Department of Microbial Ecology, Netherlands Institute of Ecology (NIOO-KNAW), Wageningen, The Netherlands; BioDetection Systems b.v., Amsterdam, The Netherlands.
Environ Microbiol. 2014 May;16(5):1334-45. doi: 10.1111/1462-2920.12440. Epub 2014 Mar 27.
The antifungal activity of bacteria from the genus Collimonas has been well documented, but the chemistry and gene functions that underlie this phenotype are still poorly understood. Screening of a random plasposon insertion library of Collimonas fungivorans Ter331 for loss-of-function mutants revealed the importance of gene cluster K, which is annotated to code for the biosynthesis of a secondary metabolite and which features genes for fatty acid desaturases and polyketide synthases. Mutants in gene cluster K had lost the ability to inhibit hyphal growth of the fungus Aspergillus niger and were no longer able to produce and secrete several metabolites that after extraction and partial purification from wildtype strain Ter331 were shown to share a putative ene-triyne moiety. Some but not all of these metabolites were able to inhibit growth of A. niger, indicating functional variation within this group of Collimonas-produced polyyne-like 'collimomycins'. Polymerase chain reaction analysis of isolates representing different Collimonas species indicated that the possession of cluster K genes correlated positively with antifungal ability, further strengthening the notion that this cluster is involved in collimomycin production. We discuss our findings in the context of other bacterially produced polyynes and the potential use of collimomycins for the control of harmful fungi.
丛毛单胞菌属细菌的抗真菌活性已有相关记载,但这一表型背后的化学和基因功能仍知之甚少。对丛毛单胞菌 Ter331 的随机转座子插入文库进行功能丧失突变体筛选,发现了基因簇 K 的重要性,该基因簇被注释为编码次生代谢产物的生物合成,其特征是脂肪酸去饱和酶和聚酮合酶基因。基因簇 K 中的突变体失去了抑制黑曲霉菌丝生长的能力,并且不再能够产生和分泌几种代谢物,这些代谢物从野生型 Ter331 菌株中提取和部分纯化后,被证明具有假定的 ene-三炔部分。这些代谢物中的一些(但不是全部)能够抑制黑曲霉的生长,表明这组丛毛单胞菌产生的聚炔样“collimomycins”存在功能变异。代表不同丛毛单胞菌种的分离物的聚合酶链反应分析表明,簇 K 基因的存在与抗真菌能力呈正相关,进一步证实了该簇参与 collimomycin 产生的观点。我们将研究结果置于其他细菌产生的聚炔的背景下,并讨论了 collimomycins 用于控制有害真菌的潜在用途。