PGPR-Treated Spent Mushroom Substrate Enhances Lignocellulose Degradation, Enzyme Activities, and Microbial Restructuring to Sustain Blueberry Rhizosphere Fertility. [PDF]
Wang M, Li N, Liang Y, Xu Z, Wu H.
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Design and Preparation of Nano-Lignin Peroxidase (NanoLiP) by Protein Block Copolymerization Approach. [PDF]
Tay T, Köse E, Keçili R, Say R.
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Functional and genomic characterization of ligninolytic Bacillus strains for improved jute fibre delignification. [PDF]
Barai S +5 more
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Reimagining Lignin Valorization: Synthetic Biology-Enabled Sustainable Aromatic Carbon Biomanufacturing. [PDF]
Li N +4 more
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Reintroduction of lignin-modifying enzymes in the brown-rot fungus Gloeophyllum trabeum restores ligninolytic activities but diminishes lignocellulose degradation. [PDF]
Ganjoloo N, Li W, Zhang J.
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Screening White-Rot Fungi and Characterizing Lignocellulose Degradation by <i>Ganoderma</i> sp. from Chinese Distillers' Grains. [PDF]
Hu Y +7 more
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Enhanced valorization of Korshinsk peashrub (Caragana korshinskii Kom.) as ruminant feed via the selective ligninolysis by the white rot fungus Dichomitus squalens. [PDF]
Liao J +8 more
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Talaromyces marinus (Eurotiales, Trichocomaceae): a new marine fungus from the Red Sea, Egypt, with distinguished enzymatic capabilities. [PDF]
Abdel-Aziz AE, Amer EM, Bakhit MS.
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Untapped enzymatic potential: dehalogenase- and peroxidase-driven PVC degradation by gene carriers in Tibetan plateau pikas. [PDF]
Zhou C +7 more
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Enhancing tobacco quality through microbial-enzymatic processing: mechanisms, applications, and future perspectives. [PDF]
Xu L +12 more
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