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Bheda,\ P.\ ; Kirmizis,\ A.*\ ; Schneider,\ R.
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The past determines the future: Sugar source history and transcriptional memory.
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Curr. Genet. 66, 1029–1035 (2020)
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Jha,\ B.\ ; Ahne,\ F.\ ; Eckardt-Schupp,\ F.
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The Use of Double Marker Shuttle Vector to Study DNA Double Strand Break Repair in Wild- Type and Radiation-Sensitive Mutants of the Yeast Saccharomyces Cerevisiae.
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Curr. Genet. 23, 402-407 (1993)
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Jha,\ B.S.\ ; Ahne,\ F.\ ; Eckardt-Schupp,\ F.
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The use of a double-marker shuttle vector to study DNA double-strand break repair in wild-type and radiation-sensitive mutants of the yeast \Saccharomyces cerevisiae\.
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Curr. Genet. 23, 402-407 (1993)
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Ahne,\ F.\ ; Baur,\ M.\ ; Eckardt-Schupp,\ F.
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The \REV2\ gene of \Saccharomyces cerevisiae\: Cloning and DNA sequence.
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Curr. Genet. 22, 277-282 (1992)
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Geigl,\ E.M.\ ; Eckardt-Schupp,\ F.
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Repair of gamma ray-induced S1 nuclease hypersensitive sites in yeast depends of homologous mitotic recombination and a RAD18-dependent function.
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Curr. Genet. 20, 33-37 (1991)
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Siede,\ W.\ ; Eckardt-Schupp,\ F.
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DNA repair genes of \Saccharomyces cerevisiae\: Complementing \rad4\ and \rev2\ mutations by plasmids which cannot be propagated in \Escherichia coli\.
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Curr. Genet. 11, 205-210 (1986)
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Eckardt,\ F.\ ; Kunz,\ B.A.\ ; Haynes,\ R.H.
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Variation of mutation and recombination frequencies over a range of thymidylate concentrations in a diploid thymidylate auxotroph.
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Curr. Genet. 7, 399-402 (1983)
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Kunz,\ B.A.*\ ; Little,\ J.G.*\ ; Eckardt,\ F.\ ; Haynes,\ R.H.*
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Thymineless recombination in \Saccharomyces cerevisiae\ is independent of the ability to undergo meiosis.
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Curr. Genet. 5, 29-31 (1982)
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