Winge O, Roberts C. . C.R. Trav. Lab. Carlsberg 25: 141, 1952.
Halvorson HO, et al. Comparison of the alpha-glucosidases of Saccharomyces produced in response to five non-allelic maltose genes. Biochim. Biophys. Acta 67: 42-53, 1963.
Lindegren CC, Lindegren G. Eight genes controlling the presence or absence of carbohydrate fermentation in Saccharomyces. J. Gen. Microbiol. 15: 19-28, 1956. PubMed: 13357711
Winge O, Roberts C. . C.R. Trav. Lab. Carlsberg 25: 419, 1957.
Ottolenghi P. . C.R. Trav. Lab. Carlsberg 38: 213, 1971.
Hawthorne D. . Heredity 12: 273, 1958.
Okada H, Halvorson HO. Uptake of alpha-thioethyl d-glucopyranoside by Saccharomyces cerevisiae. I. The genetic control of facilitated diffusion and active transport. Biochim. Biophys. Acta 82: 538-546, 1964.
Winge O, Roberts C. . C.R. Trav. Lab. Carlsberg 25: 141, 1952.
Halvorson HO, et al. Comparison of the alpha-glucosidases of Saccharomyces produced in response to five non-allelic maltose genes. Biochim. Biophys. Acta 67: 42-53, 1963.
Lindegren CC, Lindegren G. Eight genes controlling the presence or absence of carbohydrate fermentation in Saccharomyces. J. Gen. Microbiol. 15: 19-28, 1956. PubMed: 13357711
Winge O, Roberts C. . C.R. Trav. Lab. Carlsberg 25: 419, 1957.
Ottolenghi P. . C.R. Trav. Lab. Carlsberg 38: 213, 1971.
Hawthorne D. . Heredity 12: 273, 1958.
Okada H, Halvorson HO. Uptake of alpha-thioethyl d-glucopyranoside by Saccharomyces cerevisiae. I. The genetic control of facilitated diffusion and active transport. Biochim. Biophys. Acta 82: 538-546, 1964.
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