Moreno Miguel A, Amich Jorge, Vicentefranqueira Rocío, Leal Fernando, Calera José A
Institute of Microbiology-Biochemistry, Department of Microbiology and Genetics, University of Salamanca-CSIC, Salamanca, Spain.
Int Microbiol. 2007 Sep;10(3):187-92.
In Aspergillus fumigatus, the regulation of zinc homeostasis is strongly influenced by environmental pH. Thus, the study of zinc-regulated gene expression in A. fumigatus requires controlling variations in culture pH, as this may affect zinc availability. However, depending on the nitrogen source, the pH of the culture can change dramatically over time. In addition, due to the ubiquitous distribution of zinc and that it is an essential micronutrient required in minute amounts for optimal fungal growth, neither buffering of the culture media to prevent pH variations nor the use of chelating agents is advisable if mycelium is to be used for expression analyses. In this work, the growth of A. fumigatus in several culture media was examined in order to determine the conditions yielding mycelia suitable for gene expression analyses in acid and neutral media, regardless of zinc availability. Our results showed that a zinc-limiting synthetic basal medium could be readily converted into a zinc-replete one and subsequently into acid or neutral medium by using, respectively, ammonium or nitrate as nitrogen source.
在烟曲霉中,锌稳态的调节受到环境pH值的强烈影响。因此,研究烟曲霉中锌调节的基因表达需要控制培养pH值的变化,因为这可能会影响锌的可用性。然而,根据氮源的不同,培养物的pH值会随时间发生显著变化。此外,由于锌分布广泛且是真菌最佳生长所需的微量必需微量元素,如果要使用菌丝体进行表达分析,既不建议对培养基进行缓冲以防止pH值变化,也不建议使用螯合剂。在这项工作中,研究了烟曲霉在几种培养基中的生长情况,以确定在酸性和中性培养基中产生适合基因表达分析的菌丝体的条件,而不考虑锌的可用性。我们的结果表明,通过分别使用铵或硝酸盐作为氮源,锌限制的合成基础培养基可以很容易地转化为锌充足的培养基,随后再转化为酸性或中性培养基。