用冠状木耳制备发酵凉茶

Q3 Pharmacology, Toxicology and Pharmaceutics Journal of Pharmacy and Nutrition Sciences Pub Date : 2020-11-05 DOI:10.29169/1927-5951.2020.10.06.4
Elena F. Shanenko, Olga V. Efremenkova, Tatiana G. Mukhamedzanova, Yu. A. Nikolaev, Tatiana A. Efimenko, Marina V. Gernet, Elena N. Bilanenko, Ivan N. Serykh, Sergey S. Shevelev, Byazilya F. Vasilyeva, Alexander V. Oleskin, Svetlana N. Filippova, Galina I. El’-Registan
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摘要

背景:中国黑茶的生物活性很大程度上取决于其微生物后发酵。凉茶是传统的俄罗斯饮料,由于其味道和有用的药用特性,具有特殊的价值。然而,文献中没有关于利用微生物后发酵提高其生物活性的数据。本研究的目的是证明从中国红茶中分离出的真菌Eurotium可用于由月桂柳和苹果叶制成的草药茶的后发酵。方法:从福建砖茶中分离得到冠状Eurotium cristatum,采用常规微生物学和分子生物学方法进行鉴定。用高效液相色谱法测定低分子量代谢物(酚类、胺类、糖和氨基酸)。冠状芽孢杆菌与解淀粉芽孢杆菌一起生长。结果:显示出有价值的生物合成特性,如缺乏真菌毒素,零抗菌活性,以及合成神经活性胺的能力。解淀粉芽孢杆菌显示出广泛的抗生素(抗菌素和抗真菌)活性,即使与耐药细菌也能表现出来。当生长在绿色未发酵茶(Camellia sp.)上时,E. cristatum产生并修饰神经活性胺,如多巴胺、血清素和肾上腺素。真菌在月桂柳和苹果叶草本茶发酵后有效生长。尽管山茶叶的酚含量与月桂柳和苹果叶有很大的差异,但山茶叶上的凤冠菌的生长也足够好。这表明真菌的生长不受酚类化合物的影响。关于发酵植物和原料中酚类化合物、碳水化合物和氨基酸组成的数据提供了证据,表明真菌的生长取决于发酵材料中高分子量酚类物质和细胞生物聚合物的水解。结论:鸡冠草在不同生化成分的植物叶片上生长的能力,为制备富含生物胺等低分子量化合物的高生物活性后发酵凉茶提供了新技术基础。
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Using the Eurotium cristatum Fungus for Preparing Fermented Herbal Teas -
Background: The biological activities of dark Chinese teas are largely due to their microbial post-fermentation. Herbal teas are traditional Russian beverages that hold special value, owing to their taste and useful medicinal properties. However, no data are available in the literature on using microbial post-fermentation for enhancing their biological activity. The goal of this work was to demonstrate that the fungus Eurotium isolated from Chinese black teas can be used for the post-fermentation of herbal teas produced from bay willow and apple leaves.Methods: Eurotium cristatum was isolated from brick Chinese tea Fujan and identified using conventional methods of microbiology and molecular biology. Low molecular weight metabolites (phenols, amines, sugars, and amino acids) were determined by HPLC. E. cristatum was grown in association with the bacterium Bacillus amyloliquefaciens.Results: It was revealed to exhibit valuable biosynthetic features, such as a lack of mycotoxins, zero antimicrobial activity, and the capacity to synthesize neuroactive amines. B. amyloliquefaciens displayed a wide spectrum of antibiotic (antimicrobial and antifungal) activities that anifested themselves even with antibiotic-resistant bacteria). While growing on green unfermented tea (Camellia sp.) E. cristatum produced and modified neuroactive amines, such as dopamine, serotonin, and epinephrine. The fungus efficiently grew during the post-fermentation of herbal teas from both bay willow and apple leaves. Even though Camellia leaves substantially differed from bay willow and apple leaves in terms of phenol content, the growth of E. cristatum on Camellia was also sufficiently good. This suggests that the growth of Eurotium fungi is not influenced by the phenolic compounds. The data obtained on the composition of phenolic compounds, carbohydrates, and amino acids in the fermented plants and raw material provide evidence that the growth of the fungus proceeds depends on the hydrolysis of high molecular weight phenols and cell biopolymers in the fermented material.Conclusion: Thus, the ability of E. cristatum to grow on plant leaves of significantly different biochemical composition provides foundations for new technologies aiming to obtain post-fermented herbal teas with high biological activity that are enriched in low molecular weight compounds including biogenic amines.
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Journal of Pharmacy and Nutrition Sciences
Journal of Pharmacy and Nutrition Sciences Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
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