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[通过与各种培养基适当组合提高土壤细菌的可培养性]

[Improved culturability of soil bacteria using proper combination with various culturing medium].

作者信息

Hu Yuan-Sen, Li Cui-Xiang, Sun Fu-Lin, Wu Kun, Jia Xin-Cheng

机构信息

College of bioengineering, Henan University of Technology, Zhengzhou 450052, China.

出版信息

Wei Sheng Wu Xue Bao. 2007 Oct;47(5):882-7.

Abstract

To isolate more unique and previously unrecognized bacteria in soil samples, the culture difference under three incubation modes was investigated by using trophic, low-nutrient broth and soil extract as growth medium. Plate count proved that the oligotrophic medium resulted in a slow growth and consecutive colony formation over the course of incubation. On the 5th day, the most number of colony-forming unit was found on trophic LB and low-nutrient R2A, which was approximate 5 times as many as that isolated on 0.1 x LB. Of the 7 media, LB broth harvested the maximum bacterial communities, and novel species could be isolated as the nutrient was diluted to appropriate extent. The DGGE patterns of oligotrophic and rich nutrient culture collection displayed low similarity, however, the bands at various lanes exhibited complementary effect. When cultivated with static flask, LB and R2A media obtained more bacterial species, which concluded most species isolated by the other five media. Under the test tube incubation mode, the most species was also found in LB medium except some appeared only on R2A and TSB. Apparent bacterial communities difference could be detected between R2A, LB and TSB media. The experiment data may contribute much to the special medium design as well as improvement of bacterial culturability by using proper medium.

摘要

为了从土壤样本中分离出更多独特且先前未被识别的细菌,使用营养肉汤、低营养肉汤和土壤提取物作为生长培养基,研究了三种培养模式下的培养差异。平板计数证明,在培养过程中,贫营养培养基导致生长缓慢且菌落连续形成。在第5天,在营养肉汤LB和低营养R2A上发现的菌落形成单位数量最多,约为在0.1xLB上分离数量的5倍。在这7种培养基中,LB肉汤收获的细菌群落最多,当营养物质稀释到适当程度时,可以分离出新的物种。贫营养和富营养培养物收集的DGGE图谱显示相似性较低,然而,不同泳道的条带表现出互补效应。当在摇瓶中培养时,LB和R2A培养基获得的细菌种类更多,这些种类包含了其他五种培养基分离出的大多数种类。在试管培养模式下,除了一些仅出现在R2A和TSB上的种类外,在LB培养基中也发现了最多的种类。在R2A、LB和TSB培养基之间可以检测到明显的细菌群落差异。实验数据可能有助于特殊培养基的设计以及通过使用合适的培养基提高细菌的可培养性。

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