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基因组和代谢物分析揭示了青藏高原的一株新型菌株 QHH-9511。

Genomic and Metabolite Profiling Reveal a Novel Strain, QHH-9511, from the Qinghai-Tibet Plateau.

机构信息

Shaanxi Key Laboratory of Natural Products & Chemical Biology, College of Chemistry & Pharmacy, Northwest A&F University, Yangling, Shaanxi, China.

College of Biology Pharmacy & Food Engineering, Shangluo University, Shangluo, Shaanxi, China.

出版信息

Microbiol Spectr. 2023 Feb 14;11(1):e0276422. doi: 10.1128/spectrum.02764-22. Epub 2023 Jan 9.

DOI:10.1128/spectrum.02764-22
PMID:36622153
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9927492/
Abstract

The prevalence of superbugs, represented by methicillin-resistant Staphylococcus aureus (MRSA), has become a serious clinical and public safety concern with rising incidence in hospitals. Polyketides with diverse chemical structures harbor many antimicrobial activities, including those of rifampin and rapamycin against MRSA. sp. QHH-9511 was isolated from a niche habitat in the Qinghai-Tibet Plateau and used to produce antibacterial metabolites. Herein, an integrated approach combining genome mining and metabolic analysis were employed to decipher the chemical origin of the antibacterial components with pigmented properties in strain QHH-9511, a novel species from a lichen symbiont on the Qinghai-Tibet Plateau. Genomic phylogeny assembled at the chromosome level revealed its unique evolutionary state. Further genome mining uncovered 36 candidate gene clusters, most of which were uncharacterized. Meanwhile, based on liquid chromatography coupled to diode array detection mass spectrometry, a series of granaticins, BSMs, chromones, phaeochromycins, and related molecules were discovered by using the Global Natural Product Social molecular networking platform. Subsequently, several pigment compounds were isolated and identified by high-resolution mass spectrometry and/or nuclear magnetic resonance, among which the structure-activity relationships of seven aromatic polyketides showed that the fused lactone ring of the C-2 carboxyl group could increase antibacterial activity. Genetic experiments indicated that all seven aromatic polyketides are a series of metabolic shunts produced by a single type II polyketide synthase (PKS) cluster. Comparative genomic analysis of granaticin producers showed that the granaticin gene cluster is widely distributed. This study provides an efficient method to combine genome mining and metabolic profiling techniques to uncover bioactive metabolites derived from specific habitats, while deepening our understanding of aromatic polyketide biosynthesis. Undescribed microorganisms from special habitats are being screened for anti-superbug drug molecules. In a project to screen actinomycetes for anti-MRSA activity, we isolated a strain from Qinghai Lake lichens. The phylogeny based on the genome assembled at the chromosome level revealed this strain's unique evolutionary state. The chemical origins of the antibacterial components with pigment properties in strain QHH-9511 were determined using an integrated approach combining genome mining and metabolic analysis. Further genome mining uncovered 36 secondary metabolite gene clusters, the majority of which were previously unknown. A series of aromatic compounds were discovered using molecular network analysis, separation, and extraction. Genetic experiments revealed that all seven aromatic polyketides are a series of metabolic shunts produced by a single cluster of type II PKSs. This study describes a method for identifying novel from specific habitats by combining genome mining with metabolic profiling techniques.

摘要

耐甲氧西林金黄色葡萄球菌(MRSA)等超级细菌的流行已成为一个严重的临床和公共安全问题,其在医院的发病率不断上升。具有多种化学结构的聚酮类化合物具有许多抗菌活性,包括利福平(rifampin)和雷帕霉素(rapamycin)对 MRSA 的活性。sp. QHH-9511 是从青藏高原的一个小生境中分离出来的,用于产生具有抗菌活性的代谢产物。本文采用基因组挖掘和代谢分析相结合的综合方法,对来自青藏高原地衣共生体的新型种 QHH-9511 菌株中具有色素特性的抗菌成分的化学起源进行了解码。基于染色体水平组装的基因组系统发育揭示了其独特的进化状态。进一步的基因组挖掘发现了 36 个候选基因簇,其中大多数尚未被描述。同时,基于液相色谱-二极管阵列检测-质谱联用技术,利用全球天然产物社会分子网络平台,发现了一系列格兰他宁、BSM、色酮、色霉素和相关分子。随后,通过高分辨质谱和/或核磁共振分离鉴定了几种色素化合物,其中七种芳香族聚酮的结构-活性关系表明 C-2 羧基的融合内酯环可以提高抗菌活性。遗传实验表明,所有七种芳香族聚酮都是由单个 II 型聚酮合酶(PKS)簇产生的一系列代谢旁路产物。对格兰他宁产生菌的比较基因组分析表明,格兰他宁基因簇广泛分布。本研究提供了一种有效的方法,将基因组挖掘和代谢谱技术相结合,揭示特定生境来源的生物活性代谢产物,同时加深对芳香族聚酮生物合成的理解。正在从特殊生境中筛选抗超级细菌药物分子。在一项筛选抗 MRSA 放线菌的项目中,我们从青海湖地衣中分离出一株。基于染色体水平组装基因组的系统发育揭示了该菌株独特的进化状态。采用基因组挖掘和代谢分析相结合的综合方法,确定了 QHH-9511 菌株中具有色素特性的抗菌成分的化学起源。进一步的基因组挖掘发现了 36 个次级代谢产物基因簇,其中大多数是未知的。利用分子网络分析、分离和提取发现了一系列芳香族化合物。遗传实验表明,所有七种芳香族聚酮都是由单个 II 型 PKS 簇产生的一系列代谢旁路产物。本研究描述了一种通过将基因组挖掘与代谢谱技术相结合来识别特定生境中新种的方法。

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