Volfová O, Zizka Z, Andĕrová M
Laboratory of Physiology of Microorganisms and Biotransformation, Czechoslovak Academy of Sciences, Prague.
Folia Microbiol (Praha). 1992;37(6):413-20. doi: 10.1007/BF02899899.
Concentration of methanol in the medium strongly affected not only the physiology but also the cytology of Candida boidinii strain 2 cells in a methanol-limited chemostat at a constant dilution rate D 0.1/h and at low pH 3.0. The formation of large cubic peroxisomes with high alcohol oxidase (AO) activity observed at low methanol concentration (S0 3 g/L) disappeared on increasing the methanol concentration in the inflow medium. The AO activity in the cells sharply decreased, followed by accumulation of riboflavin phosphate and residual methanol in the medium. The activity of catalase was relatively stable. At methanol concentration S0 > KI (KI equal to 12 g methanol per L), which included a substantial increase in methanol dissimilation, documented by higher formaldehyde and formate dehydrogenase activities and by lower yield coefficient on methanol, the yeast cells contained large lobe-shaped peroxisomes and a smaller number of larger mitochondria. The cells formed pseudomycelium with a thick septum between the mother and daughter cells.
在恒定稀释率D = 0.1/h且pH值为3.0的甲醇限制恒化器中,培养基中甲醇浓度不仅强烈影响博伊丁假丝酵母2菌株细胞的生理学,还影响其细胞学。在低甲醇浓度(S0 = 3 g/L)下观察到的具有高醇氧化酶(AO)活性的大型立方过氧化物酶体,随着流入培养基中甲醇浓度的增加而消失。细胞中的AO活性急剧下降,随后培养基中磷酸核黄素和残余甲醇积累。过氧化氢酶的活性相对稳定。在甲醇浓度S0 > KI(KI等于每升12 g甲醇)时,甲醛和甲酸脱氢酶活性更高以及甲醇产率系数更低证明甲醇异化作用大幅增加,酵母细胞含有大型叶状过氧化物酶体和数量较少但更大的线粒体。细胞形成假菌丝,母细胞和子细胞之间有厚隔膜。