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分枝杆菌素与新金色分枝杆菌和母牛分枝杆菌之间的铁竞争

Mycobactin and the competition for iron between Mycobacterium neoaurum and M. vaccae.

作者信息

Hall R M, Ratledge C

出版信息

J Gen Microbiol. 1986 Mar;132(3):839-43. doi: 10.1099/00221287-132-3-839.

Abstract

Two closely related species of mycobacteria, Mycobacterium vaccae and M. neoaurum, were grown under conditions of iron-deficiency (0.02-0.05 microgram Fe ml-1) and iron-sufficiency (2-4 micrograms Fe ml-1) in a simple glycerol/asparagine medium. The strain of M. vaccae used was a nonmycobactin producer whereas M. neoaurum synthesized between 6-8% of its cell biomass as the lipid-soluble siderophore when grown under iron-limitation. The role of mycobactin for iron-acquisition was examined using both pure and mixed cultures, with cell viability determined following growth at various iron concentrations. M. neoaurum, the mycobactin producer, outgrew M. vaccae when iron was readily available. When grown under conditions where iron was limiting, M. neoaurum showed a decline in viable cell number compared with its competitor, highlighting its increased requirement for the metal. Some recovery was observed following mycobactin biosynthesis, this being greatly enhanced by the addition of an iron supplement to the growing cells. Mycobactin biosynthesis allowed M. neoaurum to rapidly acquire any additional iron presented to the bacteria when growing under iron-limitation. However, M. vaccae did not synthesize the lipid-soluble siderophore with its iron-requirement satisfied by production of extracellular exochelin.

摘要

两种密切相关的分枝杆菌,母牛分枝杆菌(Mycobacterium vaccae)和新金色分枝杆菌(M. neoaurum),在简单的甘油/天冬酰胺培养基中,于缺铁(0.02 - 0.05微克铁/毫升)和铁充足(2 - 4微克铁/毫升)条件下培养。所用的母牛分枝杆菌菌株不产生分枝杆菌素,而新金色分枝杆菌在铁限制条件下生长时,其细胞生物量的6 - 8%合成了脂溶性铁载体。使用纯培养物和混合培养物研究了分枝杆菌素在获取铁方面的作用,并在不同铁浓度下生长后测定细胞活力。当铁易于获取时,产生分枝杆菌素的新金色分枝杆菌的生长超过了母牛分枝杆菌。在铁限制条件下生长时,与竞争者相比,新金色分枝杆菌的活细胞数量减少,突出了其对这种金属的需求增加。在分枝杆菌素生物合成后观察到一些恢复,向生长中的细胞添加铁补充剂可大大增强这种恢复。分枝杆菌素生物合成使新金色分枝杆菌在铁限制条件下生长时能够迅速获取提供给细菌的任何额外铁。然而,母牛分枝杆菌不合成脂溶性铁载体,其铁需求通过细胞外外螯合素的产生来满足。

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