Franz A, Burgstaller W, Müller B, Schinner F
Institute for Water Quality and Waste Management, Technical University of Vienna, Wien, Austria.
J Gen Microbiol. 1993 Sep;139(9):2101-7. doi: 10.1099/00221287-139-9-2101.
Penicillium simplicissimum excreted more than 100 mmol citric acid l-1 [2.9 mmol (g dry wt)-1; 9 d] if an industrial filter dust (> 50% ZnO) providing a high extracellular buffering capacity was present in the medium. A similar specific [2 mmol (g dry wt)-1], but lower absolute (26 mmol l-1), citric acid excretion occurred in the absence of an extracellular buffer and if amino acids or urea were used as nitrogen source. P. simplicissimum excreted no citric acid under conditions where Aspergillus niger produces citric acid (deficiency of trace elements, low pH and reduced biomass formation). Citric acid excretion by P. simplicissimum always paralleled biomass formation and occurred in a pH range between 4 and 7. This indicated that different imbalances of metabolism were responsible for citric acid excretion in A. niger and P. simplicissimum. However, provided a high extracellular buffering capacity was present, the response of the Penicillium system to different carbon and nitrogen sources was similar to the Aspergillus system. In contrast, the metals iron and copper had virtually no effect on citric acid excretion compared with A. niger. Estimation of intracellular citric acid, as well as the effects of the uncoupler 2,4-dinitrophenol, and the H(+)-ATPase inhibitor sodium orthovanadate, led to the conclusion that the buffer-stimulated citric acid efflux was dependent on metabolic energy and an energized plasma membrane, respectively. Despite similarities to the Aspergillus system, a different mechanism for buffer-stimulated citric acid excretion by P. simplicissimum seems probable.
如果培养基中存在具有高细胞外缓冲能力的工业过滤粉尘(氧化锌含量>50%),简单青霉可分泌超过100 mmol/L的柠檬酸[2.9 mmol/(g干重);9天]。在没有细胞外缓冲剂且使用氨基酸或尿素作为氮源的情况下,柠檬酸分泌量相似[2 mmol/(g干重)],但绝对量较低(26 mmol/L)。在黑曲霉产生柠檬酸的条件下(微量元素缺乏、低pH值和生物量形成减少),简单青霉不分泌柠檬酸。简单青霉的柠檬酸分泌总是与生物量形成平行,且发生在pH值为4至7的范围内。这表明黑曲霉和简单青霉中柠檬酸分泌的代谢失衡情况不同。然而,如果存在高细胞外缓冲能力,青霉系统对不同碳源和氮源的反应与曲霉系统相似。相比之下,与黑曲霉相比,铁和铜这两种金属对柠檬酸分泌几乎没有影响。对细胞内柠檬酸的估计,以及解偶联剂2,4-二硝基苯酚和H(+)-ATP酶抑制剂原钒酸钠的作用,得出的结论是,缓冲剂刺激的柠檬酸外流分别依赖于代谢能量和具有能量的质膜。尽管与曲霉系统有相似之处,但简单青霉通过缓冲剂刺激分泌柠檬酸的机制可能不同。