Department of Microbiology, Macdonald College of McGill University, 21,111 Lakeshore Road, Ste Anne de Bellevue, Quebec H9X 1C0, Canada.
Appl Environ Microbiol. 1989 Jul;55(7):1754-60. doi: 10.1128/aem.55.7.1754-1760.1989.
Growth of the marine bacterium Deleya aesta in a succinate minimal medium showed increasingly long lag phases as Na was decreased below the optimum (200 to 500 mM). The minimum Na concentration permitting growth consistently was 15 mM. Supplementation of the medium with KHCO(3) (as a source of CO(2)) or yeast extract, especially in combination, reduced the lag phase, increased the rate of exponential growth, and allowed growth at 8 mM Na. KHCO(3) did not reduce the lag period but did increase the rate of exponential growth of Deleya venusta, Deleya pacifica, and Alteromonas haloplanktis 214. Yeast extract was active for all three. The effect of yeast extract on D. aesta could be reproduced by a mixture of amino acids approximating its amino acid composition. l-Alanine, l-aspartate, and l-methionine, in combination, were the most effective in reducing the lag phase, although not as effective as the complete mixture. Succinate, l-aspartate, and l-alanine were transported into the cells by largely independent pathways and oxidized at rates which were much lower at 10 than at 200 mM Na. l-Methionine was transported at a low rate in the absence of Na and at a higher rate at 10 mM but was not oxidized. Above 25 mM Na, the rate of transport of the carbon source was not the rate-limiting step for growth. It is concluded that a combination of transportable carbon sources reduced the lag period and increased the rate of exponential growth because they can be taken up independently and at low Na utilized simultaneously.
海洋细菌 Deleya aesta 在琥珀酸盐最小培养基中的生长表现出,随着 Na 浓度降低到最佳浓度(200-500mM)以下,越来越长的延迟期。允许持续生长的最低 Na 浓度始终为 15mM。向培养基中添加 KHCO₃(作为 CO₂的来源)或酵母提取物,特别是两者结合使用,可缩短延迟期,增加指数生长期,并允许在 8mM Na 条件下生长。KHCO₃ 虽然不会缩短延迟期,但确实可以提高 Deleya venusta、Deleya pacifica 和 Alteromonas haloplanktis 214 的指数生长期。酵母提取物对这三种细菌均有活性。酵母提取物对 D. aesta 的影响可以通过近似其氨基酸组成的氨基酸混合物来重现。尽管不如完整混合物有效,但 l-丙氨酸、l-天冬氨酸和 l-蛋氨酸的组合在缩短延迟期方面最为有效。琥珀酸盐、l-天冬氨酸和 l-丙氨酸通过很大程度上独立的途径进入细胞,并以比在 200mM Na 低得多的速率被氧化。l-蛋氨酸在没有 Na 的情况下以低速率运输,在 10mM 时以更高的速率运输,但不被氧化。在 25mM Na 以上,碳源的运输速率不是生长的限速步骤。因此,可以得出结论,可运输碳源的组合缩短了延迟期并提高了指数生长期,因为它们可以独立地被吸收,并且在低 Na 浓度下同时被利用。