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Chlorophytum rhizosphere, a suitable environment for electroactive biofilm development
Biomass Conversion and Biorefinery, 2020The electroactivity of Chlorophytum rhizospheric soil using imposed potential chronoamperometry and a characteristic cyclic voltammetry was demonstrated in the present work. Five different polarizations were tested: − 0.3, − 0.155, 0, + 0.155, and + 0.3 V/SCE.
I. Tou +8 more
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Rhizosphere Bioremediation: Green Technology to Clean Up the Environment
2020Rhizosphere bioremediation is a plant-assisted bioremediation, which has multiple effects in the bioremediation process due to symbiotic association of mycorrhizal fungi and bacteria along the root zone in the rhizosphere. The developed mycorrhizosphere serves as an efficient and effective bioremediation technology.
M.H. Fulekar, Jyoti Fulekar
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Rhizosphere provides a new paradigm on the prevalence of lysogeny in the environment
Soil and Tillage Research, 2019Abstract Bacteria and phage enter into lysogeny to survive under nutrient-limiting environment. Plant-soil feedback improves nutrients and increases density and diversity of bacteria in the rhizosphere soil, however, its impact on lysogeny is not understood.
Radhey Shyam Sharma +6 more
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Current Microbiology, 2023
Soil salinization is a global issue that negatively impacts crop yield and has become a prime concern for researchers worldwide. Many important crop plants are susceptible to salinity-induced stresses, including ionic and osmotic stress. Approximately, 20% of the world's cultivated and 33% of irrigated land is affected by salt.
Sanjay K. Goswami +5 more
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Soil salinization is a global issue that negatively impacts crop yield and has become a prime concern for researchers worldwide. Many important crop plants are susceptible to salinity-induced stresses, including ionic and osmotic stress. Approximately, 20% of the world's cultivated and 33% of irrigated land is affected by salt.
Sanjay K. Goswami +5 more
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Implications of Nanotechnology on Plant Productivity and Its Rhizospheric Environment
2015Nanotechnology requires the ability to understand the materials and precisely manipulate it to nanoscale in a useful way. Nanotechnology emerged as a new broad science of diverse fields such as basic sciences, materials science, and engineering to assemble at the nanoscale.
Sanjog T. Thul, Bijaya K. Sarangi
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Characteristics of rhizosphere soil from natural and agricultural environments
2005In the first part of this chapter, we present an overview of the methodologies adopted to study the rhizosphere soil, focusing on the protocols devised for its separation. For these methodologies and protocols, we also discuss the advantages and disadvantages inherent in their use.
Corti G. +4 more
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Impact of Fabricated Nanoparticles on the Rhizospheric Microorganisms and Soil Environment
2019The use of nanoparticles (NPs), i.e., particles of 1–100 nanometers in size with a surrounding interfacial layer, is gaining momentum in commerce, and their increased production and utilization makes the agriculture risk assessment rational. They may enter the environment as fertilizers or pesticides or through waste streams, accidental spills, and ...
Mokula Mohammed Raffi, Azamal Husen
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Effects of ginseng cultivation on rhizosphere soil microecological environment
Allelopathy Journal, 2021C.X. Yang +6 more
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