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New Insights, Trends and Challenges in the Development and Applications of Microbial Inoculants in Agriculture provides information about how to develop high-quality microbial inoculants (biofertilizers and biopesticides) for increasing crop yields and quality and reducing the economic, environmental and health costs of food production. The book's chapters discuss cutting-edge approaches and techniques to develop bioformulations as reliable, viable solutions for food production, including the importance of a legal framework to guarantee the quality and safety of these bio-products. Additionally, it provides information on the current limitations and future approaches to enhance microbial inoculant development for contributing to global food security. Interest in biofertilizers and the potential for their use in sustainable agriculture is increasing. However, many commercial bioproducts are low quality due to the lack of quality standards which causes a decrease in efficiency, high variability in the field, and loss of confidence from farmers. - Presents new updates that are based on new research and approaches in the production of microbial inoculants - Focuses on the needs of readers, covering key steps and points that should not be overlooked - Links scientific and practical knowledge so readers can apply the knowledge acquired in their research on the development of biofertilizers and biopesticides - Helps companies can their inoculant production processes - Provides updates on how the criteria and selection of bioproducts based on PGPM can increase efficiency of crops through correct application and evaluation of plant performance
Livestock production systems are generally considered to have various negative environmental impacts, including nutrient leaching, and a significant contribution to global warming. In this respect, the reduction of gas or ammonia emissions can be achieved through improved efficiency in the choice of feedstuffs. The use of alternative feeds or additives can contribute to a more energy-efficient ration with lower emissions. Such strategies can contribute to improved animal production and health status. Studies have reported that feed additives such as nitrogen-containing compounds, probiotics, prebiotics, and plant extracts significantly reduce ruminant methane. Moreover, research suggested that fruit pomaces could be a low-cost fibre source in poultry nutrition, and that the inclusion of orange pulp in pigs’ diets can reduce the potential ammonia and methane emissions. To properly evaluate the most adequate reuse strategy it is necessary a specific life cycle assessment for each co-product.
Indigenous Fermented Foods for the Tropics provides insights on fermented foods of the Tropics, particularly Africa, Asia and South America, highlighting key aspects and potential developments for these food products. Sections provide an overview on the production and composition (nutritional, physicochemical, health beneficial and microbiota) of these indigenous fermented foods in the tropics, innovative techniques for investigating the composition of these fermented food products and improvement of the fermentation process to yield better nutritional constituents, health beneficial components and sensory qualities, and safety aspects to be considered in fermented foods. Other sections provide insights into the packaging and marketing of these food products as well as future prospects of fermented foods in the tropics. This book provides new perspectives and recent information to complement existing texts on indigenous fermented foods serving as a valuable reference text for detailed insights into indigenous fermented foods of the tropics. - Discusses fermented foods from the Africa, Asia, and South America based on the raw materials used - Offers innovative techniques for improving these indigenous products and investigating their composition as well as upgrading traditional technologies used in the production of fermented products - Covers the role of technology and innovations in the quest for enhancing quality, and safety of fermented foods as demand for fermented food and beverage products is increased
DNA is the essence of life and the original ‘big data’. New technologies are allowing scientists to access and make sense of this information like never before, and they are using it to solve the world’s greatest environmental challenges. Applied Environmental Genomics synthesises the latest and most exciting uses of genomic technologies for environmental science and management. With an emphasis on diversity of applications and real-world demonstrations, leading researchers have contributed detailed chapters on innovative approaches to obtaining critical management-relevant information about the natural world. These chapters are complemented by perspective sections written by environmental managers who describe their experiences using genomics to support evidence-based decisions. Ideal for students, researchers and professionals working in natural resource management and policy, Applied Environmental Genomics is a comprehensive introduction to a fast-moving field that is transforming the practice of environmental management, with profound relevance to industry, government and the public.
Step into the world of poultry farming like never before with Poultry Farming - New Perspectives and Applications. This comprehensive guide unveils a wealth of knowledge and innovative approaches that will revolutionize the way you view and engage in the poultry industry. In this enlightening book, acclaimed experts share their expertise and insights, presenting a fresh perspective on poultry farming that goes beyond traditional practices. From seasoned farmers to cutting-edge researchers, this collective of visionaries will challenge your assumptions and inspire you to embrace new techniques and technologies. Discover the latest advancements in genetics and breeding, as well as emerging trends in nutrition and health management. Explore sustainable production methods that prioritize animal welfare, environmental conservation, and ethical farming practices. Dive into the realm of precision farming and automation, where state-of-the-art technologies streamline operations and maximize efficiency. Poultry Farming - New Perspectives and Applications delves into the diverse applications of poultry products, exploring alternative markets and niche opportunities that can elevate your business to new heights. Uncover the potential of value-added products, including organic and specialty poultry, as well as the lucrative world of free-range and pasture-based systems. Whether you’re a seasoned poultry farmer looking to stay ahead of the curve or an aspiring entrepreneur seeking to enter the industry, this book offers a treasure trove of knowledge and inspiration. Each chapter is packed with practical tips, real-life case studies, and invaluable advice from industry leaders, ensuring you have the tools and insights to succeed. Prepare to embark on a transformative journey that will reshape your understanding of poultry farming. Embrace the new perspectives and applications presented in this groundbreaking book and unlock the full potential of your poultry business. The future of farming is here - join the revolution today.
This book encompasses the current knowledge of plant microbiomes and their potential biotechnological application for plant growth, crop yield and soil health for sustainable agriculture. The plant microbiomes (rhizospheric, endophytic and epiphytic) play an important role in plant growth, development, and soil health. Plant and rhizospheric soil are a valuable natural resource harbouring hotspots of microbes, and it plays critical roles in the maintenance of global nutrient balance and ecosystem function. The diverse group of microbes is key components of soil–plant systems, where they are engaged in an intense network of interactions in the rhizosphere/endophytic/phyllospheric. The rhizospheric microbial diversity present in rhizospheric zones has a sufficient amount of nutrients release by plant root systems in form of root exudates for growth, development and activities of microbes. The endophytic microbes are referred to those microorganisms, which colonize in the interior of the plant parts, viz root, stem or seeds without causing any harmful effect on host plant. Endophytic microbes enter in host plants mainly through wounds, naturally occurring as a result of plant growth, or through root hairs and at epidermal conjunctions. Endophytes may be transmitted either vertically (directly from parent to offspring) or horizontally (among individuals). The phyllosphere is a common niche for synergism between microbes and plant. The leaf surface has been termed as phyllosphere and zone of leaves inhabited by microorganisms as phyllosphere. The plant part, especially leaves, is exposed to dust and air currents resulting in the establishments of typical flora on their surface aided by the cuticles, waxes and appendages, which help in the anchorage of microorganisms. The phyllospheric microbes may survive or proliferate on leaves depending on extent of influences of material in leaf diffuseness or exudates. The leaf diffuseness contains the principal nutrients factors (amino acids, glucose, fructose and sucrose), and such specialized habitats may provide niche for nitrogen fixation and secretions of substances capable of promoting the growth of plants. The microbes associated with plant as rhizospheric, endophytic and epiphytic with plant growth promoting (PGP) attributes have emerged as an important and promising tool for sustainable agriculture. PGP microbes promote plant growth directly or indirectly, either by releasing plant growth regulators; solubilization of phosphorus, potassium and zinc; biological nitrogen fixation or by producing siderophore, ammonia, HCN and other secondary metabolites which are antagonistic against pathogenic microbes. The PGP microbes belong to different phylum of archaea (Euryarchaeota); bacteria (Acidobacteria, Actinobacteria, Bacteroidetes, Deinococcus-Thermus, Firmicutes and Proteobacteria) and fungi (Ascomycota and Basidiomycota), which include different genera namely Achromobacter, Arthrobacter, Aspergillus, Azospirillum, Azotobacter, Bacillus, Beijerinckia, Burkholderia, Enterobacter, Erwinia, Flavobacterium, Gluconoacetobacter, Haloarcula, Herbaspirillum, Methylobacterium, Paenibacillus, Pantoea, Penicillium, Piriformospora, Planomonospora, Pseudomonas, Rhizobium, Serratia and Streptomyces. These PGP microbes could be used as biofertilizers/bioinoculants at place of chemical fertilizers for sustainable agriculture. The aim of “Plant Microbiomes for Sustainable Agriculture” is to provide the current developments in the understanding of microbial diversity associated with plant systems in the form of rhizospheric, endophytic and epiphytic. The book is useful to scientist, research and students related to microbiology, biotechnology, agriculture, molecular biology, environmental biology and related subjects.
These OECD Biosafety Consensus Documents identify elements of scientific information used in the environmental safety and risk assessment of transgenic organisms which are common to OECD member countries.
Nanotechnology in Sustainable Agriculture presents applications of nanobiotechnology for eco-friendly agriculture practices. Implementing sustainable agriculture techniques is a crucial component in meeting projected global food demands while minimising toxic waste in the environment. Nano-technological tools – including nanoparticles, nanocapsules, nanotubes and nanomolecules – offer sustainable options to modernise agriculture systems. Written by nanotechnology experts, this book outlines how nano-formulations can improve yield without reliance on chemecial pesticides and reduce nutrient losses in fertilization. It reveals how nanotools are used for rapid disease diagnostics, in treating plant diseases and enhancing the capacity for plants to absorb nutrients. Features: Combines nanotechnology and agronomy presenting applications for improving plant performance and yields. Reveals nanotechnology-based products used for the soil and plant health management which mitigate climate change. Discusses roles of microbial endophytes, heavy metal nanoparticles and environment health, nano-nutrients, phytochemicals, green bioengineering and plant health. This book appeals to professionals working in the agriculture and food industry, as well as agricultural scientists and researchers in nanotechnology and agronomy.
Access to safe and nutritious food is key to keeping communities healthy and improving individual well-being. Food Safety - New Insights brings awareness to food safety practices. It includes eight chapters organized into five sections that discuss the safety of food, various types of safety hazards and food safety systems, the effect of changing climate on food safety, and food safety in restaurants.