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Broader Terms:
   Ceriporiopsis 
   Coriolaceae 
   Cyphellaceae 
   Fomitopsidaceae 
   Hapalopilaceae 
   Meruliaceae 
   Polyporaceae 

More Specific:
   Ceriporiopsis 
   Ceriporiopsis albonigrescens 
   Ceriporiopsis aneirina 
   Ceriporiopsis aneirina aneirina 
   Ceriporiopsis aneirina bombycinoides 
   Ceriporiopsis aneirina metamorphosa 
   Ceriporiopsis aneirina mollissima 
   Ceriporiopsis aurantitingens 
   Ceriporiopsis azorica 
   Ceriporiopsis balaenae 
   Ceriporiopsis carnegiae 
   Ceriporiopsis carnegiea 
   Ceriporiopsis cerrusata 
   Ceriporiopsis cerussata 
   Ceriporiopsis consobrina 
   Ceriporiopsis coprosmae 
   Ceriporiopsis cremea 
   Ceriporiopsis cremeicarnea 
   Ceriporiopsis cystidiata 
   Ceriporiopsis flavilutea 
   Ceriporiopsis gilvescens 
   Ceriporiopsis gilvescens carneobrunnea 
   Ceriporiopsis gilvescens gilvescens 
   Ceriporiopsis guidella 
   Ceriporiopsis hyalina 
   Ceriporiopsis hydnoidea 
   Ceriporiopsis incarnata 
   Ceriporiopsis jelicii 
   Ceriporiopsis latemarginata 
   Ceriporiopsis lowei 
   Ceriporiopsis merulinus 
   Ceriporiopsis microporus 
   Ceriporiopsis mucida 
   Ceriporiopsis myceliosa 
   Ceriporiopsis niger 
   Ceriporiopsis obscura 
   Ceriporiopsis pannocincta 
   Ceriporiopsis placenta 
   Ceriporiopsis placenta microspora 
   Ceriporiopsis placenta placenta 
   Ceriporiopsis placenta roseomaculata 
   Ceriporiopsis portcrosensis 
   Ceriporiopsis resinascens 
   Ceriporiopsis resinascens micantiformis 
   Ceriporiopsis resinascens polyetes 
   Ceriporiopsis resinascens pseudogilvescens 
   Ceriporiopsis resinascens resinascens 
   Ceriporiopsis reticulata 
   Ceriporiopsis rivulosa 
   Ceriporiopsis rivulosa rivulosa 
   Ceriporiopsis rivulosa valdiviana 
   Ceriporiopsis subrufa 
   Ceriporiopsis subsphaerospora 
   Ceriporiopsis subvermispora 
   Ceriporiopsis umbrinescens 
   Ceriporiopsis vinosa 
 
 
Latest Articles on Ceriporiopsis from uBioRSS


External Resources:



1.  A 14-bp stretch plays a critical role in regulating gene expression from ?1-tubulin promoters of basidiomycetes.LinkIT
Nguyen DX, Sakaguchi T, Nakazawa T, Sakamoto M, Honda Y
Current genetics, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

2.  Structural Motifs of Wheat Straw Lignin Differ in Susceptibility to Degradation by the White-Rot Fungus Ceriporiopsis subvermispora.LinkIT
van Erven G, Wang J, Sun P, de Waard P, van der Putten J, Frissen GE, Gosselink RJA, Zinovyev G, Potthast A, van Berkel WJH, Kabel MA
ACS sustainable chemistry & engineering, 2019
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

3.  Degradation of Four Major Mycotoxins by Eight Manganese Peroxidases in Presence of a Dicarboxylic Acid.LinkIT
Wang X, Qin X, Hao Z, Luo H, Yao B, Su X
Toxins, 2019
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

4.  Modification of corn stover for improving biodegradability and anaerobic digestion performance by Ceriporiopsis subvermispora.LinkIT
Huang W, Wachemo AC, Yuan H, Li X
Bioresource technology, 2019
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

5.  Identification of key residues for activities of atypical glutathione S-transferase of Ceriporiopsis subvermispora, a selective degrader of lignin in woody biomass, by crystallography and functional mutagenesis.LinkIT
Osman WHW, Mikami B, Saka N, Kondo K, Lin MI, Nagata T, Katahira M
International journal of biological macromolecules, 2019
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

6.  Stable and transient transformation, and a promoter assay in the selective lignin-degrading fungus, Ceriporiopsis subvermispora.LinkIT
Honda Y, Tanigawa E, Tsukihara T, Nguyen DX, Kawabe H, Sakatoku N, Watari J, Sato H, Yano S, Tachiki T, Irie T, Watanabe T, Watanabe T
AMB Express, 2019
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

7.  Structure of a serine-type glutathione S-transferase of Ceriporiopsis subvermispora and identification of the enzymatically important non-canonical residues by functional mutagenesis.LinkIT
Wan Osman WH, Mikami B, Saka N, Kondo K, Nagata T, Katahira M
Biochemical and biophysical research communications, 2019
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

8.  In silico-designed lignin peroxidase from Phanerochaete chrysosporium shows enhanced acid stability for depolymerization of lignin.LinkIT
Pham LTM, Seo H, Kim KJ, Kim YH
Biotechnology for biofuels, 2018
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

9.  Classification of fungal glucuronoyl esterases (FGEs) and characterization of two new FGEs from Ceriporiopsis subvermispora and Pleurotus eryngii.LinkIT
Lin MI, Hiyama A, Kondo K, Nagata T, Katahira M
Applied microbiology and biotechnology, 2018
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

10.  Mechanistic insight in the selective delignification of wheat straw by three white-rot fungal species through quantitative 13C-IS py-GC-MS and whole cell wall HSQC NMR.LinkIT
van Erven G, Nayan N, Sonnenberg ASM, Hendriks WH, Cone JW, Kabel MA
Biotechnology for biofuels, 2018
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0



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