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High-value crops are non-staple plants that give much higher return per unit area than staple crops. Diversification and investing towards high-value crops can potentially increase farm incomes, making them more attractive to new and small-scale agricultural farmers. This new volume explores the biotechnological applications for the unique high-value crops in response to the impending high-value agriculture revolution. The book discusses traditional knowledge, nutritional value, phytochemical activity, value addition quality, and postharvest management of some select unique high-value crops, including black ginger, bastard oleaster, Swertia chirayita, Garcinia, Parkia timoriana (or tree bean), king chili, Chenopodium (or goosefoot), sea buckthorn, broom grass, lichens, and others. High-Value Plants: Novel Insights and Biotechnological Advances provides important information for small-scale farmers and agricultural and horticultural professionals to consider diversifying into non-traditional, high-value, agricultural crops, an important area of potential income growth in rural areas.
This book contains research findings from three major study areas, natural sciences, social sciences, and public policy and management. The focus area extends over geographical zones ranging from mountainous area of Mount Gagau in the Taman Negara National Park, down to the coastal islands of Bidong, Redang and Perhentian on the eastern coast of Peninsular Malaysia. Chapters on natural sciences examine the physicochemical characteristics of water, physiological and ecological constraints to geological and climatological aspects. The social science and management chapters observe the rich ethno-heritage of local communities and how they interact and develop as a culture, and public policy for...
Agricultural biomass is abundant worldwide and it can be considered as alternative source of renewable and sustainable materials which can be used as potential materials for different applications. Despite this enormous production of agricultural biomass, only a small fraction of the total biomass is utilized for different applications. Industry must be prepared to take advantage of the situation and utilize the available biomass in the best possible manner. Agricultural biomass such as natural fibres has been successfully investigated as a great potential to be used as a renewable and sustainable materials for the production of composite materials. Natural fibres offer excellent specific pr...
This book is an overview of our current understanding of aluminium toxicity and tolerance in plants. It covers all relevant aspects from molecular and cellular biology, to genetic approaches, root biology and plant physiology. The contribution of arbuscular mycorrhizal fungi to alleviating aluminium toxicity is also discussed. Over 40% of total agricultural land resources are acidic in nature, with aluminium being the major toxicant. Plant roots are particularly susceptible to aluminium stress, but much of the complex mechanism underlying its toxicity and tolerance is unknown and aluminium stress perception in plants remains poorly understood. The diverse facets of aluminium stress adaptation covered in this book are relevant to plant biology students at all levels, as well researchers and it provides a valuable contribution to our understanding of plant adaptation to the changing environment.
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This new volume presents an array of new and emerging techniques in the food processing sector, focusing on the extraction, encapsulation, and health benefits of bioactive Compounds. It illustrates various applications of novel food processing extraction and encapsulation techniques along with the health and safety aspects of plant-derived bioactive compounds and functional foods Some of the sustainable and green extraction techniques discussed include novel extraction techniques, such as microwave-assisted extraction (MAE), ultrasonic assisted extraction (UAE), supercritical fluid extraction (SFE), accelerated solvent extraction (ASE), and rapid solid-liquid extraction (RSLE). The volume al...