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中国香港红树林酵母菌的多样性及抗真菌药敏性——“同一健康”视角

Diversity and Antifungal Susceptibilities of Yeasts from Mangroves in Hong Kong, China-A One Health Aspect.

作者信息

Hau Pak-Ting, Shiu Anson, Tam Emily Wan-Ting, Chau Eddie Chung-Ting, Murillo Michaela, Humer Eva, Po Wai-Wai, Yu Ray Chun-Wai, Fung Joshua, Seto Sai-Wang, Tsang Chi-Ching, Chow Franklin Wang-Ngai

机构信息

Department of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong, China.

School of Science and Technology, Hong Kong Metropolitan University, Hong Kong, China.

出版信息

J Fungi (Basel). 2024 Oct 20;10(10):728. doi: 10.3390/jof10100728.

Abstract

While mangrove ecosystems are rich in biodiversity, they are increasingly impacted by climate change and urban pollutants. The current study provides first insights into the emergence of potentially pathogenic yeasts in Hong Kong's mangroves. Sediment and water samples were collected from ten urban and rural mangroves sites. Initial CHROMagar Candida Plus screening, representing the first application of this differential medium for water and soil samples collected from a non-clinical environment, enabled the rapid, preliminary phenotypic identification of yeast isolates from mangroves. Subsequent molecular profiling (ITS and/or 28S nrDNA sequencing) and antifungal drug susceptibility tests were conducted to further elucidate yeast diversity and drug resistance. A diversity of yeasts, including 45 isolates of 18 distinct species across 13 genera/clades, was isolated from sediments and waters from Hong Kong mangroves. Molecular profiling revealed a dominance of the / clade (44.4%), a group of notorious opportunistic pathogens. The findings also reveal a rich biodiversity of non-/ yeasts in mangroves, including the first reported presence of and . A potentially novel species was also discovered. Remarkably, 14.3% of the ubiquitous isolates displayed resistance to multiple antifungal drugs, suggesting that mangroves may be reservoirs of multi-drug resistance. Wildlife, especially migratory birds, may disseminate these hidden threats. With significant knowledge gaps regarding the environmental origins, drug resistance, and public health impacts of pathogenic yeasts, urgent surveillance is needed from a One Health perspective. This study provides an early warning that unrestrained urbanization can unleash resistant pathogens from coastal ecosystems globally. It underscores the necessity for enhanced surveillance studies and interdisciplinary collaboration between clinicians, ornithologists, and environmental microbiologists to effectively monitor and manage this environmental health risk, ensuring the maintenance of 'One Health'.

摘要

虽然红树林生态系统拥有丰富的生物多样性,但它们正日益受到气候变化和城市污染物的影响。本研究首次深入了解了香港红树林中潜在致病酵母的出现情况。从十个城乡红树林地点采集了沉积物和水样。最初使用CHROMagar Candida Plus进行筛选,这是该鉴别培养基首次应用于从非临床环境采集的水和土壤样本,能够快速、初步地对红树林中的酵母分离株进行表型鉴定。随后进行了分子分析(ITS和/或28S nrDNA测序)和抗真菌药敏试验,以进一步阐明酵母的多样性和耐药性。从香港红树林的沉积物和水中分离出了多种酵母,包括13个属/进化枝中的18个不同物种的45个分离株。分子分析显示/进化枝占主导地位(44.4%),这是一组臭名昭著的机会致病菌。研究结果还揭示了红树林中非/酵母的丰富生物多样性,包括首次报道的和的存在。还发现了一个潜在的新物种。值得注意的是,无处不在的分离株中有14.3%对多种抗真菌药物具有抗性,这表明红树林可能是多重耐药性的储存库。野生动物,尤其是候鸟,可能会传播这些隐藏的威胁。由于在致病酵母的环境来源、耐药性和对公共卫生的影响方面存在重大知识空白,迫切需要从“同一健康”的角度进行监测。本研究提供了一个早期预警,即不受限制的城市化可能会在全球范围内释放沿海生态系统中的耐药病原体。它强调了加强监测研究以及临床医生、鸟类学家和环境微生物学家之间跨学科合作的必要性,以有效监测和管理这种环境健康风险,确保维持“同一健康”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0942/11508678/706bd2004bbc/jof-10-00728-g001.jpg

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