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12 p, 2.0 MB Integrative omics analysis of the termite gut system adaptation to Miscanthus diet identifies lignocellulose degradation enzymes / Calusinska, Magdalena (Luxembourg Institute of Science and Technology. BioSystems and Bioprocessing Engineering) ; Marynowska, Martyna (Université Libre de Bruxelles. Evolutionary Biology and Ecology) ; Bertucci, Marie (Université Catholique de Louvain. Laboratory of Bioengineering, Earth and Life Institute) ; Untereiner, Boris (Luxembourg Institute of Science and Technology. BioSystems and Bioprocessing Engineering) ; Klimek, Dominika (Luxembourg Institute of Science and Technology. BioSystems and Bioprocessing Engineering) ; Goux, Xavier (Luxembourg Institute of Science and Technology. BioSystems and Bioprocessing Engineering) ; Sillam-Dussès, David (University Paris 13-Sorbonne Paris Cité. Laboratory of Experimental and Comparative Ethology) ; Gawron, Piotr (University of Luxembourg. Luxembourg Centre for Systems Biomedicine) ; Halder, Rashi (University of Luxembourg. Luxembourg Centre for Systems Biomedicine) ; Wilmes, Paul (University of Luxembourg. Luxembourg Centre for Systems Biomedicine) ; Ferrer, Pau (Universitat Autònoma de Barcelona. Departament d'Enginyeria Química, Biològica i Ambiental) ; Gerin, Patrick (Université Catholique de Louvain. Laboratory of Bioengineering, Earth and Life Institute) ; Roisin, Yves (Université Libre de Bruxelles. Evolutionary Biology and Ecology) ; Delfosse, Philippe (University of Luxembourg)
Miscanthus sp. biomass could satisfy future biorefinery value chains. However, its use is largely untapped due to high recalcitrance. The termite and its gut microbiome are considered the most efficient lignocellulose degrading system in nature. [...]
2020 - 10.1038/s42003-020-1004-3
Communications Biology, Vol. 3 (June 2020) , art. 275  

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