Department of Civil and Environmental Engineering, Engineering School, Universidad de las Americas Puebla, Puebla, Mexico.
Department of Chemistry and Food Engineering, Engineering School, Universidad de las Americas Puebla, Puebla, Mexico.
Microbiologyopen. 2022 Oct;11(5):e1326. doi: 10.1002/mbo3.1326.
Five yeast fungi strains (i.e., two Cryptococcus albidus, one Candida guillermondii, and two Candida tropicalis) were isolated from sugarcane and tested for their use of lignin as sole carbon source and their potential to grow in the presence of phenol and phenol derivatives (i.e., pentachlorophenol and p-nitrophenol). The full set of isolated yeasts showed ligninolytic activity, achieving at least 36% lignin degradation after 25 days. The C. albidus JS-B1 strain had the highest ligninolytic activity, achieving 27% lignin degradation within 4 days. This increased activity was associated with the production of ligninolytic laccase enzymes. All the tested yeast fungi strains showed growth in the presence of high concentrations of phenolic compounds (i.e., 900 mg/L phenol, 200 mg/L p-nitrophenol, 50 mg/L pentachlorophenol) and showed significant potential for lignin and lignin by-product degradation. Each of these five strains has the potential to be used in biological treatment processes for contaminated effluents from paper pulping and bleaching or phenol and phenol-derivative biodegradation processes for other industrial wastewater effluents.
从甘蔗中分离出五种酵母真菌菌株(即两株白色念珠菌、一株季也蒙假丝酵母和两株热带假丝酵母),并测试它们对木质素作为唯一碳源的利用情况,以及在存在酚类和酚类衍生物(即五氯苯酚和对硝基苯酚)的情况下生长的潜力。整套分离出的酵母都显示出木质素降解活性,在 25 天后至少达到 36%的木质素降解。C. albidus JS-B1 菌株具有最高的木质素降解活性,在 4 天内实现了 27%的木质素降解。这种活性的增加与木质素降解漆酶的产生有关。所有测试的酵母真菌菌株都能在高浓度酚类化合物(即 900mg/L 苯酚、200mg/L 对硝基苯酚、50mg/L 五氯苯酚)存在的情况下生长,并具有显著的木质素和木质素副产物降解潜力。这五种菌株中的每一种都有可能用于处理纸浆造纸和漂白过程中受污染的废水,或用于处理其他工业废水的酚类和酚类衍生物生物降解过程。