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海鞘假交替单胞菌对真菌定殖的抑制作用在表面定殖过程中提供了竞争优势。

Inhibition of fungal colonization by Pseudoalteromonas tunicata provides a competitive advantage during surface colonization.

作者信息

Franks A, Egan S, Holmström C, James S, Lappin-Scott H, Kjelleberg S

机构信息

School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney 2052, New South Wales, Australia.

出版信息

Appl Environ Microbiol. 2006 Sep;72(9):6079-87. doi: 10.1128/AEM.00559-06.

Abstract

The marine epiphytic bacterium Pseudoalteromonas tunicata produces a range of extracellular secondary metabolites that inhibit an array of common fouling organisms, including fungi. In this study, we test the hypothesis that the ability to inhibit fungi provides P. tunicata with an advantage during colonization of a surface. Studies on a transposon-generated antifungal-deficient mutant of P. tunicata, FM3, indicated that a long-chain fatty acid-coenzyme A ligase is involved in the production of a broad-range antifungal compound by P. tunicata. Flow cell experiments demonstrated that production of an antifungal compound provided P. tunicata with a competitive advantage against a marine yeast isolate during surface colonization. This compound enabled P. tunicata to disrupt an already established fungal biofilm by decreasing the number of yeast cells attached to the surface by 66% +/- 9%. For in vivo experiments, the wild-type and FM3 strains of P. tunicata were used to inoculate the surface of the green alga Ulva australis. Double-gradient denaturing gradient gel electrophoresis analysis revealed that after 48 h, the wild-type P. tunicata had outcompeted the surface-associated fungal community, whereas the antifungal-deficient mutant had no effect on the fungal community. Our data suggest that P. tunicata is an effective competitor against fungal surface communities in the marine environment.

摘要

海洋附生细菌海鞘假交替单胞菌产生一系列细胞外次生代谢产物,可抑制包括真菌在内的多种常见污损生物。在本研究中,我们检验了以下假设:抑制真菌的能力使海鞘假交替单胞菌在表面定殖过程中具有优势。对海鞘假交替单胞菌的转座子产生的抗真菌缺陷突变体FM3的研究表明,一种长链脂肪酸辅酶A连接酶参与了海鞘假交替单胞菌产生广谱抗真菌化合物的过程。流动细胞实验表明,抗真菌化合物的产生使海鞘假交替单胞菌在表面定殖过程中相对于一种海洋酵母分离株具有竞争优势。这种化合物使海鞘假交替单胞菌能够破坏已形成的真菌生物膜,使附着在表面的酵母细胞数量减少66%±9%。在体内实验中,使用海鞘假交替单胞菌的野生型和FM3菌株接种绿藻澳大利亚石莼的表面。双梯度变性梯度凝胶电泳分析显示,48小时后,野生型海鞘假交替单胞菌在与表面相关的真菌群落竞争中胜出,而抗真菌缺陷突变体对真菌群落没有影响。我们的数据表明,海鞘假交替单胞菌是海洋环境中对抗真菌表面群落的有效竞争者。

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