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有机缓冲剂对嗜热链球菌ST110产生细菌素的影响。

Influence of organic buffers on bacteriocin production by Streptococcus thermophilus ST110.

作者信息

Somkuti George A, Gilbreth Stefanie E

机构信息

Agricultural Research Service, US Department of Agriculture, Eastern Regional Research Center, 600 East Mermaid Lane, Wyndmoor, PA 19038, USA.

出版信息

Curr Microbiol. 2007 Aug;55(2):173-7. doi: 10.1007/s00284-007-0179-x. Epub 2007 Jul 11.

Abstract

The effect of the organic buffer salts MES, MOPS, and PIPES on the growth of S. thermophilus ST110, medium pH, and accumulation of the antipediococcal bacteriocin thermophilin 110 were evaluated in whey permeate media over a period of 24 h. In nonbuffered medium, thermophilin 110 production at 37 degrees C paralleled the growth of S. thermophilus ST110 and reached a maximum after 8-10 h. Addition of organic buffer salts decreased the drop in medium pH and resulted in increased biomass (dry cells; microg/mL) and higher yields of thermophilin 110 (units/microg cells). The best results were obtained by the addition of 1% (w/v) MES to the medium, which reduced the pH drop to 1.8 units after 10 h of growth (compared to 2.3 pH units in the control) and resulted in a 1.5-fold increase in cell mass (495 microg/mL) and a 7-fold increase in thermophilin 110 yield (77 units/microg dry cells) over the control. The results showed that whey permeate-based media may be suitable for producing large amounts of thermophilin 110 needed for controlling spoilage pediococci in industrial wine and beer fermentations.

摘要

在24小时内,对有机缓冲盐MES、MOPS和PIPES对嗜热链球菌ST110生长、培养基pH值以及抗片球菌细菌素嗜热菌素110积累的影响在乳清渗透液培养基中进行了评估。在无缓冲的培养基中,37℃下嗜热菌素110的产生与嗜热链球菌ST110的生长平行,并在8 - 10小时后达到最大值。添加有机缓冲盐减少了培养基pH值的下降,并导致生物量增加(干细胞;微克/毫升)以及嗜热菌素110的产量提高(单位/微克细胞)。向培养基中添加1%(w/v)MES可获得最佳结果,其在生长10小时后将pH值下降降低至1.8个单位(对照为2.3个pH单位),并使细胞质量增加1.5倍(495微克/毫升),嗜热菌素110产量比对照提高7倍(77单位/微克干细胞)。结果表明,基于乳清渗透液的培养基可能适合生产工业葡萄酒和啤酒发酵中控制腐败片球菌所需的大量嗜热菌素110。

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