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Beneficial Microbes for Sustainable Agriculture and Environmental Management
Preface
: Mycorrhiza: A Potential Bio-Enhancer in the Agriculture Production System
INTRODUCTION
ROLE OF MYCORRHIZAE
FUTURE OF AMF AND SYMBIOTIC ASSOCIATION
MYCORRHIZAE AND CARBON ASSIMILATION
METABOLISM IN THE MYCORRHIZAL ROOT
NUTRIENT UPTAKE AND TRANSPORT BY MYCORRHIZAE
AMF FOR NODULATION AND DISEASE RESISTANCE
COMMERCIAL USE OF AM FUNGI (AMF)
CONCLUSION
KEYWORDS
REFERENCES
: Plant Growth-Promoting Microbiome Network
INTRODUCTION
THE TERM OF ENDOPHYTIC BACTERIA
LOCALIZATION AND DISTRIBUTION OF ENDOPHYTIC BACTERIA INSIDE THE PLANTS
INTERACTIONS OF ENDOPHYTIC BACTERIA AND IN VITRO PLANT CULTURES
MECHANISMS UNDERLYING BACTERIAL ENDOPHYTES- PLANT INTERACTIONS
A MODEL HOST TO STUDY PLANT-ENDOPHYTE INTERACTION
ROLES AND BIOTECHNOLOGICAL APPLICATIONS OF BACTERIAL ENDOPHYTES
ENDOPHYTES AS BIOFERTILIZERS: FORESIGHT AND COMPLICATION
CONCLUDING REMARKS AND FUTURE PROSPECTS
KEYWORDS
REFERENCES
: Plant Growth-Promoting Endophytic Bacteria and Their Potential Benefits in Asian Countries
INTRODUCTION
ISOLATION AND IDENTIFICATION
DIVERSITY OF PGPB
PLANT GROWTH-PROMOTING ACTIVITY AND PRODUCTS
CONCLUSION
KEYWORDS
REFERENCES
: Eccentricity in the Behavior of Penicillium spp. as Phytopathogen and Phytoaugmentor
INTRODUCTION
INTERACTION OF FUNGI WITH PLANTS AND ITS EFFECT ON AGRICULTURE
INTERACTION OF PENICILLIUM WITH PLANTS
IDENTIFICATION OF PENICILLIUM STRAIN
MOLECULAR IDENTIFICATION OF PENICIUIUM SPP. USING 18S rRNA GENE SEQUENCE ANALYSIS
PENICILLIUM AS PLANT PATHOGEN
OVERCOMING PENICILLIUM INFECTIONS IN PLANTS
PENICILLIUM SPP. AS PHYTOAUGMENTOR
CONCLUSION
: Environmental Management of E-Waste by Biological Process
INTRODUCTION
CLASSIFICATION OF E-WASTE
GLOBAL SCENARIO OF E-WASTE
INDIAN SCENARIO OF E-WASTE
DISPOSAL METHODS OF E-WASTE
E-WASTE TREATMENT BY THERMAL PLASMA TECHNIQUE
MANAGEMENT OF E-WASTE
PHYTOREMEDIATION
VERMI REMEDIATION
RECOVERY OF METALS FROM E-WASTE
BIOMETALLURGY PROCESS
BIOLEACHING PROCESS
BIOSORPTION
CONCLUSION
KEYWORDS
REFERENCES
: Microbial Degradation of Wastes for Environmental Protection
INTRODUCTION
ORGANIC WASTES
BIOCONVERSION AND BIOREMEDIATION OF WASTES FROM DIFFERENT SOURCES
PRODUCTION OF VALUABLE PRODUCTS FROM DIFFERENT WASTES
CONCLUSION
KEYWORDS
REFERENCES
: Soil Microbial Biofilm Communities and Their Interactions
INTRODUCTION
BIOFILM FORMATION BY SOIL MICROBES
INTERACTIONS/ASSOCIATIONS OF MICROBES IN SOIL
BIOREMEDIATION
CONCLUSION
KEYWORDS
REFERENCES
: Bacteriological Removal of Azo Dyes: An Eco-Friendly Approach
INTRODUCTION
HAZARDOUS NATURE OF AZO DYE
METHODS OF TREATMENT
ROLE OF MICROORGANISMS IN AZO DYE DEGRADATION 8.5. 7 FUNGI
ENZYMES IN AZO DYES DECOLORIZATION
BIOREACTOR SYSTEM FOR INDUSTRIAL EFFLUENT TREATMENT
CONCLUSION
KEYWORDS
REFERENCES
: Impact of Soil, Plant-Microbe Interaction in Metal Contaminated Soils
INTRODUCTION
EFFECT OF METAL CONTAMINATED SOIL ON PLANTS
EFFECT OF HEAVY METAL TOXICITY ON THE SOIL MICROORGANISMS
EFFECT OF HEAVY METAL TOXICITY ON HUMANS
METHODS FOR BIOREMEDIATION OF METAL CONTAMINATED SOILS
CONCLUSION
KEYWORDS
REFERENCES
: Radiation-Resistant Thermophiles: From High Temperature and Radiation to Engineered Bioremediation
INTRODUCTION
CO-EXISTENCE OF DESICCATION AND RADIATION RESISTANCE IN THERMOPHILES
MECHANISMS OF RADIATION RESISTANCE IN THERMOPHILES
APPLICATIONS
CONCLUSION
KEYWORDS
REFERENCES
: Dynamic Potential of Indigenous and Effective Microbes in Wastewater Treatment Processes
INTRODUCTION
INDUSTRIAL AND MUNICIPAL WASTEWATER: SOURCES AND TREATMENT PROCESSES
INDIGENOUS AND EFFECTIVE MICROORGANISMS (EMOs) IN WASTEWATER TREATMENT
POTENTIALITY OF IMOs AND EMOs
STRATEGY TO ENHANCE THE IMOs IN WASTEWATER TREATMENT PROCESS
EFFECT OF EMO ON THE QUALITY OF TREATED WASTEWATER
FACTORS AFFECTING WASTEWATER TREATMENT PROCESSES
CONCLUSION AND FUTURE PERSPECTIVES
KEYWORDS
REFERENCES
: Earthworms and Microbes in Environmental Management Through Vermitechnology-Mediated Organic Farming
INTRODUCTION
EARTHWORMS IN SOIL FERTILITY AND MICROBIAL MANAGEMENT
VERMITECHNOLOGY AND ORGANIC FARMING
VERMICOMPOSTING
BENEFITS OF VERMICOMPOST
VERMIWASH
BIODYNAMIC PREPARATION 500
BIODUNG COMPOSTING
ORGANIC INPUTS IN SOIL AND IMPACT
CONCLUSION
KEYWORDS
REFERENCES
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