茶叶科学 ›› 2014, Vol. 34 ›› Issue (3): 205-212.doi: 10.13305/j.cnki.jts.2014.03.001
• • 下一篇
赵振军1, 刘勤晋2
收稿日期:
2013-08-27
修回日期:
2013-11-09
出版日期:
2014-06-15
发布日期:
2019-09-03
作者简介:
赵振军(1976— ),男,湖北荆州人,在站博士后,主要从事茶叶安全与功能方面的研究与教学,E-mail:zzjnjau@126.com
基金资助:
ZHAO Zhenjun1, LIU Qinjin2
Received:
2013-08-27
Revised:
2013-11-09
Online:
2014-06-15
Published:
2019-09-03
摘要: 普洱茶后发酵过程中真菌的参与使普洱茶具有独特的品质,本文对普洱茶后发酵过程中真菌的种类、真菌对普洱茶品质形成的影响及其安全性研究作了综述。
中图分类号:
赵振军, 刘勤晋. 普洱茶中真菌研究进展[J]. 茶叶科学, 2014, 34(3): 205-212. doi: 10.13305/j.cnki.jts.2014.03.001.
ZHAO Zhenjun, LIU Qinjin. Advances on the Research of Fungi in Pu-erh Tea[J]. Journal of Tea Science, 2014, 34(3): 205-212. doi: 10.13305/j.cnki.jts.2014.03.001.
[1] | 杨耀辉. 普洱茶后发酵之谜[J]. 普洱, 2006, 2: 80-85. |
[2] | 方祥, 陈栋, 李晶晶, 等. 普洱茶不同贮藏时期微生物种群的鉴定[J]. 现代食品科技, 2008, 24(2): 105-108, 160. |
[3] | 雷晓燕. 普洱茶中主要微生物的研究[J]. 沈阳化工学院学报, 2009, 23(2): 134-139. |
[4] | 王二霞. 普洱茶微生物分离鉴定[D]. 重庆: 西南大学, 2009: 15-48. |
[5] | 陈宗道, 刘勤晋, 周才琼. 微生物与普洱茶发酵[J]. 茶叶科技, 1985(4): 4-7. |
[6] | 胡建程. 四种边茶中微生物分离和鉴定[J]. 茶叶, 1957(2): 20-22. |
[7] | 胡建程, 胡月龄, 钱泽树. 茶叶中霉菌的研究[J]. 茶叶, 1979(1): 25-30. |
[8] | 刘勤晋, 周才琼, 许鸿亮, 等. 普洱茶的渥堆作用[J]. 茶叶科学, 1986, 6(2): 55-56. |
[9] | 周红杰, 李家华, 赵龙飞, 等. 渥堆过程中主要微生物对云南普洱茶品质形成的研究[J]. 茶叶科学, 2004, 24(3): 212-218. |
[10] | Xu X, Yan M, Zhu Y.Influence of fungal fermentation on the development of volatile compounds in the Puer tea manufacturing process[J]. Engineering in Life Sciences, 2005, 5(4): 382-386. |
[11] | Michiharu A, Takaoka. Characteristic fungi observed in the fermentation process for Puer tea[J]. International Journal of Food Microbiology, 2008, 24(2): 199-203. |
[12] | Zhao ZJ, Tong HR, Zhou L, et al. Fungal colonization of Pu-erh tea in Yunnan[J]. Journal of Food Safety, 2010, 29, 157-165. |
[13] | 陈可可, 朱宏涛, 王东, 等. 普洱熟茶后发酵加工过程中曲霉菌的分离和鉴定[J]. 云南植物研究, 2006, 28(2): 123-126. |
[14] | 何国藩,林月蝉,徐祥福. 广东普洱茶渥堆中细胞组织的显微变化及微生物分析[J]. 茶叶科学, 1987, 7(2): 54-57. |
[15] | 刘勤晋. 中国普洱茶的科学读本[M]. 广州: 中国广东旅游出版社, 2005: 15-38. |
[16] | 沈萍, 陈向东. 微生物学[M]. 北京: 高等教育出版社, 2000: 38-54. |
[17] | 刘勤晋. 普洱茶鉴赏与冲泡[M]. 北京: 中国轻工业出版社, 2009: 55-80. |
[18] | Lv HP, Zhang YJ, Lin Z, et al. Processing and chemical constituents of Pu-erh tea: A review[J]. Food Research International, 2013, 53(2): 608-618. |
[19] | 谢美华, 陈华红, 陈玉红, 等. 几种普洱茶发酵微生物对茶多酚代谢的初步研究[J]. 食品科技, 2013, 38(5): 82-85. |
[20] | 王腾飞, 王宣军, 黄业伟, 等. 发酵对普洱茶中游离咖啡因含量的影响[J]. 中国生物制品学杂志, 2013, 26(4): 509-511. |
[21] | Wang XG, Wan XC, Hu SX, et al. Study on the increase mechanism of the caffeine content during the fermentation of tea with microorganisms[J]. Food Chemistry, 2008, 107: 1086-1091. |
[22] | 董文明, 谭超, 付晓萍, 等. 5种成品普洱茶中微生物的分离及其产酶特性研究[J]. 食品科技, 2013, 38(6): 22-30. |
[23] | Gong Z, Watanabe N, Yagi A, et al. Compositional change of Pu-erh tea during processing[J]. Bioscience, Biotechnology and Biochemistry, 1993, 57: 1745-1746. |
[24] | Zhao ZJ, Pan YZ, Liu QJ, et al. Exposure assessment to lovastatin from Pu-erh tea in Yunnan[J]. International Journal of Food Microbiology, 2013, 164: 26-31. |
[25] | Schuster E, Dunn-Coleman N, Frisvad JC, et al. On the safety of Aspergillus niger— a review[J]. Applied Microbiology and Biotechnology, 2002, 59: 426-435. |
[26] | Giancarlo P, Giuseppina M, Antonia S, et al. Ochratoxin A production and amplified fragment length polymorphism analysis of Aspergillus carbonarius, Aspergillus tubingensis, and Aspergillus niger strains isolated from grapes in Italy[J]. Applied and Environmental Microbiology, 2006, 72(1): 680-685. |
[27] | Tjamos SE, Antoniou PP, Kazantzidou A, et al. Aspergillus niger and Aspergillus carbonarius in Corinth raisin and wine-producing vineyards in Greece: Population composition, ochratoxin A production and chemical control[J]. Journal of Phytopathology, 2004, 152(4): 250-255. |
[28] | Da R, Rosa CA, Palacios V, et al. Potential ochratoxin A producers from wine grapes in Argentina and Brazil[J]. Food Additives and Contaminants, 2002, 19(4): 408-414. |
[29] | Kouadio AI, Lebrihi A, Agbo GN, et al. Influence of the interaction of temperature and water activity on the growth and production of ochratoxin A by Aspergillus niger, Aspergillus carbonarius and Aspergillus ochraceus on a coffee-based medium[J]. Canadian Journal of Microbiology, 2007, 53: 852-859. |
[30] | Frisvad JC, Smedsgaard J, Samson R A, et al. Fumonisin B2 production by Aspergillus niger[J]. Journal of Agriculture Food Chemistry, 2007, 55(23): 9727-9732. |
[31] | James HC, Janet M N, John N B, et al. Study on fungi and its toxinogenic potential isolated from green tea, fermented tea and post-fermented tea[J]. Report of Tea Research, 1994, 79: 31-36. |
[32] | 杜巍. 食品安全与疾病[M]. 北京: 人民军医出版社, 2007: 222-247. |
[33] | 蔡晶晶, 李季伦. 洛伐他汀产生菌土曲霉原生质体的制备与再生[J]. 中国农业大学学报, 2000, 5(5): 1-5. |
[34] | Hendrickson L, Davis CR, Roach C, et al. Lovastatin bio-synthesis in Aspergillus terreus: Characterization of blocked mutants, enzyme activities and a multifunctional polyketide synthase gene[J]. Journal of Chemistry and Biology, 1999, 6: 429. |
[35] | Hanai J, Cao P, Tanksale P, et al. The muscle-specific ubiquitin ligase atrogin-1/MAFbx mediates statin-induced muscle toxicity[J]. Journal of Clinical Investigation, 2007, 117(12): 3940-3951. |
[36] | 魏景超. 真菌鉴定手册[M]. 上海: 上海科学技术出版社, 1979: 39-178. |
[37] | Fallah P, Burge HA, Gallup JM.Exposure potential of other common Penicillium species in indoor environments[J]. Journal of Allergy Clinical Immunology, 2004, 113(2): 223. |
[38] | Pitt JI, Hocking AD, Fungi and Food Spoplage[M]. 2nd ed. Maryland: Aspen publisher Inc, 1999: 307-309. |
[39] | Samson RA, Frisvad JC, Hoekstra ES.Introduction to Food-and Airborne fungi[M]. Utrecht: Centraalbureau voor Schimmelcultures, 2004: 181-184. |
[40] | Frisvad JC, Samson RA.Polyphasic taxonomy of Penicillium subgenus Penicillium: a guide to identification of food and air-borne terverticillate Penicillia and their mycotoxins[J]. Studies in Mycology, 2004, 49: 151-157 |
[41] | Thomas R, Ida S, Arne F.The presence of Penicillium and Penicillium mycotoxins in food wastes[J]. International Journal of Food Microbiology, 2004, 90: 181-188. |
[42] | Raper KB, Thom C.Manual of the Penicillia[M]. Williams and Wilkins, Baltimore, 1949. |
[43] | Mary ADK, Judy AB.Evaluation of several culture media for producyion of patulin by Penicillium species[J]. International Journal of Food Microbiology, 2005, 98: 241-248. |
[44] | Cabañes FJ, Bragulat MR, Ochratoxin A in profiling and speciation[M]//Varga J, Samson RA. Aspergillus in the Genomic Era. Wageningen: Wageningen Academic Publishers, 2008: 57-70. |
[45] | Bragulat MR, Martínez E, Castellá G, et al. Ochratoxin A and citrinin producing species of the genus Penicillium from feedstuffs[J]. International Journalof Food Microbiology, 2008, 126: 43-48. |
[46] | Rosa CAR, Ribeiro JMM, Fraga MJ.Myco?ora of poultry feeds and ochratoxin-producing ability of isolated Aspergillus and Penicillium species[J]. Veterinary Microbiology, 2006, 113: 89-96. |
[47] | Michael JS, Alan DWD.Mycotoxin production by Aspergillus, Fusarium and Penicillium species[J]. International Journal of Food Microbiology, 1998, 43: 141-158. |
[48] | Cynthia ZB.Production of toxic metabolites in Aspergillus niger, Aspergillus oryzae, and Trichoderma reesei: justification of mycotoxin testing In food grade enzyme preparations derived from the three fungi[J]. Regulatory Toxicology and Pharmacology, 2004, 39: 214-228. |
[49] | Vidal DR.Proprietes immunosuppressives des mycotoxines de groupe des trichothecenes[J]. Bull Inst Pasteur, 1990, 88: 159-192. |
[50] | Richard JL.Mycotoxins as immunomodulators in animal systems [M]//Bray GA, Ryan DH. Mycotoxins, Cancer, and Health. Baton Rouge. Loui siana: Louisiana State University Press, 1991: 197-220. |
[51] | Prelusky DB, Rotter BA, Rotter RG, Toxicology of mycotoxins[M]//Miller JD, Trenholm HL. Mycotoxins in Grain, Compounds other than A?atoxins. St. Paul, Minn: EganPress. 1994: 359-403. |
[52] | Rotter BA, Prelusky DB, Pestka JJ.Toxicology of deoxynivalenol (vomitoxin)[J]. Journal of Toxicology Environmental Health, 1996, 48: 101-134. |
[1] | 王峰, 陈玉真, 吴志丹, 尤志明, 余文权, 俞晓敏, 杨贞标. 有机管理模式对茶园土壤真菌群落结构及功能的影响[J]. 茶叶科学, 2022, 42(5): 672-688. |
[2] | 刘建军, 张金玉, 彭叶, 刘晓博, 杨云, 黄涛, 温贝贝, 李美凤. 不同光质摊青对夏秋茶树鲜叶挥发性物质及其绿茶品质影响研究[J]. 茶叶科学, 2022, 42(4): 500-514. |
[3] | 张应根, 项丽慧, 陈林, 林清霞, 宋振硕, 王丽丽. 不同控温除湿萎凋环境对白茶风味品质和化学轮廓的影响[J]. 茶叶科学, 2022, 42(4): 525-536. |
[4] | 田海霞, 魏珍珍, 马跃, 李颂, 戴申, 刘海新, 郝彬秀. 普洱茶立体小罐发酵加工工艺技术的应用研究[J]. 茶叶科学, 2022, 42(4): 577-587. |
[5] | 刘奇, 欧阳建, 刘昌伟, 陈宏宇, 李娟, 熊立瑰, 刘仲华, 黄建安. 茶叶品质评价技术研究进展[J]. 茶叶科学, 2022, 42(3): 316-330. |
[6] | 安琪, 邱桐, 张莹, 肖明霁, 陈艾妮, 盛彩燕, 戴前颖. 基于不同年龄段消费者的黄大茶偏好研究[J]. 茶叶科学, 2022, 42(3): 435-446. |
[7] | 疏再发, 郑生宏, 邵静娜, 周慧娟, 吉庆勇, 刘瑜, 何卫中, 王丽鸳. 不同茶树品种(系)对减半施肥的响应研究[J]. 茶叶科学, 2022, 42(2): 277-289. |
[8] | 马冰凇, 王佳菜, 徐成成, 任小盈, 马存强, 周斌星. 不同仓储期普洱茶(生茶)中酚类成分差异及其对体外抗氧化能力的影响[J]. 茶叶科学, 2022, 42(1): 51-62. |
[9] | 崔俪丹, 张湘琳, 项希, 李兰兰, 屈青云, 徐洋洋, 王继国, 刘峰, 龚志华, 肖文军. 微波初干工艺对红茶品质的影响[J]. 茶叶科学, 2021, 41(3): 406-418. |
[10] | 王义祥, 黄家庆, 叶菁, 李艳春, 林怡, 刘岑薇. 生物炭对酸化茶园土壤性状和真菌群落结构的影响[J]. 茶叶科学, 2021, 41(3): 419-429. |
[11] | 吕海涛, 吴文君, 廖声熙, 王子芝, 周俊宏, 李立, 崔凯. 三类云南普洱茶树的地基光谱反射特征及其差异分析[J]. 茶叶科学, 2021, 41(2): 184-192. |
[12] | 宁静, 李健权, 刘本英, 郑红发, 卢凤美, 陈雷, 刘振, 叶升涛, 黄浩, 杨培迪, 伍岗, 杨阳. 云南大叶种晒青茶发花前后主要风味成分的变化研究[J]. 茶叶科学, 2021, 41(2): 213-227. |
[13] | 张群峰, 倪康, 伊晓云, 刘美雅, 阮建云. 中国茶树镁营养研究进展与展望[J]. 茶叶科学, 2021, 41(1): 19-27. |
[14] | 殷雨心, 陈玉琼, 焦远方, 郝娟, 余志, 倪德江. 不同茶树品种原料对青砖茶品质的影响[J]. 茶叶科学, 2021, 41(1): 48-57. |
[15] | 任广鑫, 金珊珊, 李露青, 宁井铭, 张正竹. 近红外光谱技术在茶叶品控与装备创制领域的研究进展[J]. 茶叶科学, 2020, 40(6): 707-714. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||
|