Uhlig Elisabeth, Megaelectra Afina, Molin Göran, Håkansson Åsa
Department of Process and Life Science Engineering, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden.
Microorganisms. 2025 Apr 23;13(5):964. doi: 10.3390/microorganisms13050964.
The live microbiota of tea has not been extensively investigated. This study aimed to identify the live, culturable microbiota from four types of tea with varying oxidation levels, before and after brewing. Tea leaves and brews from oolong and fermented teas were analyzed for total viable counts of aerobic bacteria, lactobacilli, fungi, and . Cultivation was performed and isolates were identified by Sanger sequencing. Heat resistance was assessed at 70 °C and 90 °C. Random Amplified Polymorphic DNA (RAPD) was used to determine strain-level diversity. Fully oxidized, post-fermented Pu-erh tea had the highest viable bacterial count. Most isolates belonged to , and , families associated with soil or human skin. Only two potentially pathogenic species were identified: and . In Pu-erh, live bacteria were detected after brewing at 90 °C, including , a spore forming probiotic species. strains remained in vegetative state after hot water exposure and survived at 70 °C, indicating thermotolerance. RAPD-analysis revealed nine distinct strains across six Pu-erh teas. Conclusion: This study provides new insight into the viable microbiota of different teas and their survival during brewing, highlighting safety concerns and probiotic species like .
茶叶中的活微生物群落尚未得到广泛研究。本研究旨在鉴定四种不同氧化程度的茶叶在冲泡前后的可培养活微生物群落。对乌龙茶和发酵茶的茶叶及茶汤进行需氧菌、乳酸菌、真菌和……的总活菌数分析。进行培养并通过桑格测序鉴定分离株。在70℃和90℃下评估耐热性。使用随机扩增多态性DNA(RAPD)来确定菌株水平的多样性。完全氧化的后发酵普洱茶的活菌数最高。大多数分离株属于与土壤或人类皮肤相关的……科。仅鉴定出两种潜在致病物种:……和……。在普洱茶中,90℃冲泡后检测到活细菌,包括……,一种形成芽孢的益生菌种。……菌株在热水处理后仍保持营养状态并在70℃存活,表明具有耐热性。RAPD分析揭示了六种普洱茶中有九种不同的……菌株。结论:本研究为不同茶叶的活微生物群落及其在冲泡过程中的存活情况提供了新的见解,突出了安全问题以及像……这样的益生菌种。