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Nanobiotechnology. --- Bionanotechnology --- Biotechnology --- Nanotechnology --- Ultraestructura (Biologia) --- Nanobioingenieria --- Nanobiologia --- Nanobiotecnologia --- Ultraestructura cel·lular --- Cèl·lules --- Microestructura --- Citologia --- Histologia
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Microbial biotechnology. --- Microbial biotechnology --- Methodology. --- Microorganisms --- Biotechnology --- Industrial microbiology --- Biotechnological microorganisms --- Biotecnologia microbiana --- Ultraestructura (Biologia) --- Nanobioingenieria --- Nanobiologia --- Nanobiotecnologia --- Ultraestructura cel·lular --- Cèl·lules --- Microestructura --- Citologia --- Histologia --- Biotecnologia de microorganismes --- Biotecnologia --- Microbiologia industrial --- Conversió de la biomassa
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This volume details protocols on virus-derived nanoparticles (VNPs) for a number of different applications. Chapters guide readers through the production of VNPs derived from plant, animal and bacterial viruses, prokaryotic and eukaryotic expression systems, encapsulation of heterologous materials within VNPs, and the modification of the outer surface of VNPs and how such modified VNPs can be developed into functional entities. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls. Authoritative and practical, Virus-Derived Nanoparticles for Advanced Technologies: Methods and Protocols aims to ensure successful results in the further study of this vital field.
Biotechnology. --- Chemical engineering --- Genetic engineering --- Virus --- Ultraestructura (Biologia) --- Manuals de laboratori --- Tècniques de laboratori --- Nanobioingenieria --- Nanobiologia --- Nanobiotecnologia --- Ultraestructura cel·lular --- Cèl·lules --- Microestructura --- Citologia --- Histologia --- Microbis --- Ultravirus --- Bacteris --- Microorganismes --- Vectors genètics --- Bacteriòfags --- Virus ADN --- Virus RNA --- Virus oncogènics --- Malalties víriques --- Virologia
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The generation of well-defined nanoparticles of excellent size and shape involves physical and chemical methodologies that are complicated, expensive, and produce hazardous toxic waste that is harmful to the environment and to human health. In order to combat the disadvantages of these methods, scientists have created “the biological method,” a new synthetic methodology that serves as a proper alternative to physical and chemical methodologies because of its easy utility, low cost, rapid synthesis, controlled size characteristics, controlled toxicity, and eco-friendliness. Nanobiotechnology is the science in which living matter can be manipulated and exploited to produce materials within the nano-scale. It is a multidisciplinary field of science framed by biology, chemistry, engineering, materials, and life sciences. Different biological entities can be exploited to yield biologically synthesized nanomaterials including bacteria, actinomycetes, yeast, fungi, viruses, algae, plant extracts, and agro-industrial waste extracts. This book represents a comprehensive review concerning the state of the art in nanobiotechnology, emphasizing the use of diverse biological entities in the science, and its versatile applications. It describes currently existing methodology with the latest published references, and provides safety information. It serves as the ideal guide for scientists interested in exploring nanobiotechnology.
Nanobiotechnology. --- Bionanotechnology --- Biotechnology --- Nanotechnology --- Plant breeding. --- Nanotechnology. --- Microbiology. --- Plant biochemistry. --- Aquatic ecology . --- Plant Breeding/Biotechnology. --- Plant Biochemistry. --- Freshwater & Marine Ecology. --- Aquatic biology --- Ecology --- Phytochemistry --- Plant biochemistry --- Plant chemistry --- Biochemistry --- Botany --- Phytochemicals --- Plant biochemical genetics --- Microbial biology --- Biology --- Microorganisms --- Molecular technology --- Nanoscale technology --- High technology --- Crops --- Agriculture --- Breeding --- Ultraestructura (Biologia) --- Nanobioingenieria --- Nanobiologia --- Nanobiotecnologia --- Ultraestructura cel·lular --- Cèl·lules --- Microestructura --- Citologia --- Histologia
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This book provides up-to-date knowledge of the promising field of Nanobiotechnology with emphasis on the mitigation approaches to combat plant abiotic stress factors, including drought, salinity, waterlog, temperature extremes, mineral nutrients, and heavy metals. These factors adversely affect the growth as well as yield of crop plants worldwide, especially under the global climate change. Nanobiotechnology is viewed to revolutionize crop productivity in future. The chapters discuss the status and prospects of this cutting-edge technology toward understanding tolerance mechanisms, including signaling molecules and enzymes regulation in addition to the applications of Nanobiotechnology to combat individual abiotic stress factors. .
Plants --- Crops --- Effect of stress on --- Technological innovations. --- Agricultural crops --- Crop plants --- Farm crops --- Industrial crops --- Farm produce --- Plants, Cultivated --- Agronomy --- Crop science --- Plant products --- Flora --- Plant kingdom --- Plantae --- Vascular plants --- Vegetable kingdom --- Vegetation --- Wildlife --- Organisms --- Botany --- Efecte de l'estrès sobre les plantes --- Cultius (Biologia) --- Ultraestructura (Biologia) --- Nanobioingenieria --- Nanobiologia --- Nanobiotecnologia --- Ultraestructura cel·lular --- Cèl·lules --- Microestructura --- Citologia --- Histologia --- Cultiu cel·lular --- Efectes de l'estrès sobre les plantes --- Efectes fisiològics --- Estrès (Fisiologia) --- Botany. --- Agriculture. --- Plant Science. --- Farming --- Husbandry --- Industrial arts --- Life sciences --- Food supply --- Land use, Rural --- Botanical science --- Floristic botany --- Phytobiology --- Phytography --- Phytology --- Plant biology --- Plant science --- Biology --- Natural history
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Agriculture is considered as a backbone of developing nations as it caters the needs of the people, directly or indirectly. The global agriculture currently faces enormous challenges like land degradation and reduced soil fertility, shrinking of land, low production yield, water accessibility and a dearth of labor due to evacuation of individuals from farming. Besides, the global population increases at an exponential rate and it is predicted that the global population will be 9 billion by 2050 that in turn leads to food crisis in near future. Although, green revolution revolutionizes the agriculture sector by enhancing the yield but it was not considered as a sustainable approach. Exorbitant use of chemical fertilizers and pesticides to boost the crop yield is definitely not a convenient approach for agriculture sustainability in the light of the fact that these chemical fertilizers are considered as double-edged sword, which on one hand enhance the crop yield but at the same time possess deleterious effect on the soil microflora and thus declines its fertility. Besides, it cause irreversible damage to the soil texture and disrupts the equilibrium in the food chain across ecosystem, which might in turn lead to genetic mutations in future generations of consumers. Thus, the increased dependence on fabricated agricultural additives during and post green revolution has generated serious issues pertaining to sustainability, environmental impact and health hazards. Therefore, nano-biotechnology has emerged as a promising tool to tackle the above problems especially in the agriculture sector. Nano-agribusiness is an emerged field to enhance crop yield, rejuvenate soil health, provide precision farming and stimulate plant growth. Nano-biotechnology is an essential tool in modern agriculture and is considered as a primary economic driver in near future. It is evaluated that joining of cutting edge nanotechnology in agribusiness would push the worldwide monetary development to approximately US$ 3.4 trillion by 2020 which clearly indicates that how agri-nanobiotechnology plays a pivotal role in the agricultural sector, without any negative impact on the environment and other regulatory issues of biosafety. Agri-nanobiotechnology is an innovative green technology, which provides the solution to global food security, sustainability and climate change. The current book is presenting the role of nano-biotechnology in modern agriculture and how it plays a pivotal role to boost the agri-business.
Agricultural biotechnology. --- Agro-biotechnology --- Biotechnology --- Agriculture. --- Plant breeding. --- Nanotechnology. --- Plant Breeding/Biotechnology. --- Nanotechnology and Microengineering. --- Farming --- Husbandry --- Industrial arts --- Life sciences --- Food supply --- Land use, Rural --- Molecular technology --- Nanoscale technology --- High technology --- Crops --- Agriculture --- Breeding --- Agricultura --- Ultraestructura (Biologia) --- Nanobioingenieria --- Nanobiologia --- Nanobiotecnologia --- Ultraestructura cel·lular --- Cèl·lules --- Microestructura --- Citologia --- Histologia --- Agronomia --- Ciències de la vida --- Agricultura biològica --- Agricultura de muntanya --- Agricultura de precisió --- Agricultura de subsistència --- Agricultura sostenible --- Agricultura urbana --- Agrosilvicultura --- Aqüicultura --- Arbres --- Boscos --- Climatologia agrícola --- Conreu --- Conreus de regadiu --- Conreus extensius --- Dones en l'agricultura --- Extensió agrària --- Floricultura --- Indústria agrícola --- Indústria ramadera --- Investigació agrícola --- Jardineria --- Millorament selectiu de plantes --- Pagesia --- Pastures --- Productes agrícoles --- Protecció de les plantes --- Revolució verda --- Silvicultura --- Zootècnia --- Història de l'agricultura --- Pagesos --- Ramaderia
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