Chitarra Gilma S, Abee Tjakko, Rombouts Frank M, Posthumus Maarten A, Dijksterhuis Jan
Laboratory of Food Microbiology, Wageningen University, 6703 HD Wageningen, The Netherlands.
Appl Environ Microbiol. 2004 May;70(5):2823-9. doi: 10.1128/AEM.70.5.2823-2829.2004.
Penicillium paneum is an important contaminant of cereal grains which is able to grow at low temperature, low pH, high levels of carbon dioxide, and under acid conditions. P. paneum produces mycotoxins, which may be harmful to animals and humans. We found that conidia in dense suspensions showed poor germination, suggesting the presence of a self-inhibitor. A volatile compound(s) produced by these high-density conditions also inhibited mycelial growth of different species of fungi belonging to a variety of genera, suggesting a broad action range. The heat-stable compound was isolated by successive centrifugation of the supernatant obtained from spore suspensions with a density of 10(9) conidia ml(-1). By using static headspace analyses, two major peaks were distinguished, with the highest production of these metabolites after 22 h of incubation at 25 degrees C and shaking at 140 rpm. Gas chromatography coupled with mass spectra analysis revealed the compounds to be 3-octanone and 1-octen-3-ol. Notably, only the latter compound appeared to block the germination process at different developmental stages of the conidia (swelling and germ tube formation). In this study, 1-octen-3-ol influenced different developmental processes during the P. paneum life cycle, including induction of microcycle conidiation and inhibition of spore germination. Therefore, the compound can be considered a fungal hormone during fungal development.
潘尼青霉是谷物的一种重要污染物,它能够在低温、低pH值、高二氧化碳水平以及酸性条件下生长。潘尼青霉会产生霉菌毒素,可能对动物和人类有害。我们发现,密集悬浮液中的分生孢子发芽率很低,这表明存在一种自我抑制剂。这些高密度条件产生的一种挥发性化合物也抑制了多种属的不同真菌物种的菌丝生长,这表明其作用范围广泛。通过对密度为10⁹个分生孢子/毫升的孢子悬浮液获得的上清液进行连续离心,分离出了这种热稳定化合物。通过静态顶空分析,区分出两个主要峰,在25℃下孵育22小时并以140转/分钟振荡后,这些代谢物的产量最高。气相色谱与质谱联用分析表明这些化合物是3-辛酮和1-辛烯-3-醇。值得注意的是,只有后一种化合物似乎在分生孢子的不同发育阶段(肿胀和芽管形成)阻断发芽过程。在这项研究中,1-辛烯-3-醇影响了潘尼青霉生命周期中的不同发育过程,包括诱导微周期分生孢子形成和抑制孢子萌发。因此,该化合物在真菌发育过程中可被视为一种真菌激素。