Insertion mutagenesis of the yeast Candida famata (Debaryomyces hansenii) by random integration of linear DNA fragments

被引:43
作者
Dmytruk, Kostyantyn V.
Voronovsky, Andriy Y.
Sibirny, Andriy A.
机构
[1] NAS Ukraine, Inst Cell Biol, UA-79005 Lvov, Ukraine
[2] Rzeszow Univ, Dept Metab Engn, PL-35601 Rzeszow, Poland
关键词
insertional mutagenesis; gene tagging; yeast; riboflavin; Candida famata;
D O I
10.1007/s00294-006-0083-0
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The feasibility of using random insertional mutagenesis to isolate mutants of the flavinogenic yeast Candida famata was explored. Mutagenesis was performed by transformation of the yeast with an integrative plasmid containing the Saccharomyces cerevisiae LEU2 gene as a selective marker. The addition of restriction enzyme together with the plasmid (restriction enzyme-mediated integration, REMI) increased the transformation frequency only slightly. Integration of the linearized plasmid occurred randomly in the C. famata genome. To investigate the potential of insertional mutagenesis, it was used for tagging genes involved in positive regulation of riboflavin synthesis in C. famata. Partial DNA sequencing of tagged genes showed that they were homologous to the S. cerevisiae genes RIB1, MET2, and SEF1. Intact orthologs of these genes isolated from Debaryomyces hansenii restored the wild phenotype of the corresponding mutants, i.e., the ability to overproduce riboflavin under iron limitation. The Staphylococcus aureus ble gene conferring resistance to phleomycin was used successfully in the study as a dominant selection marker for C. famata. The results obtained indicate that insertional mutagenesis is a powerful tool for tagging genes in C. famata.
引用
收藏
页码:183 / 191
页数:9
相关论文
共 35 条
[1]   A rapid, small scale method for characterization of plasmid insertions in the Dictyostelium genome [J].
Barth, C ;
Fraser, DJ ;
Fisher, PR .
NUCLEIC ACIDS RESEARCH, 1998, 26 (13) :3317-3318
[2]  
BOLKER M, 1995, CAN J BOT, V73, pS320
[3]  
Brown DH, 1996, MOL GEN GENET, V251, P75, DOI 10.1007/BF02174347
[4]  
COWART R E, 1980, Microbios Letters, V13, P117
[5]   RIBOFLAVIN OVERSYNTHESIS [J].
DEMAIN, AL .
ANNUAL REVIEW OF MICROBIOLOGY, 1972, 26 :369-&
[6]  
Dmytruk K. V., 2004, Ukrainskii Biokhimicheskii Zhurnal, V76, P78
[7]   Iron uptake by the yeast Pichia guilliermondii.: Flavinogenesis and reductive iron assimilation are co-regulated processes [J].
Fedorovich, D ;
Protchenko, O ;
Lesuisse, E .
BIOMETALS, 1999, 12 (04) :295-300
[8]   Restriction enzyme-mediated DNA integration in Coprinus cinereus [J].
Granado, JD ;
KerteszChaloupkova, K ;
Aebi, M ;
Kues, U .
MOLECULAR AND GENERAL GENETICS, 1997, 256 (01) :28-36
[9]  
Groom KR, 1998, YEAST, V14, P77, DOI 10.1002/(SICI)1097-0061(19980115)14:1<77::AID-YEA201>3.0.CO
[10]  
2-P