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从苦瓜(L.)中分离内生放线菌及其抗菌特性的鉴定。

Isolation and identification of endophytic actinobacteria from Citrullus colocynthis (L.) Schrad and their antibacterial properties.

机构信息

Department of Medical Biotechnology, School of Medicine, Kermanshah University of Medical Sciences, Kermanshah, Iran.

Medical Biology Research Center, Kermanshah University of Medical Sciences, Kermanshah, Iran.

出版信息

Microb Cell Fact. 2022 Oct 10;21(1):206. doi: 10.1186/s12934-022-01936-9.

Abstract

BACKGROUND

Antibiotic resistance poses a major threat to human health globally. Consequently, new antibiotics are desperately required to discover and develop from unexplored habitats to treat life-threatening infections. Microbial natural products (NP) are still remained as primary sources for the discovery of new antibiotics. Endophytic actinobacteria (EA) which are well-known producers of bioactive compounds could provide novel antibiotic against pathogenic bacteria. This research aimed to isolate EA from the Citrullus colocynthis plant and explore the antibacterial properties of their metabolites against pathogenic bacteria.

RESULTS

The healthy samples were collected, dissected and surface-sterilized before cultured on four different selection media at 28 °C. Six endophytic actinobacteria were isolated from Citrullus colocynthis plant. They were taxonomically classified into two family namely Streptomycetaceae and Nocardiopsaceae, based on colony morphological features, scanning electron microscope analysis and molecular identification of isolates. This is the first report on the identification of EA form Citrullus colocynthis and their antibacterial activity. The strains generated a chain of vibrio-comma, cubed or cylindrical shaped spores with indenting or smooth surfaces. Three of those were reported as endophytes for the first time. The strain KUMS-C1 showed 98.55% sequence similarity to its closely related strains which constitutes as a novel species/ strain for which the name Nocardiopsis colocynthis sp. was proposed for the isolated strain. Five isolated strains had antagonist activity against S. aureus, P. aeruginosa, and E. coli. Among those, stain KUMS-C6 showed the broadest spectrum of antibacterial activity against all test bacteria, whereas the strain KUMS-C4 had no antibacterial activity.

CONCLUSIONS

NPs have a long history of safe and efficient use for development of pharmaceutical products. Our study highlights that Citrullus colocynthis is an untapped source for the isolation of EA, generating novel and bioactive metabolites by which might lead to discovery of new antibiotic(s). This study reveals the future of new antibiotic developments looks bright against multi-drug resistance diseases by mining under- or unexplored habitats.

摘要

背景

抗生素耐药性对全球人类健康构成重大威胁。因此,迫切需要从未开发的生境中发现和开发新的抗生素来治疗危及生命的感染。微生物天然产物(NP)仍然是发现新抗生素的主要来源。产生活性化合物的内生放线菌(EA)可以作为对抗致病菌的新型抗生素的来源。本研究旨在从药西瓜植物中分离内生放线菌,并探索其代谢产物对致病菌的抗菌特性。

结果

采集健康样本,进行解剖和表面消毒,然后在 28°C 下在四种不同的选择培养基上进行培养。从药西瓜植物中分离出 6 株内生放线菌。根据菌落形态特征、扫描电子显微镜分析和分离株的分子鉴定,将它们分为链霉菌科和诺卡氏菌科两个科。这是首次报道从药西瓜中分离出 EA 及其抗菌活性。这些菌株产生了链状、逗号状、立方状或圆柱状的孢子,表面有压痕或光滑。其中三种菌株是首次报道为内生菌。菌株 KUMS-C1 与亲缘关系最近的菌株的序列相似度为 98.55%,构成了一个新种/菌株,为分离株命名为药西瓜诺卡氏菌。五株分离株对金黄色葡萄球菌、铜绿假单胞菌和大肠杆菌具有拮抗活性。其中,菌株 KUMS-C6 对所有测试细菌表现出最广泛的抗菌活性,而菌株 KUMS-C4 则没有抗菌活性。

结论

天然产物在药物产品的开发中具有安全高效使用的悠久历史。我们的研究表明,药西瓜是内生放线菌的未开发来源,可以产生新型生物活性代谢物,从而可能发现新的抗生素。本研究表明,通过挖掘未开发或未充分开发的生境,针对多药耐药性疾病,新抗生素的开发前景一片光明。

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