Department of Microbiology and Immunology, Faculty of Tropical Medicine, Mahidol University, Bangkok, Thailand.
Department of Tropical Pathology, Faculty of Tropical Medicine, Mahidol University, Bangkok, 10400, Thailand.
New Microbiol. 2021 Jan;44(1):33-41. Epub 2021 Jan 14.
Soil fungal communities play an important role in regulating biogeochemical transformations, yet soil-related fungal pathogens are emerging threats to humans. Our previous studies have revealed the pathogenic Scedosporium species in soils samples from public parks with high human activities in Thailand. However, measurement and survey of soil fungal communities in other areas with high human/animal activities, such as the pigsty, are poorly determined. In this study, soil fungal pathogens from a pigsty were isolated and identified. Soil samples were collected from the surrounding drainage areas. Fungal species were identified using morphological and molecular analyses. Isolation of soil samples from the pigsty revealed at least 11 species that have been identified. The most abundant fungal species belonged to genera Aspergillus and Penicillium. Moreover, Scedo-Select III culturing and phylogenetic analysis with β-tubulin gene sequencing revealed the three environmental isolates of Scedosporium species, which were consistent with the S.apiospermum. These three Scedosporium isolates were susceptible to voriconazole and caused pathological characteristics of scedosporiosis similar to S. apiospermum in vivo. In conclusion, our findings contribute towards a better understanding of soil-borne pathogenic fungi in the pigsty. The isolation of Scedosporium species with pathogenic potentials in the present study can be beneficial for the management of public health surveillance, epidemiologists, as well as physicians to reduce the risk of soil fungal contamination among pigsty workers.
土壤真菌群落在调节生物地球化学转化方面发挥着重要作用,但与土壤相关的真菌病原体正成为人类的新兴威胁。我们之前的研究揭示了在泰国高人类活动的公共公园土壤样本中存在致病性枝孢属物种。然而,对于其他高人类/动物活动地区(如猪圈)的土壤真菌群落的测量和调查还不清楚。在这项研究中,从猪圈中分离和鉴定了土壤真菌病原体。从周围排水区采集土壤样本。使用形态学和分子分析鉴定真菌种类。从猪圈中分离土壤样本至少鉴定出 11 种。最丰富的真菌物种属于曲霉属和青霉属。此外,通过 Scedo-Select III 培养和β-微管蛋白基因测序的系统发育分析,揭示了三种环境分离的枝孢属物种,与 S.apiospermum 一致。这三个枝孢属分离物对伏立康唑敏感,并在体内引起类似于 S.apiospermum 的枝孢菌病的病理特征。总之,我们的研究结果有助于更好地了解猪圈中的土壤传播性致病真菌。本研究中分离出的具有致病性潜力的枝孢属物种有助于公共卫生监测、流行病学家和医生管理,以降低猪圈工人中土壤真菌污染的风险。