Lynch W H, Franklin M
Arch Microbiol. 1978 Aug 1;118(2):133-40. doi: 10.1007/BF00415721.
Growth of Pseudomonas fluorescens in batch culture with glucose and organic acids resulted in typical diauxic responses at 30 degrees C but no detectable diauxic lag at 5 degrees C. At 30 degrees C, organic acids were preferentially utilized during the first growth phase. Glucose utilization was delayed until onset of the second growth phase. Systems involved in direct uptake and catabolism of glucose responded in a manner compatible with repression by malate and/or its metabolites and induction by glucose and/or its metabolites. The oxidative non-phosphorylated pathway, through gluconate and 2-ketogluconate (2-KG) as intermediates, was not induced during either growth phase. At 5 degrees C, growth with glucose and organic acids was biphasic but without diauxic lag. Organic acids were preferentially utilized during the first growth phase. Although carbon from glucose was not fully catabolized until onset of the second growth phase, glucose was oxidized to and accumulated extracellularly as gluconate and 2-KG during the first growth phase. No significant repression of glucose-catabolizing enzymes was observed during growth with organic acids in the presence of glucose. However, uptake activities for gluconate and 2-KG did not increase significantly until onset of the second growth phase. Thus, at low temperatures, psychotrophic P. fluorescens oxidized glucose to extracellular 2-KG, while growing on preferred carbon sources. The 2-KG was then catabolized after depletion of the organic acid.
荧光假单胞菌在含有葡萄糖和有机酸的分批培养中,于30℃时呈现典型的双相生长响应,但在5℃时未检测到双相生长停滞期。在30℃时,有机酸在第一个生长阶段被优先利用。葡萄糖的利用延迟至第二个生长阶段开始。参与葡萄糖直接摄取和分解代谢的系统的响应方式与被苹果酸和/或其代谢产物抑制以及被葡萄糖和/或其代谢产物诱导相一致。通过葡萄糖酸和2-酮葡萄糖酸(2-KG)作为中间体的氧化非磷酸化途径在任何一个生长阶段均未被诱导。在5℃时,葡萄糖和有机酸的生长是双相的,但没有双相生长停滞期。有机酸在第一个生长阶段被优先利用。尽管来自葡萄糖的碳直到第二个生长阶段开始才被完全分解代谢,但在第一个生长阶段葡萄糖被氧化为葡萄糖酸和2-KG并在细胞外积累。在有葡萄糖存在的情况下,有机酸生长期间未观察到对葡萄糖分解酶的显著抑制。然而,葡萄糖酸和2-KG的摄取活性直到第二个生长阶段开始才显著增加。因此,在低温下,嗜冷荧光假单胞菌在利用优选碳源生长时将葡萄糖氧化为细胞外2-KG。然后在有机酸耗尽后2-KG被分解代谢。