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弧菌属 DSM 14379 色素生产——环境中的竞争优势?

Vibrio sp. DSM 14379 pigment production--a competitive advantage in the environment?

机构信息

Department of Food Science and Technology, Biotechnical Faculty, University of Ljubljana, Večna pot 111, 1000 Ljubljana, Slovenia.

出版信息

Microb Ecol. 2010 Oct;60(3):592-8. doi: 10.1007/s00248-010-9671-0. Epub 2010 Apr 20.

Abstract

The ability to produce several antibacterial agents greatly increases the chance of producer's survival. In this study, red-pigmented Vibrio sp. DSM 14379 and Bacillus sp., both isolated from the same sampling volume from estuarine waters of the Northern Adriatic Sea, were grown in a co-culture. The antibacterial activity of the red pigment extract was tested on Bacillus sp. in microtiter plates. The MIC(50) for Bacillus sp. was estimated to be around 10⁻⁵ mg/L. The extract prepared form the nonpigmented mutant of Vibrio sp. had no antibacterial effect. The pigment production of Vibrio sp. was studied under different physicochemical conditions. There was no pigment production at high or low temperatures, high or low salt concentrations in peptone yeast extract (PYE) medium, low glucose concentration in mineral growth medium or high glucose concentration in PYE medium. This indicates that the red pigment production is a luxurious good that Vibrio sp. makes only under favorable conditions. The Malthusian fitness of Bacillus sp. in a co-culture with Vibrio sp. under optimal environmental conditions dropped from 4.0 to -7.6, which corresponds to three orders of magnitude decrease in the number of CFU relative to the monoculture. The nonpigmented mutant of Vibrio sp. in a co-culture with Bacillus sp. had a significant antibacterial activity. This result shows that studying antibacterial properties in isolation (i.e. pigment extract only) may not reveal full antibacterial potential of the bacterial strain. The red pigment is a redundant antibacterial agent of Vibrio sp.

摘要

能够产生多种抗菌剂极大地增加了产生者生存的机会。在这项研究中,从亚得里亚海北部河口水域的相同采样体积中分离出的红色着色弧菌 DSM 14379 和芽孢杆菌被混合培养。红色色素提取物的抗菌活性在微孔板上测试了芽孢杆菌。芽孢杆菌的 MIC(50)估计约为 10⁻⁵ mg/L。从非色素突变体弧菌制备的提取物没有抗菌作用。研究了不同理化条件下弧菌的色素产生情况。在高温或低温、蛋白胨酵母提取物(PYE)培养基中高或低盐浓度、矿物生长培养基中低葡萄糖浓度或 PYE 培养基中高葡萄糖浓度下,均未产生色素。这表明红色素的产生是弧菌在有利条件下产生的一种奢侈物质。在最优环境条件下,芽孢杆菌与弧菌共培养时的马尔萨斯适合度从 4.0 降至-7.6,这对应于 CFU 数量相对于单培养减少了三个数量级。与芽孢杆菌共培养的非色素突变体弧菌具有显著的抗菌活性。这一结果表明,在分离状态下(即仅色素提取物)研究抗菌特性可能无法揭示细菌菌株的全部抗菌潜力。红色素是弧菌的一种冗余抗菌剂。

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