2021
DOI: 10.1007/s13399-020-01186-y
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Role of metagenomics in prospecting novel endoglucanases, accentuating functional metagenomics approach in second-generation biofuel production: a review

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Cited by 27 publications
(11 citation statements)
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“…One approach that has been widely used is to look for specific genomic content in environmental samples through metagenomics [ 378 , 379 ]. To isolate new genes and pathways encoding enzymes or biosynthesis of biomolecules, functional metagenomics has been widely successful in isolating and identifying new families of proteins, especially lignocellulolytic enzymes [ 380 ]. Using metagenomics, therefore, allows the prospection of potential lignocellulolytic microorganisms very quickly, in addition to allowing the identification of both cultured and non-cultured microorganisms [ 381 ].…”
Section: Recent Advancesmentioning
confidence: 99%
“…One approach that has been widely used is to look for specific genomic content in environmental samples through metagenomics [ 378 , 379 ]. To isolate new genes and pathways encoding enzymes or biosynthesis of biomolecules, functional metagenomics has been widely successful in isolating and identifying new families of proteins, especially lignocellulolytic enzymes [ 380 ]. Using metagenomics, therefore, allows the prospection of potential lignocellulolytic microorganisms very quickly, in addition to allowing the identification of both cultured and non-cultured microorganisms [ 381 ].…”
Section: Recent Advancesmentioning
confidence: 99%
“…Some examples include turbomycin A and B, chitinase with chitobiosidase activity, lactonases, LuxR/LuxI genes, bacterial NAHLase, carboxylesterase, kanamycin, and ceftazidime resistance genes [ 53 , 64 ]. Metagenomics have also been used to discover novel endoglucanases for production of second-generation biofuel [ 65 ].…”
Section: Global Trends Of Metagenome Studiesmentioning
confidence: 99%
“…Although most of the known industrial enzymes are obtained from microorganisms through pure culture isolation and screening ( Martin and Vandenbol, 2016 ), recent estimates show that more than 99% of microorganisms in the environment are uncultivable through conventional microbiological methods ( Berini et al, 2017a ). Thus, in recent years the advent of metagenomics has provided a powerful tool to access the genetic and metabolic diversity of microorganisms in any environment, bypassing the limitations of the current culture-dependent approaches ( Berini et al, 2017a ; Ngara and Zhang, 2018 ; Pabbathi et al, 2021 ). Functional metagenomics is a method that clones the environmental DNA into a suitable vector to create a library and which is then transformed into a host, such as E. coli .…”
Section: Introductionmentioning
confidence: 99%