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鉴定铜绿假单胞菌中参与真菌抑制的遗传基因座。

Identification of a Genetic Locus in Pseudomonas aureofaciens Involved in Fungal Inhibition.

机构信息

Department of Plant and Microbial Sciences, University of Canterbury, Ilam Road, Christchurch 4, New Zealand.

出版信息

Appl Environ Microbiol. 1994 Jan;60(1):71-7. doi: 10.1128/aem.60.1.71-77.1994.

Abstract

In iron-rich conditions, Pseudomonas aureofaciens PA147-2 produces an antibiotic-like compound that inhibits the growth of a plant fungal pathogen, Aphanomyces euteiches. To contribute to the potential use of PA147-2 as a biocontrol organism, we report the identification of a genetic locus important for antibiotic biosynthesis. Mutants defective for fungal inhibition (Af) were generated by Tn5 mutagenesis. Southern hybridization of total DNAs from three Af mutants indicated that loss of fungal inhibition was due to a single Tn5 insertion in each mutant. Restriction mapping of the mutation points showed that in two mutants the Tn5 insertions were in the same 16.0-kb EcoRI fragment and were separated by 2.1 kb. A genomic library of PA147-2 was constructed and screened by using a region of DNA flanking the Tn5 insertion in one mutant (PA109) as a probe to recover complementing cosmids. Three cosmids containing a 16.0-kb EcoRI fragment complementary to the two mutants were recovered. Allele replacement by homologous recombination with putative complementing cosmids restored one mutant to antifungal activity against A. euteiches. Southern analysis of the complemented mutants confirmed that allele replacement had occurred between cosmid DNA and Tn5. The wild-type 16.0-kb EcoRI fragment was cloned from the cosmid and complemented the two mutants to antifungal activity. An antifungal compound was isolated from PA147-2 grown on solid medium. Antifungal activity correlated to a peak on high-pressure liquid chromatography analysis. Under the same growth and extraction conditions, the antifungal activity seen in PA147-2 was absent in two Af mutants. Furthermore, absence of an antifungal compound in each mutant correlated to the absence of the wild-type "antifungal" peak on high-pressure liquid chromatography analysis.

摘要

在富含铁的条件下,铜绿假单胞菌 PA147-2 产生一种类似抗生素的化合物,抑制植物真菌病原体旋孢腔菌的生长。为了促进 PA147-2 作为生物防治剂的潜在用途,我们报告了一个对抗生素生物合成很重要的遗传基因座的鉴定。通过 Tn5 诱变产生了对真菌抑制有缺陷的突变体(Af)。对来自三个 Af 突变体的总 DNA 的 Southern 杂交表明,真菌抑制的丧失是由于每个突变体中 Tn5 的单一插入所致。突变点的限制图谱表明,在两个突变体中,Tn5 插入位于相同的 16.0-kb EcoRI 片段中,相隔 2.1 kb。构建了 PA147-2 的基因组文库,并使用一个突变体(PA109)侧翼的 DNA 区域作为探针筛选文库,以回收互补的 cosmid。回收了三个包含与两个突变体互补的 16.0-kb EcoRI 片段的 cosmids。用同源重组与推定互补 cosmids 替换等位基因,使一个突变体恢复对旋孢腔菌的抗真菌活性。互补突变体的 Southern 分析证实了 cosmid DNA 和 Tn5 之间的等位基因替换。从 cosmid 克隆了野生型 16.0-kb EcoRI 片段,并使两个突变体恢复了抗真菌活性。从固体培养基上生长的 PA147-2 中分离出一种抗真菌化合物。在高效液相色谱分析中,抗真菌活性与一个峰相对应。在相同的生长和提取条件下,在两个 Af 突变体中不存在抗真菌活性。此外,在每个突变体中缺乏抗真菌化合物与高效液相色谱分析中缺乏野生型“抗真菌”峰相对应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26d6/201271/7c23220e32e6/aem00018-0095-a.jpg

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