Hagedorn C, Gould W D, Bardinelli T R, Gustavson D R
Department of Agronomy, Virginia Polytechnic Institute & State University, Blacksburg.
Appl Environ Microbiol. 1987 Sep;53(9):2265-8. doi: 10.1128/aem.53.9.2265-2268.1987.
TB-T medium provides a high degree of selectivity for and detection of Pseudomonas cepacia biotypes upon initial plating from soil. TB-T medium consists of a basal medium with glucose as the sole carbon source and asparagine as the sole nitrogen source. The selectivity of TB-T medium is based on the combination of trypan blue (TB) and tetracycline (T) (pH 5.5). On TB-T medium, 216 of 300 isolates (72%) from five different soil types were identified as P. cepacia. The remaining 28% were facultative organisms that could be separated readily from P. cepacia by anaerobic glucose fermentation and by their inability to grow at 41 degrees C. Molds were controlled on low soil dilutions by adding crystal violet, nystatin, or both. Elimination of either ingredient or elevation of the pH to 7.5 resulted in a pronounced loss of selectivity. The efficiency of recovery varied considerably among P. cepacia strains but was high enough for some strains (76 to 86%) to permit quantitative studies. TB-T medium combines a defined formulation with high selectivity and allows recovery of P. cepacia biotypes from low soil dilutions (10(1) to 10(3)).
TB - T培养基在从土壤初次接种时,对洋葱伯克霍尔德菌生物型具有高度的选择性和检测能力。TB - T培养基由以葡萄糖为唯一碳源、天冬酰胺为唯一氮源的基础培养基组成。TB - T培养基的选择性基于台盼蓝(TB)和四环素(T)(pH 5.5)的组合。在TB - T培养基上,从五种不同土壤类型分离出的300个菌株中有216个(72%)被鉴定为洋葱伯克霍尔德菌。其余28%是兼性微生物,可通过厌氧葡萄糖发酵以及它们在41摄氏度下无法生长的特性与洋葱伯克霍尔德菌轻易分离。通过添加结晶紫、制霉菌素或两者来控制低土壤稀释度下的霉菌。去除任何一种成分或将pH值提高到7.5都会导致选择性显著丧失。不同洋葱伯克霍尔德菌菌株的回收效率差异很大,但对一些菌株而言足够高(76%至86%),可用于定量研究。TB - T培养基将明确的配方与高选择性相结合,并允许从低土壤稀释度(10¹至10³)中回收洋葱伯克霍尔德菌生物型。