Biotechnology Department, Laboratory of Biopolymers, Universidad Autónoma Metropolitana, Av. San Rafael Atlixco, No. 186, 09340 Mexico City, Mexico.
Bioprocess Biosyst Eng. 2013 May;36(5):531-9. doi: 10.1007/s00449-012-0808-z. Epub 2012 Aug 28.
Lecanicillium lecanii, Verticillium chlamydosporium, V. fungicola var flavidum and Beauveria bassiana were evaluated on their growth with pure n-hexane, toluene and n-hexane:toluene 17:83 (v:v) mixture. Another set of treatments were conducted with colloidal chitin as additional carbon source. All the strains of Lecanicillium were able to grow using hydrocarbons with or without the addition of chitin, although the presence of hydrocarbons showed significant inhibition evidenced by measured biomass, radial growth and microscopic analyses. Degradation of n-hexane ranged within 43 and 62 % and it was higher than that with toluene. The strains L460, L157 and L2149, which presented the highest growth, were further selected for determinations of hydrocarbon consumptions in microcosms. Strain L157 showed the highest consumption of n-hexane (55.6 %) and toluene (52.9 %) as sole carbon source and it also displayed activities of endochitinases, N-acetylhexosaminidase and production of hydrophobins class I and II.
淡紫拟青霉、枝顶孢霉、黄萎轮枝孢菌和球孢白僵菌被评估了其在纯正己烷、甲苯和正己烷:甲苯 17:83(v:v)混合物中的生长情况。另一组处理是在添加胶体几丁质作为额外碳源的情况下进行的。所有淡紫拟青霉菌株都能够在有或没有几丁质的情况下使用碳氢化合物生长,尽管烃类的存在通过测量生物量、径向生长和显微镜分析表明存在显著的抑制作用。正己烷的降解范围在 43%至 62%之间,高于甲苯。生长最好的 L460、L157 和 L2149 菌株进一步被选择用于在微宇宙中测定碳氢化合物的消耗。L157 菌株作为唯一碳源显示出最高的正己烷(55.6%)和甲苯(52.9%)消耗,并且还表现出内切几丁质酶、N-乙酰氨基葡萄糖苷酶的活性以及 I 类和 II 类亲脂素的产生。