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洞穴分离株ICC1和ICC4的全基因组测序与代谢组学研究。

Whole Genome Sequencing and Metabolomic Study of Cave Isolates ICC1 and ICC4.

作者信息

Gosse Jessica Thandara, Ghosh Soumya, Sproule Amanda, Overy David, Cheeptham Naowarat, Boddy Christopher N

机构信息

Department of Chemistry and Biomolecular Sciences, University of Ottawa, Ottawa, ON, Canada.

Department of Biological Sciences, Faculty of Science, Thompson Rivers University, Kamloops, BC, Canada.

出版信息

Front Microbiol. 2019 May 10;10:1020. doi: 10.3389/fmicb.2019.01020. eCollection 2019.

Abstract

The terrestrial subsurface microbiome has gained considerable amount of interests in the recent years because of its rich potential resource for biomining novel genes coding for metabolites possessing antimicrobial activities. In our previous study, we identified two isolates, designated as ICC1 and ICC4, from the Iron Curtain Cave, Chilliwack, Canada that exhibited antagonistic activities against the multidrug resistant strains of . In this study, the genomes of these two isolates were sequenced by Illumina MiSeq, assembled and annotated. The genes associated with secondary metabolite production were identified and annotated using the bioinformatics platforms antiSMASH and BAGEL. ICC1 and ICC4 were then cultivated and ICC1 metabolome characterized by UHPLC-ESI-HRMS. The Global Natural Products Social Molecular Networking was used to identify metabolites based on the MS/MS spectral data. ICC1 and ICC4 showed a high level of sequence identity with the terrestrial bacteria ; however, they possess a greater secondary metabolite potential as estimated by the total number of identified biosynthetic gene clusters (BGCs). In particular, ICC1 and ICC4 had a greater number of polyketide and non-ribosomal peptide BGCs. The most frequently detected BGCs were those predicted to generate terpenes, small and low complexity dipeptides and lipids. Spectral analysis clearly identified a number of diketopiperazine products through matched reference spectra for cyclo (Leu-Pro), cyclo (Pro-Val) and cyclo [(4-hydroxyPro)-Leu]. One of the terpenes gene clusters predicted by antiSMASH possesses a seven-gene pathway consistent with diazepinomicin biosynthesis. This molecule contains a very rare core structure and its BGC, to date, has only been identified from a single bacterial genome. The tetrapeptide siderophore coelichelin BGC was unambiguously identified in the genome, however, the metabolite could not be identified from the culture extracts. Two type III polyketides, 2', 5' - dimethoxyflavone and nordentatin, were identified from the UHPLC-HRMS data of the aqueous and -butanolic fractions of sp. ICC1, respectively. A BGC likely encoding these metabolites was predicted in both genomes. The predicted similarities in molecule production and genome shared by these two strains could be an indicative of a cooperative mode of living in extreme habitats instead of a competitive one. This secondary metabolite potential may contribute to the fitness of ICC1 and ICC4 in the Iron Curtain Cave.

摘要

近年来,陆地地下微生物群落因其拥有丰富的潜在资源,可用于生物挖掘编码具有抗菌活性代谢物的新基因,而备受关注。在我们之前的研究中,我们从加拿大奇利瓦克的铁幕洞穴中鉴定出两株菌株,分别命名为ICC1和ICC4,它们对多药耐药菌株表现出拮抗活性。在本研究中,通过Illumina MiSeq对这两株菌株的基因组进行测序、组装和注释。使用生物信息学平台antiSMASH和BAGEL鉴定并注释与次级代谢产物产生相关的基因。然后培养ICC1和ICC4,并通过UHPLC-ESI-HRMS对ICC1的代谢组进行表征。利用全球天然产物社会分子网络,根据MS/MS光谱数据鉴定代谢产物。ICC1和ICC4与陆地细菌表现出高度的序列同一性;然而,根据鉴定出的生物合成基因簇(BGC)总数估计,它们具有更大的次级代谢产物潜力。特别是,ICC1和ICC4拥有更多的聚酮化合物和非核糖体肽BGC。最常检测到的BGC是那些预计会产生萜类、小分子和低复杂性二肽以及脂质的BGC。光谱分析通过与环(亮氨酸-脯氨酸)、环(脯氨酸-缬氨酸)和环[(4-羟基脯氨酸)-亮氨酸]的匹配参考光谱,明确鉴定出一些二酮哌嗪产物。antiSMASH预测的一个萜类基因簇拥有一条与重氮霉素生物合成一致的七基因途径。这种分子含有一种非常罕见的核心结构,其BGC迄今为止仅从单个细菌基因组中鉴定出来。在基因组中明确鉴定出四肽铁载体共青霉素BGC,然而,在培养提取物中未能鉴定出该代谢产物。分别从ICC1菌株的水相和丁醇相部分的UHPLC-HRMS数据中鉴定出两种III型聚酮化合物,2',5'-二甲氧基黄酮和去甲齿叶冬青素。在两个基因组中都预测到一个可能编码这些代谢产物的BGC。这两种菌株在分子产生和基因组方面预测的相似性可能表明它们在极端栖息地中以合作而非竞争模式生存。这种次级代谢产物潜力可能有助于ICC1和ICC4在铁幕洞穴中的适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba2c/6524458/a11d8a0bbed1/fmicb-10-01020-g001.jpg

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