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盘基网柄菌中一种可诱导的、非降解性的植物抗毒素抗性机制被改变膜甾醇组成的突变所抑制。

An inducible, nondegradative phytoalexin resistance mechanism in Dictyostelium discoideum is suppressed by mutations that alter membrane sterol composition.

作者信息

Kasbekar D P, Papavinasasundaram K G

机构信息

Centre for Cellular and Molecular Biology, Hyderabad, India.

出版信息

Appl Environ Microbiol. 1992 Jun;58(6):2071-4. doi: 10.1128/aem.58.6.2071-2074.1992.

Abstract

Pretreatment of Dictyostelium discoideum amoebae with a sublethal concentration of the pea phytoalexin pisatin was shown to induce nondegradative resistance to subsequent challenges with inhibitory concentrations. An alteration of membrane sterol composition either with the azasterol A25822B or by mutations in nysC that confer resistance to the polyene antibiotic nystatin suppressed the induction of pisatin resistance. Wild-type cells grown on pisatin medium acquired resistance to nystatin; however, after transfer to nystatin medium, they lost their pisatin resistance phenotype but remained nystatin resistant. To account for this asymmetry in the induction and maintenance of cross-resistance after growth on pisatin and nystatin media, we propose a model in which the two resistance phenotypes are governed by distinct mechanisms. This model presumes that growth on pisatin induces membrane alterations that predispose cells to acquire nystatin resistance but that the pisatin-induced membrane alterations are not maintained in the absence of pisatin.

摘要

用亚致死浓度的豌豆植物抗毒素豌豆素预处理盘基网柄菌变形虫,结果表明其可诱导对后续抑制浓度挑战的非降解性抗性。用氮杂甾醇A25822B或通过赋予对多烯抗生素制霉菌素抗性的nysC突变来改变膜甾醇组成,可抑制豌豆素抗性的诱导。在豌豆素培养基上生长的野生型细胞获得了对制霉菌素的抗性;然而,转移到制霉菌素培养基后,它们失去了豌豆素抗性表型,但仍对制霉菌素具有抗性。为了解释在豌豆素和制霉菌素培养基上生长后交叉抗性诱导和维持的这种不对称性,我们提出了一个模型,其中两种抗性表型由不同机制控制。该模型假定在豌豆素上生长会诱导膜改变,使细胞易于获得制霉菌素抗性,但在没有豌豆素的情况下,豌豆素诱导的膜改变不会维持。

相似文献

6
Self-induced nystatin resistance in Dictyostelium discoideum.盘基网柄菌中自诱导的制霉菌素抗性
Antimicrob Agents Chemother. 1985 Jun;27(6):974-6. doi: 10.1128/AAC.27.6.974.

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