López-Calleja A C, Cuadra T, Barrios-González J, Fierro F, Fernández F J
Departamento de Biotecnología, Universidad Autónoma Metropolitana-Iztapalapa, México, D.F., Mexico.
J Mol Microbiol Biotechnol. 2012;22(2):126-34. doi: 10.1159/000338987. Epub 2012 Jun 7.
Despite the importance of Acremonium chrysogenum as the only cephalosporin C (CPC) producer, there is still a limited understanding about the molecular mechanisms regulating antibiotic biosynthesis in this fungus. Based on the previously described relationship between environmental pH and antibiotic production in numerous filamentous fungi, we studied the expression of genes related to CPC production in A. chrysogenum. We report for the first time similarities and differences, characterizing CPC production by A. chrysogenum under a variable pH environment, in submerged and solid-state fermentation. This characterization is supported by measurements of parameters, like CPC production, pH, growth, and expression levels of several genes involved, directly or indirectly, in CPC production. Interesting differences in intermediate (Pen N) and certain biosynthetic gene expression levels were observed. Our results point out some relationships between physiological features and gene expression that open important improvement perspectives for both culture systems.
尽管产黄顶孢霉作为唯一的头孢菌素C(CPC)生产者具有重要意义,但人们对该真菌中调节抗生素生物合成的分子机制仍知之甚少。基于此前描述的众多丝状真菌中环境pH与抗生素生产之间的关系,我们研究了产黄顶孢霉中与CPC生产相关基因的表达。我们首次报告了在可变pH环境下,产黄顶孢霉在深层发酵和固态发酵中生产CPC的异同。这种特征通过对CPC产量、pH、生长以及直接或间接参与CPC生产的几个基因的表达水平等参数的测量得到了支持。观察到中间产物(青霉素N)和某些生物合成基因表达水平存在有趣的差异。我们的结果指出了生理特征与基因表达之间的一些关系,为两种培养系统都开辟了重要的改进前景。