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肯尼亚海岸线沿线选定红树林内生真菌分离株的分子特征及抗菌潜力

Molecular Characterization and Antibacterial Potential of Endophytic Fungal Isolates from Selected Mangroves along the Coastline of Kenya.

作者信息

Wacira Teresia Nyambura, Makonde Huxley Mae, Bosire Carren Moraa, Kibiti Cromwell Mwiti

机构信息

Department of Pure and Applied Sciences Technical University of Mombasa P.O. Box 90420-80100, Mombasa, Kenya.

Kenya Marine and Fisheries Research Institute P.O. Box 1881-40100, Kisumu, Kenya.

出版信息

Int J Microbiol. 2024 Sep 6;2024:1261721. doi: 10.1155/2024/1261721. eCollection 2024.

Abstract

The increasing emergence and re-emergence of resistant pathogenic microbes causes a health threat to the human population. Scientists have been striving to find novel bioactive compounds and drugs to overcome these obstacles. This study aimed to characterize mangrove endophytic fungi and evaluate their antibacterial activity. , , and species were collected from Tudor Creek, Mida Creek, and Gazi Bay. A total of 30 fungal isolates were subjected to molecular identification based on analysis of their ITS gene region. The isolates in the inferred phylogenetic trees were affiliated with the genus . Ethyl acetate and butanol crude extracts of 38.2% of the 76 isolated fungal endophytes and eight mycelia samples were screened for antibacterial activity against (ATCC 27853), (ATCC 25922), and ATCC 25923) using the disc diffusion method. and harbored the most fungal endophytes that showed the highest antibacterial activity. Seven fungal broth extracts exhibited higher antibacterial activities against the tested microorganisms than the positive control. The minimum inhibitory concentration (MIC) activity for the isolates demonstrated that the ethyl acetate extract of a root endophytic fungal isolate (RC6) (3.31 ± 0.01) of is a strong inhibitor since it showed significantly lower MIC activity compared to the positive control (3.84 ± 0.00) against ( < 0.05). Therefore, this study confirms that mangrove species harbor fungal isolates that have antibacterial activity and hence could serve as a novel source of antibiotics. It is recommended that the pure compounds from these extracts be isolated for further bioactivity tests and structural elucidation for consideration as lead molecules in drug discovery. In addition, the genes responsible for the enhanced bioactivity in these isolates can be characterized and bioengineered for pharmaceutical application.

摘要

耐药致病微生物的不断出现和再次出现对人类健康构成了威胁。科学家们一直在努力寻找新型生物活性化合物和药物来克服这些障碍。本研究旨在鉴定红树林内生真菌并评估其抗菌活性。从图多尔溪、米达溪和加齐湾采集了 、 、 和 物种。基于对其 ITS 基因区域的分析,对总共 30 株真菌分离株进行了分子鉴定。推断的系统发育树中的分离株隶属于 属。使用纸片扩散法,对 76 株分离的真菌内生菌中的 38.2% 的乙酸乙酯和丁醇粗提物以及八个菌丝体样品进行了针对 (ATCC 27853)、 (ATCC 25922)和 ATCC 25923)的抗菌活性筛选。 和 含有最多且显示出最高抗菌活性的真菌内生菌。七种真菌肉汤提取物对测试微生物的抗菌活性高于阳性对照。分离株的最低抑菌浓度(MIC)活性表明, 的一种根内生真菌分离株(RC6)的乙酸乙酯提取物(3.31 ± 0.01)是一种强抑制剂,因为与针对 的阳性对照(3.84 ± 0.00)相比,它显示出显著更低的 MIC 活性( < 0.05)。因此,本研究证实红树林物种含有具有抗菌活性的真菌分离株,因此可作为新型抗生素来源。建议从这些提取物中分离出纯化合物进行进一步的生物活性测试和结构解析,以考虑作为药物发现中的先导分子。此外,可以对这些分离株中负责增强生物活性的基因进行表征和生物工程改造以用于药物应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5016/11398959/094f8896a6e7/IJMICRO2024-1261721.001.jpg

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