Cloning of novel bacterial xylanases from lignocellulose-enriched compost metagenomic libraries

scientific article published on 05 August 2019

Cloning of novel bacterial xylanases from lignocellulose-enriched compost metagenomic libraries is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1186/S13568-019-0847-9
P932PMC publication ID6682842
P698PubMed publication ID31385056

P50authorSimo ElliläQ92439460
P2093author name stringAnu Koivula
Kristiina Kruus
Lars Paulin
Mari Nyyssönen
Merja Itävaara
Paul Bromann
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Targeted discovery of glycoside hydrolases from a switchgrass-adapted compost communityQ28749225
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The fibronectin type 3-like repeat from the Clostridium thermocellum cellobiohydrolase CbhA promotes hydrolysis of cellulose by modifying its surfaceQ34059849
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Use of Psychrophilic Xylanases Provides Insight into the Xylanase Functionality in Bread MakingQ57783596
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A novel thermostable GH10 xylanase with activities on a wide variety of cellulosic substrates from a xylanolytic strain exhibiting significant synergy with commercial Celluclast 1.5 L in pretreated corn stover hydrolysisQ64111296
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P433issue1
P921main subjectmetagenomicsQ903778
lignocelluloseQ124155040
P304page(s)124
P577publication date2019-08-05
P1433published inAMB ExpressQ27723718
P1476titleCloning of novel bacterial xylanases from lignocellulose-enriched compost metagenomic libraries
P478volume9

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