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Plant fruits are important from a biological, nutritional, and economic perspective. Fruits are primary sources of minerals, vitamins, sugars, organic acids, proteins, and pigments (among other nutrient compounds) for animals and humans, and there exist a vast variety of forms, sizes, and flavors produced by plants. Since fruit biological function is determined through the expression of specific genes, it is important to identify and characterize those genes involved in each developmental and ripening stage, which can be achieved using transcriptomic approaches.
This book discusses basic and applied aspects of somatic embryogenesis, one of the most powerful tools in plant biotechnology. It is divided into three parts; Part I includes topics such as the history of this research field, how differentiated plant cells can (re)acquire totipotency, molecular features, as well as the epigenetics and proteomics of somatic embryogenesis. Part II covers the somatic embryogenesis of different crops, such as Agave spp. maize, Cocos nucifera, Bixa orellana, Capsicum spp., Coffea spp., Musa spp., Pinus spp., and Arabidopsis thaliana. Various applications, like scale-up propagation and genetic engineering are discussed in detail in Part III. The book will appeal to plant scientists, plant breeders and experts working in industry.
There is an increased awareness on the relevance of nutraceutical and functional foods as alternatives to harmful synthetic additives used in industry. Different peppers, with an abundance of bioactive compounds, are highlighted in this book, which provides a comprehensive evaluaton of their importance as nutraceutical and functional foods to all stakeholders in the agri-food and pharmaceutical industries. Peppers: Biological, Health, and Postharvest Perspectives is a valuable addition to the existing information resource on peppers. Key features: Highlights the advancements made in biodiversity, biochemistry and biosynthesis of bioactive compounds of peppers. Reviews the effects of processing methods on the quality of peppers to facilitate further research and development of foods having pepper as an essential nutritional component. Provides help in selecting better processing methods for the management of nutritional attributes and health benefits of peppers. The book provides a blend of basic and advanced information for postgraduate students, researchers and scientists
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Protected cropping shelters crops from extreme climatic conditions by modifying the internal growing conditions in their favor. The technology has widely been used for vegetable crops in different climates such as temperate, tropical, subtropical, arid, and semi-arid regions. As climate change is projected to become more severe in the near future, the resulting adverse weather conditions such as higher temperatures, more frequent heatwaves, more variable rainfall patterns, and cyclones will affect vegetable production, in turn affecting crop growth, yield, produce quality, and economic return of growers. The demand for protected cultivation will increase to ensure sustainable production and a stable supply of fresh horticultural produce.
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Plants live in environments influenced by various abiotic factors that can cause diverse stresses, for example, because of low or high temperature, deficient or excessive water, high salinity, heavy metals, and ultraviolet radiation, etc. These abiotic stresses are hostile to plant growth and development, leading to great fruit quality and crop yield penalties worldwide, especially under the global climate change. Facing the numerous abiotic stresses, plants have developed strategies to protect themselves in evolution. The elucidation of their effects and underlying mechanisms is of great significance as a fundamental principle to relieve the pressure of environmental changes and to meet the...