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Effects on hyphal morphology and development by the putative copper radical oxidase glx1 in Trichoderma virens suggest a novel role as a cell wall associated enzyme

Fungal Genet Biol. 2019; 
Crutcher FK, Moran-Diez ME, Krieger IV, Kenerley CM.
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Gene Synthesis … Multiple sequence alignments were performed using ClustalX2 and GeneDoc software. The electro-eluted protein was used to produce a polyclonal antibody in rabbits (GenScript, Piscataway, NJ, USA). 2.3. Bioinformatic analysis … Get A Quote

摘要

Trichoderma spp. have been characterized for their capacity to act as biological control agents against several pathogens through the activity of secondary metabolites and cell wall degrading enzymes. However, only T. reesei has been widely studied for the ability to assimilate lignocellulose substrates. Protein analysis by SDS-PAGE of culture filtrate of T. virens revealed the presence of an unknown ∼77 kDa band protein (GLX1) that showed sequence homology to glyoxal-like oxidase genes involved in lignin degradation. The analysis and biochemical characterization of the 1,119 amino acid coded protein showed the presence of five carbohydrate-binding modules (CBMs) with affinity for colloidal chitin, and a fu... More

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