Springer+ Basic
€34.99 /Month
Price includes VAT (Germany)
Instant access to the full article PDF.
ReferencesBeggs JD (1978) Transformation of yeast by a replicating hybrid plasmid. Nature 275:104
Bej A, Perlin MH (1991) Acquisition of mitochondrial DNA by a transformation vector forUstilago violacea. Gene 98:135–140
Brückner B, Unkles SE, Weltring K, Kinghorn J (1992) Transformation ofGibberella fujikuroi: effect of theAspergillus nidulans AMA1 sequence on frequency and integration. Curr Genet 22:313–316
Bull JH, Smith DJ, Turner G (1988) Transformation ofPenicillium chrysogenum with a dominant selectable marker. Curr Genet 13:377–383
Cantoral JM, Díez B, Barredo JL, Alvarez E, Martín JF (1987) High-frequency transformation ofPenicillium chrysogenum. Bio/Technol 5:494–497
Cantoral JM, Barredo JL, Díez B, Martín JF (1988) Nucleotide sequence of thePenicillium chrysogenum pyrG (orotidine-5′-phosphate decarboxylase) gene. Nucleic Acids Res 16:8177
Cantoral JM, Gutiérrez S, Fierro F, Gil-Espinosa S, van Liempt H, Martín JF (1993) Biochemical characterization and molecular genetics of nine mutants ofPenicillium chryosogenum impaired in penicillin biosynthesis. J Biol Chem 268:737–744
Demain AL (1983) Strain exchange between industry and academia. ASM News 49:431
Díez B, Alvarez E, Cantoral JM, Barredo JL, Martín JF (1987) Selection and characterization ofpyrG mutants ofPenicillium chrysogenum lacking orotidine-5′-phosphate decarboxylase and complementation by thepyr4 gene ofNeurospora crassa. Curr Genet 12:277–282
Fierro F, Gutiérrez S, Díez B, Martín JF (1993) Resolution of four large chromosomes in penicillin-producing filamentous fungi: the penicillin gene cluster is located on chromosome II (9.6 mb) inPenicillium notatum and chromosome I (10.4 mb) inPenicillium chrysogenum. Mol Gen Genet 241:573–579
Fierro F, Montenegro E, Gutiérrez S, Martín JF (1995) Mutants blocked in penicillin biosynthesis show a deletion of the entire penicillin gene cluster at a specific site within a conserved hexanucleotide sequence. Appl Microbiol Biotechnol (in press)
Gems D, Johnston IL, Clutterbuck AJ (1991) An autonomously replicating plasmid transformsAspergillus nidulans at high frequency. Gene 98:61–67
Gouka RJ, van Hartingsveldt W, Bovenberg RAL, van Zeijl CMJ, van den Hondel CAMJJ, van Gorcom RFM (1993) Development of a new transformant selection system forPenicillium chrysogenum: isolation and characterization of theP. chrysogenum acetyl-coenzyme A synthetase gene (facA) and its use as a homologous selection marker. Appl Microbiol Biotechnol 38:514–519
Gutiérrez S, Díez B, Montenegro E, Martín JF (1991a) Characterization of theCephalosporium acremonium pcbAB gene encoding α-aminoadipyl-cysteinyl-valine synthetase, a large multidomain peptide synthetase: linkage to thepcbC gene as a cluster of early cephalosporin-biosynthetic genes and evidence of multiple functional domains. J Bacteriol 173:2354–2365
Gutiérrez S, Díez B, Alvarez E, Barredo JL, Martín JF (1991b) Expression of thepenDE gene ofPenicillium chrysogenum encoding isopenicillin N acetyltransferase inCephalosporium acremonium: production of benzylpenicillin by the transformants. Mol Gen Genet 225:56–64
Gutiérrez S, Velasco J, Fernández FJ, Martín JF (1992) ThecefG gene ofCephalosporium acremonium is linked to thecefEF gene and encodes a deacetylcephalosporin C acetyltransferase closely related to homoserine O-acetyltransferase. J Bacteriol 174:3056–3064
Hanahan D (1986) Techniques for transformation ofE. coli. In: Glover DM (ed) DNA Cloning, vol. 1. IRL Press, Oxford, pp 109–135
Hughes K, Case ME, Geever R, Vapnek D, Giles NH (1983) A chimeric plasmid that replicates autonomously in bothEscherichia coli andNeurospora crassa. Proc Natl Acad Sci USA 80: 1053–1057
Kolar M, Punt PJ, van den Hondel CAMJJ, Schwab H (1988) Transformation ofPenicillium chrysogenum using dominant selection markers and expression of anEscherichia coli lacZ fusion gene. Gene 62:127–134
Montenegro E, Fierro F, Fernández FJ, Gutiérrez S, Martín JF (1992) Resolution of chromosomes III and VI ofAspergillus nidulans by pulsed-field gel electrophoresis shows that the penicillin biosynthetic pathway genespcbAB, pcbC, andpenDE are clustered on chromosome VI (3.0 megabases). J Bacteriol 174:7063–7067
Onions AHS, Brady BL (1987) Taxonomy ofPenicillium andAcremonium. In: Peberdy JF (ed)Penicillium andAcremonium. Plenum Press, New York, pp 1–36
Peng M, Singh NK, Lemke PA (1992) Recovery of recombinant plasmids fromPleurotus ostreatus transformants. Curr Genet 22: 53–59
Peng M, Lemke PA, Singh NK (1993) A nucleotide sequence inolved in replicative transformation of a filamentous fungus. Curr Genet 24:114–121
Perlin MH, Bej AK, Will OH, Jacob RJ (1990) Introduction and maintenance of prokaryotic DNA inUstilago violacea. J Indust Microbiol 5:355–364
Randall T, Rao T, Reddy CA (1989) Use of a shuttle vector for the transformation of the white rot basidiomycete,Phanerochaete chrysosporium. Biochem Biophys Res Commun 161:720–725
Randall T, Reddy CA, Boominathan K (1991) A novel extrachromosomally maintained transformation vector for the lignin-degrading basidiomycetePhanerochaete chrysosporium. J Bacteriol 173:776–782
Sambrook J, Fritsch EF, Maniatis T (1989) Molecular cloning: a laboratory manual, 2nd edn. Cold Spring Harbor Laboratory, Cold Spring Harbor, New York
Som T, Armstrong KA, Volkert FC, Broach JR (1988) Autoregulation of 2 μm circle gene expression provides a model for maintenance of stable plasmid copy levels. Cell 52:27–37
Struhl K, Stinchcomb DT, Scherer S, Davis RW (1979) High-frequency transformation of yeast: autonomous replication of hybrid DNA molecules. Proc Natl Acad Sci USA 76:1035
Tilburn J, Scazzochio C, Taylor GG, Zabicky-Zissman JH, Lockington RA, Davis RW (1983) Transformation by integration inAspergillus nidulans. Gene 26:205–221
Van Heeswicjck R, Roncero MIG (1984) High-frequency transformation ofMucor with recombinant plasmid DNA. Carlsberg Res Commun 49:691–702
Van Houten JV, Newton CS (1990) Mutational analysis of the consensus sequence of a replication origin from yeast chromosome III. Mol Cell Biol 10:3917–3925
Williamson DH (1985) The yeast ARS element, six years on: a program report. Cell 42:951–958
RetroSearch is an open source project built by @garambo | Open a GitHub Issue
Search and Browse the WWW like it's 1997 | Search results from DuckDuckGo
HTML:
3.2
| Encoding:
UTF-8
| Version:
0.7.4