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溶菌酶作用诱导肠球菌L型菌的形成。

Induction of enterococcal L-forms by the action of lysozyme.

作者信息

King J R, Gooder H

出版信息

J Bacteriol. 1970 Sep;103(3):686-91. doi: 10.1128/jb.103.3.686-691.1970.

Abstract

Suspensions of enterococci were treated with lysozyme in the presence of osmotic stabilizers. The resulting osmotically fragile bodies prepared from Streptococcus faecium strain F24 and S. faecalis strain E1 gave rise to L-forms under optimal osmotic and nutritional conditions for treatment and subsequent growth. The most critical component of the growth medium, to obtain maximum yields, was the nature and concentration of the added salt. The two most effective salts were sodium chloride and ammonium chloride in the range of 2 to 3% (w/v) added to a suitable agar base. Ammonium chloride was more versatile, because it could be used with either sucrose or polyethylene glycol 4000 as the osmotic stabilizer for preparation and dilution of the osmotically fragile bodies. Sodium chloride would not consistently support growth of S. faecium F24 as L-forms when polyethylene glycol 4000 was used as the osmotic stabilizer during lysozyme treatment. Time-course studies of concurrent cell wall removal and L-form induction suggested that maximal induction required only cell wall damage rather than complete wall removal. This method for induction of L-forms from a suspension of enterococci is a significant improvement over other presently known methods.

摘要

在渗透稳定剂存在的情况下,用溶菌酶处理肠球菌悬液。由粪肠球菌F24菌株和粪链球菌E1菌株制备的具有渗透脆性的菌体,在处理和后续生长的最佳渗透和营养条件下可形成L型菌。为获得最大产量,生长培养基中最关键的成分是添加盐的性质和浓度。两种最有效的盐是氯化钠和氯化铵,添加到合适的琼脂培养基中的浓度范围为2%至3%(w/v)。氯化铵的适用性更强,因为它既可以与蔗糖一起使用,也可以与聚乙二醇4000一起作为渗透稳定剂用于制备和稀释具有渗透脆性的菌体。当在溶菌酶处理过程中使用聚乙二醇4000作为渗透稳定剂时,氯化钠不能始终如一地支持粪肠球菌F24以L型菌的形式生长。对细胞壁去除和L型菌诱导同时进行的时间进程研究表明,最大诱导仅需要细胞壁损伤,而不是完全去除细胞壁。这种从肠球菌悬液中诱导L型菌的方法比目前已知的其他方法有显著改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2283/248144/4ca1b42dbecb/jbacter00380-0181-a.jpg

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