Artículos de revistas
Strain-specific polyketide synthase genes of Aspergillus niger
Fecha
2012Registro en:
INTERNATIONAL JOURNAL OF FOOD MICROBIOLOGY, AMSTERDAM, v. 155, n. 3, supl. 1, Part 6, pp. 137-145, APR 16, 2012
0168-1605
10.1016/j.ijfoodmicro.2012.01.020
Autor
Ferracin, Lara Munique
Fier, Carla Beatriz
Vieira, Maria Lucia Carneiro
Monteiro-Vitorello, Claudia Barros
Varani, Alessandro de Mello
Rossi, Maria Magdalena
Mueller-Santos, Marcelo
Taniwaki, Marta Hiromi
Iamanaka, Beatriz Thie
Pelegrinelli Fungaro, Maria Helena
Institución
Resumen
In silico comparison of 34 putative pks genes in Aspergillus niger strain CBS 513.88 versus A. niger strain ATCC 1015 genome revealed significant nucleotide identity (>95% covering a minimum of 99% of the gene sequence) for 31 of these genes (approximately 91%). A. niger CBS 513.88 harbors three putative pks genes (An01g01130, An11g05940, and An15g07920), for which nucleotide identity was not found in A. niger ATCC 1015. To compare the results of the in silico analysis with the in vivo situation, experimental data were obtained for a large number of A. niger strains obtained from different substrates and geographical regions. Three putative Os genes that were found to be variable between the two A. niger strains using bioinformatics tools were in fact strain-specific genes based on experimental data. The PCR amplification signals for the An01g01130, An11g05940, and An15g07920 pks genes were detected in only 97%, 71%, and 26% of the strains, respectively. Southern blot analyses confirmed the PCR data. Because one of the strain-specific pits genes (An15g07920) is located in a putative ochratoxin cluster, we focused our investigation on that region. We assessed the ochratoxin production capability of the 119 A. niger strains and found a positive association between the presence of this pia gene and the capability of the respective strain to produce ochratoxin. (C) 2012 Elsevier B.V. All rights reserved.