Differential regulation of laccase gene expression in Pleurotus sajor-caju

被引:185
作者
Soden, DM
Dobson, ADW [1 ]
机构
[1] Natl Univ Ireland Univ Coll Cork, Dept Microbiol, Cork, Ireland
[2] Natl Univ Ireland, Natl Food Biotechnol Ctr, Cork, Ireland
来源
MICROBIOLOGY-SGM | 2001年 / 147卷
关键词
white-rot fungus; transcriptional regulation; ligninolytic enzymes; polyphenol oxidases;
D O I
10.1099/00221287-147-7-1755
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Four laccase isozyme genes, Psc lac1,2,3 and 4 have been cloned from the edible mushroom, Pleurotus sajor-caju. The genes display a high degree of homology with other basidiomycete laccases (55-99%) at the amino acid level. Of the laccase genes isolated, Psc lad and 4 displayed the highest degree of National Food similarity (85% at the amino acid level), while Psc lac3 showed the highest degree of divergence, exhibiting only 52-57% amino acid similarity to the other PI. sajor-caju laccase gene sequences. Laccase activity in PI. sajor-caju is affected by nutrient nitrogen and carbon, and by the addition of copper and manganese to the growth medium. In addition, 2,5-xylidine, ferulic acid, veratric acid and 1-hydroxybenzotriazole induced laccase activity in the fungus. Induction of individual laccase isozyme genes by carbon, nitrogen, copper, manganese and the two aromatic compounds, 2,5-xylidine and ferulic acid, occurred at the level of gene transcription. While Psc lac3 transcript levels appeared to be constitutively expressed, transcript levels for the other laccase isozyme genes, lac1, 2 and 4 were differentially regulated under the conditions tested.
引用
收藏
页码:1755 / 1763
页数:9
相关论文
共 49 条
[1]  
ALTSCHUL SF, 1990, J MOL BIOL, V215, P403, DOI 10.1006/jmbi.1990.9999
[2]   PRODUCTION OF MANGANIC CHELATES BY LACCASE FROM THE LIGNIN-DEGRADING FUNGUS TRAMETES (CORIOLUS) VERSICOLOR [J].
ARCHIBALD, F ;
ROY, B .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1992, 58 (05) :1496-1499
[3]   SEQUENCES IMPORTANT FOR GENE-EXPRESSION IN FILAMENTOUS FUNGI [J].
BALLANCE, DJ .
YEAST, 1986, 2 (04) :229-236
[4]   COPPER RESISTANCE MECHANISMS IN BACTERIA AND FUNGI [J].
CERVANTES, C ;
GUTIERREZCORONA, F .
FEMS MICROBIOLOGY REVIEWS, 1994, 14 (02) :121-137
[5]   MOLECULAR ANALYSIS OF THE LACCASE GENE FROM THE CHESTNUT BLIGHT FUNGUS AND SELECTIVE SUPPRESSION OF ITS EXPRESSION IN AN ISOGENIC HYPOVIRULENT STRAIN [J].
CHOI, GH ;
LARSON, TG ;
NUSS, DL .
MOLECULAR PLANT-MICROBE INTERACTIONS, 1992, 5 (02) :119-128
[6]   CHARACTERIZATION AND STRUCTURAL-ANALYSIS OF THE LACCASE-I GENE FROM THE NEWLY ISOLATED LIGNINOLYTIC BASIDIOMYCETE PM1 (CECT 2971) [J].
COLL, PM ;
TABERNERO, C ;
SANTAMARIA, R ;
PEREZ, P .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1993, 59 (12) :4129-4135
[7]   Regulation of laccase gene transcription in Trametes versicolor [J].
Collins, PJ ;
Dobson, ADW .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1997, 63 (09) :3444-3450
[8]  
DEVRIES OMH, 1986, J GEN MICROBIOL, V132, P2817
[9]  
Eggert C, 1998, APPL ENVIRON MICROB, V64, P1766
[10]   Laccase is essential for lignin degradation by the white-rot fungus Pycnoporus cinnabarinus [J].
Eggert, C ;
Temp, U ;
Eriksson, KEL .
FEBS LETTERS, 1997, 407 (01) :89-92