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鉴定乙酰霉素为白蚁肠道相关链霉菌产生的一种抗真菌剂,该抗真菌剂针对…… (原文结尾不完整)

Identification of Acetomycin as an Antifungal Agent Produced by Termite Gut-Associated Streptomycetes against .

作者信息

Adra Cherrihan, Tran Trong D, Foster Keith, Tomlin Russell, Kurtböke D İpek

机构信息

School of Science, Technology and Engineering, University of the Sunshine Coast, Maroochydore BC, QLD 4558, Australia.

Centre for Bioinnovation, University of the Sunshine Coast, Maroochydore BC, QLD 4558, Australia.

出版信息

Antibiotics (Basel). 2024 Jan 3;13(1):45. doi: 10.3390/antibiotics13010045.

Abstract

Plant fungal pathogen is responsible for the destructive and invasive disease of brown root rot currently affecting the city of Brisbane, Australia. In order to address this issue, environmentally friendly and safe alternatives to chemical control are preferred due to the city's public setting. Antifungal natural products are ideal candidates as biological control alternatives and can be detected through investigating the metabolomes of microbial symbionts. Within this study, an NMR-based metabolomics approach was applied to fermentation extracts obtained from 15 termite gut-associated streptomycetes. By analysing the NMR spectra, six of the extracts which displayed similar chemical profiles exhibited antifungal activity against the pathogen. The major compound within these extracts was identified as acetomycin using NMR and X-ray crystallography analyses. This is the first reporting of acetomycin as a potential natural product fungicide, particularly as an antifungal agent against . Inhibitory activity was also found against other important fungal crop pathogens, including , , and . Further experimentation using a woodblock test found inhibitory activity on the growth of the pathogen for up to 3 weeks and a significant difference in the integrity of the woodblocks when conducting compression strength tests after 6 weeks. Therefore, acetomycin may be used as a biological control agent and natural product fungicide against .

摘要

植物真菌病原体导致了目前正在影响澳大利亚布里斯班市的褐根腐病这种具有破坏性和侵袭性的疾病。为了解决这个问题,由于该市的公共环境,更倾向于使用对环境友好且安全的化学防治替代方法。抗真菌天然产物作为生物防治替代物是理想的选择,并且可以通过研究微生物共生体的代谢组来检测。在本研究中,一种基于核磁共振的代谢组学方法被应用于从15种与白蚁肠道相关的链霉菌获得的发酵提取物。通过分析核磁共振光谱,六种显示出相似化学特征的提取物对该病原体表现出抗真菌活性。利用核磁共振和X射线晶体学分析,这些提取物中的主要化合物被鉴定为阿塞霉素。这是首次报道阿塞霉素作为一种潜在的天然产物杀菌剂,特别是作为针对[此处原文缺失具体针对对象]的抗真菌剂。还发现其对其他重要的真菌作物病原体具有抑制活性,包括[此处原文缺失具体病原体名称]、[此处原文缺失具体病原体名称]和[此处原文缺失具体病原体名称]。使用木块试验的进一步实验发现,对该病原体的生长具有长达3周的抑制活性,并且在6周后进行抗压强度测试时,木块的完整性存在显著差异。因此,阿塞霉素可作为针对[此处原文缺失具体针对对象]的生物防治剂和天然产物杀菌剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48d0/10812552/dda86d4b9f32/antibiotics-13-00045-g001.jpg

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