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Around one third of all food production is lost or wasted. This book provides a comprehensive review of the causes and prevention of food losses and waste at key steps in the supply chain, for different commodities and across particular regions.
Postharvest Physiology and Biochemistry of Fruits and Vegetables presents an updated, interrelated and sequenced view of the contribution of fruits and vegetables on human health, their aspects of plant metabolism, physical and chemical/compositional changes during the entire fruit development lifecycle, the physiological disorders and biochemical effects of modified/controlled atmospheres, and the biotechnology of horticultural crops. The book is written specifically for those interested in preharvest and postharvest crop science and the impact of physiological and biochemical changes on their roles as functional foods. - Deals with the developmental aspects of the lifecycle in whole fruits - Describes issues, such as the morphology and anatomy of fruits, beginning with the structural organization of the whole plant and explaining the fruit structure and its botanical classification - Addresses biotechnological concepts that control firmness, quality and the nutritional value of fruits
Strong coverage of improving smallholder access to key inputs, from seeds to nutrition and pest management Reviews ways of improving public and private sector extension support as well as market access for smallholders Chapter authors mix research expertise and practical experience of successful project implementation on the ground
Highlights the relationship between climate change and the emergence of invasive insect crop pests Considers the key challenges facing the identification of crop insect pests and the role of new, emerging technologies in improving the rate of detection (e.g. image-based, DNA barcoding) Reviews the establishment of successful integrated pest management (IPM) programmes to control and/or eradicate the existence of invasive species
A comprehensive review of the recent developments in microbial bioprotectants Covers key classifications of bioprotectants: bacterial (e.g. Bacillus spp.), fungal (e.g. Trichoderma spp.), and viral (e.g. bacteriophages) Discusses the general issues that arise with the use of key bioprotectants throughout agriculture (e.g. risk of development of resistance against bioprotectants)
Considers a range of techniques used for measuring compliance and improving performance across the agri-food supply chain, including those used to measure on-farm carbon footprints and biodiversity Provides a useful and comprehensive context to the role of governments and other food safety agencies in setting safety, quality and sustainability standards for global agri-food supply chains Reviews the key issues in developing voluntary standards, focussing on those encountered during the development of robust carbon-neutral and biodiversity offsetting certification schemes
Emphasises advances in understanding pig behaviour as the foundation for understanding and improving welfare Comprehensive coverable of welfare issues across the value chain, covering breeding and gestation, farrowing and lactation, weaning, growing and finishing as well as transport, lairage and slaughter Particular focus on ways of assessing and reducing pain in such areas as tail docking and castration
Provides a comprehensive coverage of recent research into the nutritional components of cereals, such as wheat, oats, rye, spelt, sorghum and millet Offers key discussions on the importance and implications of cereal-based products on human health (e.g. cardiovascular, cancer, diabetes) Builds on the foundations for the future development of nutritionally-enhanced cereal products
Unique focus on achieving more resilient, ‘climate-smart’ coffee cultivation Distinctive agroecological approach based on improving cultivation through optimising ecosystem services Comprehensive coverage of the value chain in coffee cultivation, from breeding to pest management and post-harvest practices
Comprehensive review of key topics in root science, including root architecture, root growth regulators, root anatomy and nutrient acquisition Coverage of root response to both biotic and abiotic variables Discusses the range of techniques to optimize root function, from phenotyping to identify desirable root traits and exploiting the genetics of root traits to the use of plant growth-promoting rhizobacteria (PGPR) and arbuscular mycorrhizal fungi (AM)