plants. The biochemistry and the metabolism of glutathione are reviewed, and its role in sulphur and selenium metabolism in plants is discussed. The significance of glutathione and of glutathione-related enzymes in the adaptation to natural stress, heavy metals, xenobiotics, air pollution, and in plant-pathogen and plant-animal interactions are evaluated. The main aim of this second volume in the series Plant Ecophysiology is to raise the interest of advanced students and junior researchers in the role of glutathione in plants and to supply basic and comprehensive information for scientists already working on related topics.

Biostimulants for Crop Production and Sustainable Agriculture

Author : Mirza Hasanuzzaman,Barbara Hawrylak-Nowak,Tofazzal Islam,Masayuki Fujita
Publisher : CABI
Page : 542 pages
File Size : 54,7 Mb
Release : 2022-09-14
Category : Technology & Engineering
ISBN : 9781789248074

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Biostimulants for Crop Production and Sustainable Agriculture by Mirza Hasanuzzaman,Barbara Hawrylak-Nowak,Tofazzal Islam,Masayuki Fujita Pdf

Agricultural biostimulants are a group of substances or microorganisms, based on natural resources, that are applied to plants or soils to improve nutrient uptake and plant growth, and provide better tolerance to various stresses. Their function is to stimulate the natural processes of plants, or to enrich the soil microbiome to improve plant growth, nutrition, abiotic and/or biotic stress tolerance, yield and quality of crop plants. Interest in plant biostimulants has been on the rise over the past 10 years, driven by the growing interest of researchers and farmers in environmentally-friendly tools for improved crop performance. Improved crop production technologies are urgently needed to meet the growing demand for food for the ever-increasing global population by addressing the impacts of changing climate on agriculture. This book is of interest to researchers in agriculture, agronomy, crop and plant science, soil science and environmental science.

Salinity and Drought Stress in Plants: Understanding Physiological, Biochemical and Molecular Responses

Author : Muhammad Waseem,PingWu Liu,Mehtab Muhammad Aslam
Publisher : Frontiers Media SA
Page : 289 pages
File Size : 43,5 Mb
Release : 2023-10-30
Category : Science
ISBN : 9782832537640

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Salinity and Drought Stress in Plants: Understanding Physiological, Biochemical and Molecular Responses by Muhammad Waseem,PingWu Liu,Mehtab Muhammad Aslam Pdf

Drought and salinity are two of the foremost environmental factors which restrict plant growth and yield in several regions of the world, especially in arid and semi‐arid regions. Due to global climate change, drought and salinity are predicted to become more widespread and eventually result in reduced plant growth and productivity in numerous plant species. Exposure of plants to extreme drought or salt stress ceases plant growth, while plants exposed to moderate stress generally show a slight change in their growth performance. Scientists are facing the challenging task of producing 70% more food to feed an additional 2.3 billion people by 2050. Therefore, it is imperative to develop stress-resilient crops with better yield under drought and salt stress to meet the food requirements of upcoming generations.

Mineral Biofortification in Crop Plants for Ensuring Food Security

Author : Mirza Hasanuzzaman,Muhammad Suleman Tahir,Mohsin Tanveer,Adnan Noor Shah
Publisher : Springer Nature
Page : 340 pages
File Size : 40,6 Mb
Release : 2023-12-03
Category : Science
ISBN : 9789819940905

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Mineral Biofortification in Crop Plants for Ensuring Food Security by Mirza Hasanuzzaman,Muhammad Suleman Tahir,Mohsin Tanveer,Adnan Noor Shah Pdf

This book provides a comprehensive summary of the recent advances in the biofortification of plants under climate change and how it affects food security globally. The need for mineral biofortification to eradicate or alleviate malnutrition through sustainable agriculture is also discussed. Biofortification of edible plants is considered the most appropriate approach to alleviate nutritional problems and nutrient deficiencies. In contrast, biofortification focuses on improving the nutritional content of the region's current agricultural biodiversity while preserving its habits and customs. Emphasis is also placed on recent advances and developments in omics, particularly metabolomics and related techniques, to unravel the potential alterations in plants caused by biofortification. The book brings together eminent scientists to present the latest developments in the field. This timely publication addresses practical scenarios of bio-fortified food production and climate change. The book focuses on the methods, techniques, and environmental changes used to enhance and improve agricultural products. This book is one of the first to provide information on the use of modern biotechnologies to modify crops for health benefits. It also examines the mechanisms of the plant responses to genetically induced biofortification, the production and responses of fortified plants under climate change, and their effects on food security. The book will be useful for students and researchers, especially crop scientists, environmental scientists, biotechnologists, botanists, and agronomists, to understand the techniques and mechanisms of biofortification, and responses of biofortified plants under climate change.

Impacts of Agriculture on Human Health and Nutrition - Volume I

Author : Ismail Cakmak,Ross M. Welch
Publisher : EOLSS Publications
Page : 480 pages
File Size : 46,5 Mb
Release : 2009-11-25
Category : Electronic
ISBN : 9781848260931

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Impacts of Agriculture on Human Health and Nutrition - Volume I by Ismail Cakmak,Ross M. Welch Pdf

Impacts of Agriculture on Human Health and Nutrition is a component of Encyclopedia of Food and Agricultural Sciences, Engineering and Technology Resources in the global Encyclopedia of Life Support Systems (EOLSS), which is an integrated compendium of twenty one Encyclopedias. The Theme on Agriculture on Human Health and Nutrition provides the essential aspects and a number of issues of importance in human life: Global Prevalence of Micronutrient Malnutrition and Impacts on the Health of Children; Community-Centered Food-Based Strategies for Alleviating and Preventing Malnutrition; Influence of Mineral Fertilizers on Nutritional Quality of Staple Food Crops; Molecular Genetic Approaches to Improve the Nutritional Quality of Staple Food Crops; Nutritional Consequences of Using Organic Agricultural Methods in Developing Countries which are then expanded into multiple subtopics, each as a chapter. These two volumes are aimed at the following five major target audiences: University and College students Educators, Professional practitioners, Research personnel and Policy analysts, managers, and decision makers and NGOs.

Arsenic in Plants

Author : Prabhat Kumar Srivastava,Rachana Singh,Parul Parihar,Sheo Mohan Prasad
Publisher : John Wiley & Sons
Page : 452 pages
File Size : 54,5 Mb
Release : 2022-09-12
Category : Science
ISBN : 9781119791454

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Arsenic in Plants by Prabhat Kumar Srivastava,Rachana Singh,Parul Parihar,Sheo Mohan Prasad Pdf

Arsenic in Plants Comprehensive resource detailing the chemistry, toxicity and impact of arsenic in plants, and solutions to the problem Arsenic in Plants: Uptake, Consequences and Remediation Techniques provides comprehensive coverage of the subject, detailing arsenic in our environment, the usage of arsenicals in crop fields, phytotoxicity of arsenic and arsenic’s impact on the morphology, anatomy and quantitative and qualitative traits of different plant groups, including their physiology and biochemistry. The work emphasizes the occurrence of arsenic, its speciation and transportation in plants, and differences in mechanisms of tolerance in hyper-accumulator and non-accumulator plants. Throughout the text, the highly qualified authors delve into every facet of the interaction of arsenic with plants, including the ionomics, genomics, transcriptomics and proteomics in relation to arsenic toxicity, impact of exogenous phytohormones and growth-regulating substances, management of arsenic contamination in the soil-plant continuum, phytoremediation of arsenic toxicity and physical removal of arsenic from water. General discussion has also been included on subjects such as the ways through which this metalloid affects plant and human systems. Topics covered include: Introduction and historical background of arsenic and the mechanism of arsenic transport and metabolism in plants Arsenic-induced responses in plants, including impact on biochemical processes and different plant groups, from cyanobacteria to higher plants The role of phytohormones, mineral nutrients, metabolites and signaling molecules in regulating arsenic-induced toxicity in plants Genomic, proteomic, metabolomic, ionomic and transcriptional regulation during arsenic stress Strategies to reduce the arsenic contamination in soil-plant systems and arsenic removal by phytoremediation techniques Researchers, academics, and students of plant physiology, biotechnology, and agriculture will find valuable information in Arsenic in Plants to understand this pressing subject in full, along with its implications and how we can adapt our strategies and behaviors to promote reduced contamination through practical applications.