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[HTML][HTML] Rhizosphere colonization determinants by plant growth-promoting rhizobacteria (PGPR)
Simple Summary Plant growth-promoting rhizobacteria (PGPR) are an eco-friendly
alternative to the use of chemicals in agricultural production and crop protection. However …
alternative to the use of chemicals in agricultural production and crop protection. However …
[HTML][HTML] Cellulases: from bioactivity to a variety of industrial applications
Utilization of microbial enzymes has been widely reported for centuries, but the commercial
use of enzymes has been recently adopted. Particularly, cellulases have been utilized in …
use of enzymes has been recently adopted. Particularly, cellulases have been utilized in …
[HTML][HTML] Role of bacterial biofertilizers in agriculture and forestry
Many rhizospheric bacterial strains possess plant growth-promoting mechanisms. These
bacteria can be applied as biofertilizers in agriculture and forestry, enhancing crop yields …
bacteria can be applied as biofertilizers in agriculture and forestry, enhancing crop yields …
Enzymatic degradation of cellulose in soil: A review
R Datta - Heliyon, 2024 - cell.com
Cellulose degradation is a critical process in soil ecosystems, playing a vital role in nutrient
cycling and organic matter decomposition. Enzymatic degradation of cellulosic biomass is …
cycling and organic matter decomposition. Enzymatic degradation of cellulosic biomass is …
Towards sustainable Cleaning‐in‐Place (CIP) in dairy processing: exploring enzyme‐based approaches to cleaning in the Cheese industry
KJ Pant, PD Cotter, MG Wilkinson… - … Reviews in Food …, 2023 - Wiley Online Library
Abstract Cleaning‐in‐place (CIP) is the most commonly used cleaning and sanitation
system for processing lines, equipment, and storage facilities such as milk silos in the global …
system for processing lines, equipment, and storage facilities such as milk silos in the global …
Diversity of cellulolytic microorganisms and microbial cellulases
Lignocellulosic biomass is a geographically abundant source of renewable energy, showing
enormous potential to contribute to escalating energy demands. Improving the industrial …
enormous potential to contribute to escalating energy demands. Improving the industrial …
[HTML][HTML] Cellulase production from species of fungi and bacteria from agricultural wastes and its utilization in industry: a review
In energy deficient world, cellulases play a major role for the production of alternative energy
resources utilizing lignocellulosic waste materials for bioethanol and biogas production. This …
resources utilizing lignocellulosic waste materials for bioethanol and biogas production. This …
Cellulose-deconstruction potential of nano-biocatalytic systems: A strategic drive from designing to sustainable applications of immobilized cellulases
Nanostructured materials along with an added value of polymers-based support carriers
have gained high interest and considered ideal for enzyme immobilization. The recently …
have gained high interest and considered ideal for enzyme immobilization. The recently …
Designing microbial cellulases using genetic engineering approach: A promising strategy towards zero-waste cellulosic biorefinery
Cellulosic biorefinery is a promising route towards zero-waste environment and sustainable
future via the utilization of industrially significant protein ie,“cellulases”. Despite the …
future via the utilization of industrially significant protein ie,“cellulases”. Despite the …
The role of microbial diversity in lignocellulosic biomass degradation: a biotechnological perspective
Lignocellulosic biomass, such as plant residues and agricultural waste, holds immense
potential as a renewable resource for the production of biofuels, chemicals, and animal feed …
potential as a renewable resource for the production of biofuels, chemicals, and animal feed …