斐济蚁-植物共生体放线菌的分离、鉴定和筛选。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Umar Diarra, Tamara Osborne-Naikatini
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引用次数: 0

摘要

为了寻找新的治疗方法来对抗持续的抗微生物耐药性危机,科学家们正转向探索不足的环境。处女膜虫和放线菌之间的防御相互作用是生物活性化合物的重要来源。在这项研究中,我们检测了放线菌和角鲨属蚂蚁植物之间的关系,它们跨越了三种不同的蚂蚁和植物物种组合(角鲨属(Squamellaria imberbis Philidris nagasau)、细花角鲨属-Technomermex vitiensis和细花角鲨属Tetramorium insins)。对八株角鲨属植物进行了取样,其中四株含有葡萄T.vitiensis,三株含有P.nagasau,还有一株含有T.insidens。从取样材料中共获得47种放线菌,其中5种、16种和26种分离株分别来源于角质层、组织和巢穴样品。交叉划线试验表明,47个分离株中有12个对细菌病原体具有抑制作用。交叉划线试验中最常被抑制的病原体是金黄色葡萄球菌和大肠杆菌,而肠炎杆菌的抑制作用最小。在使用的三种初级筛选培养基中,ISP2琼脂最适合二次代谢,因为更多的分离株在培养基上生长时表现出抗菌活性。TFS2010和TFS2003与禾谷链霉菌(>99%相似性)相匹配,是交叉划线试验中最具生物活性的分离株。TFS2010对营养琼脂、Mueller-Hinton琼脂和ISP2琼脂表现出较强的抗菌活性,而TFS2003仅对营养琼脂表现出强烈的抗菌活性。此外,TFS2010中注意到基于分批培养基的提取物的效力差异。从19个分离株中提取DNA,然后进行16SrRNA基因测序。序列数据分析显示,存在6个属,包括Amycolatopsis、Asanoa、Jingella、Nocardia、Nocardiosis和链霉菌,后者是最丰富的分类单元。其中,三个分离株(PNS3002、PNS3005和TFS3001)可能代表新物种,而一个(TFS2015)可能是一个新属的成员。我们的工作代表了首次尝试研究Squamellaria蚂蚁共生体中的放线菌。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolation, characterization and screening of actinomycetes associated with fijian ant-plant symbioses.

In the search for novel therapeutics to combat the ongoing antimicrobial resistance crisis, scientists are turning to underexplored environments. Defensive mutualisms between hymenopteran insects and actinomycetes represent important reservoirs for bioactive compounds. In this study, we examined the association between actinomycetes and Squamellaria ant-plants spanning three different ant and plant species combinations (Squamellaria imberbis-Philidris nagasau, Squamellaria tenuiflora- Technomyrmex vitiensis, and Squamellaria tenuiflora-Tetramorium insolens). Eight Squamellaria plants were sampled including four containing T. vitiensis, three containing P. nagasau, and a single plant containing T. insolens. A total of 47 actinomycetes were obtained from the sampled material, with 5, 16, and 26 isolates originating from cuticle, tissue, and nest samples, respectively. Cross-streaking tests showed that 12 out of 47 isolates inhibited bacterial pathogens. The most frequently inhibited pathogens in the cross-streaking tests were S. aureus and E. coli while S. enterica was the least inhibited. Among the three primary screening media used, ISP2 agar was the most suitable for secondary metabolism as more isolates exhibited antibacterial activity when grown on the medium. TFS2010 and TFS2003, which matched to Streptomyces gramineus (>99% similarity), were the most bioactive isolates in cross-streaking tests. TFS2010 displayed the strong antibacterial on Nutrient agar, Mueller Hinton agar, and ISP2 agar while TFS2003 only exhibited strong antibacterial activity on Nutrient agar. Furthermore, a difference in potency of extracts based on batch culture medium was noted in TFS2010. DNA was extracted from 19 isolates and followed by 16SrRNA gene sequencing. Analysis of sequence data revealed the presence of six genera, including Amycolatopsis, Asanoa, Jiangella, Nocardia, Nocardiopsis, and Streptomyces, with the latter being the most abundant taxon. Among these, three isolates (PNS3002, PNS3005, and TFS3001) are likely to represent new species while one (TFS2015) is likely to be a member of a novel genus. Our work represents the first attempt to study actinomycetes from Squamellaria-ant mutualisms.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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