Lignolytic-consortium omics analyses reveal novel genomes and pathways involved in lignin modification and valorization.

scientific article published on 22 March 2018

Lignolytic-consortium omics analyses reveal novel genomes and pathways involved in lignin modification and valorization. is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1101701123
P356DOI10.1186/S13068-018-1073-4
P932PMC publication ID5863372
P698PubMed publication ID29588660

P50authorNeil DixonQ57244394
P2093author name stringEduardo C Moraes
Timothy D H Bugg
Fabio M Squina
Camila Caldana
Thabata M Alvarez
Geizecler Tomazetto
Juliana A Aricetti
Gabriela F Persinoti
Douglas A A Paixão
Gabriela C Ematsu
Livia B Brenelli
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P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P4510describes a project that usesphyloseqQ106407822
P921main subjectligninQ184817
P304page(s)75
P577publication date2018-03-22
P1433published inBiotechnology for BiofuelsQ15754394
P1476titleLignolytic-consortium omics analyses reveal novel genomes and pathways involved in lignin modification and valorization
P478volume11

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cites work (P2860)
Q64106667An alkaline active feruloyl-CoA synthetase from soil metagenome as a potential key enzyme for lignin valorization strategies
Q64065652Mapping the diversity of microbial lignin catabolism: experiences from the eLignin database
Q64245840Recent advances in lignin valorization with bacterial cultures: microorganisms, metabolic pathways, and bio-products

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