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This book reviews the latest advances in multiple fields of plant biotechnology and the opportunities that plant genetics, genomics and molecular biology have offered for agriculture improvement. Advanced technologies can dramatically enhance our capacity in understanding the molecular basis of traits and utilizing the available resources for accelerated development of high yielding, nutritious, input-use efficient and climate-smart crop varieties. In this book, readers will discover the significant advances in plant genetics, structural and functional genomics, trait and gene discovery, transcriptomics, proteomics, metabolomics, epigenomics, nanotechnology and analytical & decision support tools in breeding. This book appeals to researchers, academics and other stakeholders of global agriculture.
This book explores recent advances on the use of microbes for agri-forestry biotechnological applications. It provides technical concepts and discussions on the use of microorganisms for processes such as bioprocessing, bioremediation, soil enhancement, aquaponics advances, and plant-host symbiosis. The book provides an overview of the microbial approach to the tools and processes used in agriculture and forestry that make or modify products, improve plants for specific uses, and make use of livestock in agricultural systems. The authors discuss the main process conditions that enhance agri-forestry applications with the use of microbes and introduce the use of genetically modified (GM) microbes in agrobiotechnology. Finally, the authors explore the main technological advances in the production of secondary metabolites with potential applications in agri-forestry. This book is intended for biotechnologists, biologists, bioengineers, biochemists, microbiologists, food technologists, enzymologists, and related researchers.
This book provides a comprehensive understanding of streptomycetes, highlighting their various habitats, diversity, genetic structure, and metabolic engineering techniques to enhance the production of secondary metabolites. It also presents techniques for the isolation, cultivation, biochemical identification, chemotaxonomy, and phylogenetic analysis of streptomycetes. The book explores the production of bioactive compounds from streptomycetes, including novel natural products, antimicrobial agents, pharmaceuticals, medicinal compounds, and bioactive enzymes. Furthermore, the book examines the diverse applications of streptomycetes in agriculture, medicine, industry, and bioremediation. The chapters emphasize the latest technological advancements such as bioprocess optimization, genetic engineering, metabolic engineering, genome mining, and pathway engineering for enhancing the production of secondary metabolites from Streptomyces. As such, this book is of interest to academicians, researchers, and professionals working in the fields of bioprocessing, microbiology, industrial microbiology, medical microbiology, fermentation technology, and biotechnology.
In the evolving environment of bioinformatics, genomics, and computational biology, academic scholars are facing a challenging challenge – keeping informed about the latest research trends and findings. With unprecedented advancements in sequencing technologies, computational algorithms, and machine learning, these fields have become indispensable tools for drug discovery, disease research, genome sequencing, and more. As scholars strive to decode the language of DNA, predict protein structures, and navigate the complexities of biological data analysis, the need for a comprehensive and up-to-date resource becomes paramount. The Research Anthology on Bioinformatics, Genomics, and Computatio...
Plants growing in the natural environment battle with a variety of biotic (pathogens infection) and abiotic (salinity, drought, heat and cold stresses etc.) stresses. These physiological stresses drastically affect plant growth and productivity under field conditions. These challenges are likely to grow as a consequences of global climate change and pose a threat to the food security. Therefore, acquaintance with underlying signalling pathways, physiological, biochemical and molecular mechanisms in plants and the role of beneficial soil microorganisms in plant’s stress tolerance are pivotal for sustainable crop production. This volume written by the experts in the stress physiology and covers latest research on plant’s tolerance to abiotic and biotic stresses. It elaborates on the potential of plant-microbe interactions to avoid the damage caused by these stresses. With comprehensive information on theoretical, technical and experimental aspects of plant stress biology, this extensive volume is a valuable resource for researchers, academician and students in the broad field of plant stress biology, physiology, microbiology, environmental and agricultural science.
This volume provides the most up-to-date and holistic but compact account of the peopling of the world from the perspective of language, genes and material culture, presenting a view from the Himalayas. The phylogeny of language families, the chronology of branching of linguistic family trees and the historical and modern geographical distribution of language communities inform us about the spread of languages and linguistic phyla. The global distribution and the chronology of spread of Y chromosomal haplogroups appears closely correlated with the spread of language families. New findings on ancient DNA have greatly enhanced our understanding of the prehistory and provenance of our biological ancestors. The archaeological study of past material cultures provides yet a third independent window onto the complex prehistory of our species.