genomic analysis of the hydrocarbon-producing, cellulolytic, endophytic fungus ascocoryne sarcoides基因组分析hydrocarbon-producing,纤维素,植物内生真菌ascocoryne肉质的.pdfVIP
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genomic analysis of the hydrocarbon-producing, cellulolytic, endophytic fungus ascocoryne sarcoides基因组分析hydrocarbon-producing,纤维素,植物内生真菌ascocoryne肉质的
Genomic Analysis of the Hydrocarbon-Producing, Cellulolytic, Endophytic Fungus Ascocoryne sarcoides 1,2,3.{ 4. 4. 4 4 Tara A. Gianoulis , Meghan A. Griffin , Daniel J. Spakowicz , Brian F. Dunican , Cambria J. Alpha , 3,4 1,2 5 6 1,2 Andrea Sboner , A. Michael Sismour , Chinnappa Kodira , Michael Egholm , George M. Church , 3,4 4 Mark B. Gerstein *, Scott A. Strobel * 1 Department of Genetics, Harvard Medical School, Boston, Massachusetts, United States of America, 2 Wyss Institute for Biologically Inspired Engineering, Boston, Massachusetts, United States of America, 3 Program in Computational Biology and Bioinformatics, Yale University, New Haven, Connecticut, United States of America, 4 Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut, United States of America, 5 Roche 454 Life Sciences, Branford, Connecticut, United States of America, 6 Pall Corporation, Long Island City, New York, United States of America Abstract The microbial conversion of solid cellulosic biomass to liquid biofuels may provide a renewable energy source for transportation fuels. Endophytes represent a promising group of organisms, as they are a mostly untapped reservoir of metabolic diversity. They are often able to degrade cellulose, and they can produce an extraordinary diversity of met
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