DeCicco B T, Stukus P E
J Bacteriol. 1968 Apr;95(4):1469-75. doi: 10.1128/jb.95.4.1469-1475.1968.
Auxotrophic mutants of Hydrogenomonas eutropha and H. facilis requiring utilizable amino acids were employed to demonstrate the simultaneous utilization of H(2) and an organic substrate for growth. The ratio of the cell yields under dual substrate conditions compared to heterotrophic conditions indicated the relative contributions of the autotrophic and heterotrophic systems to the growth of the organism. Wildtype H. eutropha grown under simultaneous conditions exhibited a dicyclic growth pattern, the first cycle representing either heterotrophic or simultaneous growth and the second cycle representing autotrophic growth. The duration of the changeover period was either very short with no plateau or long with a plateau up to 8 hr, depending upon the organic substrate. The growth rate under simultaneous conditions with some organic substrates was faster than either the autotrophic or heterotrophic rate, but was not the sum of the two rates. The data suggest that, in the presence of both organic and inorganic substrates, heterotrophic metabolism functions normally but autotrophic metabolism is partially repressed.
利用需要可利用氨基酸的真养氢单胞菌和易变氢单胞菌的营养缺陷型突变体来证明氢气和有机底物可同时用于生长。与异养条件相比,双底物条件下的细胞产量比表明了自养和异养系统对生物体生长的相对贡献。在同时存在两种底物的条件下生长的野生型真养氢单胞菌呈现出双循环生长模式,第一个循环代表异养生长或同时生长,第二个循环代表自养生长。转换期的持续时间要么非常短且无平稳期,要么很长且有长达8小时的平稳期,这取决于有机底物。在同时存在某些有机底物的条件下的生长速率比自养或异养速率都要快,但不是两者速率之和。数据表明,在有机和无机底物都存在的情况下,异养代谢正常发挥作用,但自养代谢受到部分抑制。