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Multiple competitive PCR-DGGE as a tool for quantifying and profiling defined mixed cultures of lactic acid bacteria during production of probiotics from complex polysaccharides

机译:多重竞争PCR-DGGE作为定量和分析复杂多糖中益生菌过程中乳酸菌混合培养物的工具

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摘要

Aims: To apply a denaturing gradient gel electrophoretic (DGGE) method to quantify and profile individual strains during a mixed culture fermentation. Methods and Results: DNA was extracted during the culture of lactic acid bacteria (LAB) and amplified in a multiple competitive PCR (cPCR) using general primers targeting 16S rDNA and DNA from Streptococcus salivarius as competitive DNA. Subsequently the 200-kb amplified fragments were separated by DGGE. The method was validated in pure cultures and used to profile a mixture of three LAB grown on glucose, soluble starch and glycogen from mussel processing waste. The inclusion of a starch-and glycogen-degrading strain (Lactobacillus plantarum) and a weakly amylotic nisin-resistant strain (Lact. paracasei) allowed proliferation of the nisin producing Lactococcus lactis which in itself is unable to grow on complex carbohydrates. cPCR-DGGE permitted the monitoring of a different strain succession on the different carbohydrates, related to amylolytic activity and substrate consumption, acid production and nisin production. Conclusions: cPCR-DGGE is a useful tool for profiling defined mixed cultures of bacteria and hence allows their interaction to be studied. Significance and Impact of the Study: Provided validation of the method for each specific case, it may be appropriate to monitor and control the reproducibility of any defined mixed culture of bacteria, with the advantage that an increase in the strain numbers to be monitored does not yield an increase in the labour of the procedure.
机译:目的:应用变性梯度凝胶电泳(DGGE)方法对混合培养发酵过程中的单个菌株进行定量和分析。方法与结果:在乳酸菌(LAB)培养过程中提取DNA,并使用针对16S rDNA和唾液链球菌DNA的通用引物作为竞争DNA,在多重竞争PCR(cPCR)中进行扩增。随后,通过DGGE分离200kb的扩增片段。该方法在纯培养物中得到验证,用于分析贻贝加工废料中葡萄糖,可溶性淀粉和糖原上生长的三种乳酸菌的混合物。包含降解淀粉和糖原的菌株(植物乳杆菌)和弱淀粉样的乳链菌肽抗性菌株(副干酪乳杆菌)使乳链菌肽产生的乳酸乳球菌增殖,而乳球菌本身不能在复杂的碳水化合物上生长。 cPCR-DGGE允许监测与淀粉分解活性和底物消耗,产酸和乳酸链球菌素有关的不同碳水化合物上的不同菌株序列。结论:cPCR-DGGE是分析细菌混合培养物的有用工具,因此可以研究它们的相互作用。研究的意义和影响:提供了针对每种特定情况的方法验证,可能适合监视和控制任何已定义的细菌混合培养物的重现性,其优点是不会增加要监测的菌株数量增加了该过程的劳动量。

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