Rogovin SP, Albrecht WJ. Method of recovering microbial polysaccharides from their fermentation broths. US Patent 3,119,812 dated Jan 28 1964
Tanenbaum SW, et al. Hemicellulose bioconversion to polyanionic heteropolysaccharides. Appl. Biochem. Biotechnol. 34-35: 135-148, 1992. PubMed: 1622201
Peppler HJ. Microbial technology. New York: Reinhold; 1967.
Saito K. Untersuchungen uber die atmospharischen Pilzkeime. Jpn. J. Bot. 1: 1-54, 1922.
. . Tenneco Chemicals, Inc., Microbiol. Abstr. 11: 79, 1967.
Biely P, et al. Xylan-degrading activity in yeasts: growth on xylose, xylan and hemicelluloses. Folia Microbiol. 23: 366-371, 1978.
Schutzbach JS, Ankel H. Xylosyltransferases in Cryptococcus laurentii. J. Biol. Chem. 247: 6574-6580, 1972. PubMed: 4342604
Schutzbach JS, et al. Heteroglycan synthesis in Cryptococcus laurentii. J. Biol. Chem. 249: 2953-2958, 1974. PubMed: 4828330
Raizada MK, et al. Biosynthesis of oligogalactosyl side chains of the cell envelope glycoprotein of Cryptococcus laurentii. J. Biol. Chem. 249: 6080-6086, 1974. PubMed: 4371788
Raizada MK, et al. Cryptococcus laurentii cell envelope glycoprotein. Evidence for separate oligosaccharide side chains of different composition and structure. J. Biol. Chem. 250: 3310-3315, 1975. PubMed: 1123343
Perry MB, Webb AC. Structure of the acidic capsular polysaccharide of Cryptococcus laurentii (NRRL Y-1401). Can. J. Biochem. 60: 124-130, 1982. PubMed: 7083041
type strain of Torula flavescens
Liu XZ, et al. Towards an integrated phylogenetic classification of the Tremellomycetes. Stud. Mycol. 81: 85-147, 2015. PubMed: 26955199
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