[1] Francis Fleurat-Lessard.Integrated management of the risk of stored grain spoilage by seedborne fungi and contamination by storage mould mycotoxins - an update[J]. Journal of Stored Products Reasearch, 2017, 71: 22-40.
[2] Elisabeth Streit, Gerd Schatzmayr, Panagiotis Tassis, et al.Current situation of mycotoxin contamination and co-occurrence in animal feed--focus on Europe[J]. Toxins, 2012, 4: 788-809.
[3] 谭洋岚, 刘娜, 朱闰月, 等. 隐蔽型真菌毒素的主要类型与分析方法研究进展[J]. 中国科学: 化学, 2016, 46(3): 251-256.
[4] Stefan Brase, Arantxa Encinas, Julia Keck, et al.Chemistry and biology of mycotoxins and related fungal metabolites[J]. Chem Rev, 2009, 109: 3903-3990.
[5] M Olsen, P Johnsson, T Möller, et al.Aspergillus nomius, an important aflatoxin producer in Brazil nuts?[J]. World Mycotoxin Journal, 2008, 1(2): 123-126.
[6] D Bhatnagar, K C Ehrlich, T E Cleveland.Molecular genetic analysis and regulation of aflatoxin biosynthesis[J]. Appl Microbiol Biotechnol, 2003, 61: 83-93.
[7] Jens C Frisvad, Thomas O Larsen, Ulf Thrane, et al.Fumonisin and ochratoxin production in industrial aspergillus niger strains[J]. PLOS ONE, 2011, 6(8): e23496. DOI: 10.1371/journal.pone.0023496.
[8] JF Alberts, M Lilly, JP Rheeder, et al. Technological and community-based methods to reduce mycotoxin exposure[J]. Food Control, 2016. DOI: 10.1016/j.foodcont.2016.05.029.
[9] Wayne L, Bryden. Mycotoxin contamination of the feed supply chain: Implications for animal productivity and feed security[J]. Animal Feed Science and Technology, 2012, 173: 134-158.
[10] Franz Berthiller, Colin Crews, Chiara Dall’Asta, et al. Masked mycotoxins: A review[J]. Mol Nutr Food Res, 2013, 57: 165-186.
[11] Daohong Zhang, Peiwu Li, Yang Yang, et al.A high selective immunochromatographic assay for rapid detection of aflatoxin B1[J]. Talanta, 2011, 85: 736-742.
[12] Rajeev Bhat, Kasa Ravindra Nadha Reddy. Challenges and issues concerning mycotoxins contamination in oil seeds and their edible oils: updates from last decade[J]. Food Chemistry, 2017, 215: 425-437.
[13] Scherrine A Tria, David Lopez-Ferber, Catherine Gonzalez, et al.Microfabricated biosensor for the simultaneous amperometric and luminescence detection and monitoring of ochratoxin A[J]. Biosensors and Bioelectronics, 2016, 79: 835-842.
[14] Maryam Rameshrad, Bibi Marjan Razavi, Hossein Hosseinzadeh.Protective effects of green tea and its main constituents against natural and chemical toxins: a comprehensive review[J]. Food and Chemical Toxicology, 2017, 100: 115-137.
[15] 陈智雄, 齐桂年, 邹瑶, 等. 黑茶调节脂质代谢的物质基础及机理研究进展[J]. 茶叶科学, 2013, 33(3): 242-252.
[16] Ran Zhao, Dong Chen, Hualing Wu.Pu-erh ripened tea resists to hyperuricemia through xanthine oxidase and renal urate transporters in hyperuricemic mice[J]. Journal of Functional Foods, 2017, 29: 201-207.
[17] Vit Hubka, Miroslav Kolarik, Alena Kubatova, et al.Taxonomic revision of Eurotium and transfer of species to aspergillus[J]. Mycologia, 2013, 105(4): 912-937.
[18] Wei Zhang, Ruijuan Yang, Wenjun Fang, et al.Characterization of thermophilic fungal community associated with pile fermentation of Pu-erh tea[J]. International Journal of Food Microbiology, 2016, 227: 29-33.
[19] JM Mogensen, J Varga, U Thrane, et al. Aspergillus acidus from Puerh tea and black tea does not produce ochratoxin A and fumonisin B2[J]. International Journal of Food Microbiology, 2009, 132: 141-144.
[20] Michiharu Abe, Naohiro Takaoka, Yoshito Idemoto, et al.Characteristic fungi observed in the fermentation process for Puer tea[J]. International Journal of Food Microbiology, 2008, 124: 199-203.
[21] I.Y Sengun, DB Yaman, SA Gonul, et al. Mycotoxins and mould contamination in cheese: a review[J]. World Mycotoxin Journal, 2008, 1(3): 291-298.
[22] F Lund, O Filtenborg, J C Frisvad.Associated mycoflora of cheese[J]. Food Microbiology, 1995, 12: 173-180.
[23] Nolwenn Hymery, Floriane Masson, Georges Barbier, et al.Cytotoxicity and immunotoxicity of cyclopiazonic acid on human cells[J]. Toxicology in Vitro, 2014, 28: 940-947.
[24] S Marin, AJ Ramos, G Cano-Sancho, et al. Mycotoxins: Occurrence, toxicology, and exposure assessment[J]. Food and Chemical Toxicology, 2013, 60: 218-237.
[25] SD Stoev, SVitanov, G Anguelov, et al.Experimental mycotoxic nephropathy in pigs provoked by a diet containing ochratoxin a and penicillic acid[J]. Veterinary Research Communications, 2001, 25: 205-223.
[26] Doris Haas, Bettina Pfeifer, Christoph Reiterich, et al.Identification and quantification of fungi and mycotoxins from Pu-erh tea[J]. International Journal of Food Microbiology, 2013, 166: 316-322.
[27] 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, 110.
[28] AHMET ERDOGAN, SELAHATTIN SERT.Mycotoxin-forming ability of two penicillium roqueforti strains in blue moldy tulum cheese ripened at various temperatures[J]. Journal of Food Protection, 2004, 67(3): 533-535.
[29] Noreddine Benkerroum.Mycotoxins in dairy products: a review[J]. International Dairy Journal, 2016, 62: 63-75.
[30] Markus Schmidt-Heydt, Corinna E.Rüfer, Ahmed Abdel-Hadi, et al. The production of aflatoxin B1 or G1 by Aspergillus parasiticus at various combinations of temperature and water activity is related to the ratio of aflS to aflR expression[J]. Mycotoxin Research, 2010, 26(4): 241-246.
[31] Jonathan H Williams, Timothy D Phillips, Pauline E Jolly, et al.Human aflatoxicosis in developing countries: a review of toxicology, exposure, potential health consequences, and interventions[J]. Am J Clin Nutr, 2004, 80: 1106-1122.
[32] Pratheeba Yogendrarajah, Frank Devlieghere, Emmanuel Njumbe Ediage, et al.Toxigenic potentiality of Aspergillus flavus and aspergillus parasiticus strains isolated from black pepper Assessed by an LC-MS/MS based multi-mycotoxin method[J]. Food Microbiology, 2015, 52: 185-196.
[33] Sana Jawaid, Farah N Talpur, Shafi M Nizamani, et al.Contamination profile of aflatoxin M1 residues in milk supply chain of Sindh, Pakistan[J]. Toxicology Reports, 2015, 2: 1418-1422.
[34] 胥伟, 吴丹, 姜依何, 等. 黑茶微生物研究:从群落组成到安全分析[J]. 食品安全质量检测学报, 2016, 7(9): 3541-3552.
[35] 李亚莉, 康冠宏, 杨丽源, 等. 普洱茶发酵过程中外源接种黄曲霉产毒研究[J]. 茶叶科学, 2014, 34(5): 435-441.
[36] 孙璐西. 普洱茶模拟渥堆试验接种黄曲菌之研究[C]//中国茶叶学会. 第三届海峡两岸茶叶学术研讨会论文集, 2003, 352-357.
[37] 李浩, 谭英智, 陈柱涛, 等. 云南大叶种晒青毛茶提取物对产毒黄曲霉生长及产毒的影响[J]. 现代食品科技, 2014, 31(11): 101-106.
[38] 徐丹, 石伟力, 宋宏新, 等. 茶多酚对黄曲霉生长及产毒能力的影响[J]. 食品与发酵工业, 2014, 40(12): 20-25.
[39] Dutta B K, Dutta S, Nath P K, et al.Mycotoxin production potential of mycoflora in tea [M]//Jain NK, Rahman F, Baker P. Economic crisis in tea industry, Studium Press LLC, 2008: 221-232.
[40] 胥伟, 赵仁亮, 姜依何, 等. 湖南黑毛茶等温吸湿模型建立及霉变安全性研究[J/OL]. 食品科学, 2017. http://www. cnki.net/kcms/ detail/11. 2206. TS.20170303.1431.086.html.
[41] Jin-Yin Wu, Guang-Yu Yang, Jian-Ling Chen, et al.Investigation for Pu-erh tea contamination caused by mycotoxins in a tea market in Guangzhou[J]. Journal of Basic & Applied Sciences, 2014, 10: 349-356.
[42] 陈建玲, 李文学, 杨光宇, 等. 广州某茶叶市场普洱茶中多种生物毒素污染现状调查[J]. 癌变畸变突变, 2011, 23(1): 68-71.
[43] 付朝晖, 黄雪祥, 闵顺耕, 等. 超高效液相色谱法快速测定发酵茶叶中的黄曲霉毒素[J]. 分析试验室, 2009, 28(6): 112-115.
[44] 刘妍, 谭贵良, 刘子雄, 等. 发酵茶中多种真菌毒素超高效液相色谱-串联质谱法的测定[J]. 现代食品科技, 2016, 32(8): 322-327.
[45] 谭志熹, 江俊生, 陈若恒, 等. 免疫亲和柱净化-酶联免疫吸附法检测普洱茶中黄曲霉毒素B1[J]. 预防医学论坛, 2014, 20(6): 413-415.
[46] Daohong Zhang, Peiwu Li, Yang Yang, et al.A high selective immunochromatographic assay for rapid detection of aflatoxin B1 [J]. Talanta, 2011, 85: 736-742.
[47] Wengui Li, Kunlong Xu, Rong Xiao, et al.Development of an HPLC-based method for the detection of aflatoxins in Pu-erh tea[J]. International Journal of Food Properties, 2015, 18(4): 842-848.
[48] Antonia Garrido Frenich, Roberto Romero-González, María del Mar Aguilera-Luiz. Comprehensive analysis of toxics (pesticides, veterinary drugs and mycotoxins) in food by UHPLC-MS[J]. Trends in Analytical Chemistry, 2014, 63: 124-130.
[49] 吴静. 渥堆中普洱茶品质形成及陈化中真菌毒素状况的研究[D]. 南昌: 南昌大学, 2013.
[50] Sofie Monbaliu, Aibo Wu, Dabing Zhang, et al.Multimycotoxin UPLC-MS/MS for tea, herbal infusions and the derived drinkable products[J]. J Agric. Food Chem, 2010, 58: 12664-12671.
[51] B Romagnoli, V Menna, N Gruppioni, et al.Afatoxins in spices, aromatic herbs, herb-teas and medicinal plants marketed in Italy[J]. Food control, 2007, 18: 697-701.
[52] Nampeung Anukul, Kanithaporn Vangnai, Warapa Mahakarnchanakul.Significance of regulation limits in mycotoxin contamination in Asia and risk management programs at the national level[J]. journal of food and drug analysis, 2013, 21: 227-241.
[53] 钱小三. 茶叶基质干扰去除方法及其在农药多残留分析中的应用[D]. 合肥: 安徽农业大学, 2013.
[54] 李亚莉, 邢倩倩, 涂青, 等. 外源接种黄曲霉污染普洱茶安全性研究[J]. 茶叶科学, 2017, 37(5): 513-522.
[55] HZ Mo, H Zhang, QH Wu. Inhibitory effects of tea extract on aflatoxin production by Aspergillus flavus[J]. Letters in Applied Microbiology, 2013, 56: 462-466.
[56] 吴清华. 茶叶中抑制黄曲霉产生的组分及相关特性研究[D]. 杨凌: 西北农林科技大学, 2013.
[57] 张浩. 茶叶发酵过程中的多酚变化及其对黄曲霉产毒的抑制效应[D]. 杨凌: 西北农林科技大学, 2014.
[58] LK Lee, KY Foo.Recent advances on the beneficial use and health implications of Pu-Erh tea[J]. Food Research International, 2013, 53: 619-628.
[59] Van der Merwe KJ, Steyn PS, Fourie L. Ochratoxin A, a toxic metabolite produced by Aspergillus ochraceus Wilh[J]. Nature, 1965, 205(976): 1112-1113.
[60] Antonia Gallo, Kenneth S Bruno, Michele Solfrizzo, et al.New insight in the ochratoxin A biosynthetic pathway by deletion of an nrps gene in Aspergillus carbonarius[J]. Applied & Environmental Microbiology, 2012, 78: 1-37.
[61] European Food Safety Authority. Opinion of the scientific panel on contaminants in the food chain on a request from the commission related to ohratoxin A in food[J]. The EFSA Journal, 2006, 365: 1-56.
[62] Annie Pfohl-Leszkowicz, Richard A.Manderville. Ochratoxin A: an overview on toxicity and carcinogenicity in animals and humans[J]. Mol Nutr Food Res, 2007, 51: 61-99.
[63] IARC Monographs on the Evaluation of Carcinogenic Risks to Humans. Some naturally occurring substances: food items and constituents, heterocyclic aromatic amines and mycotoxins[M]. World Health Organization, 1997.
[64] Jonathan P Harris, Peter G Mantle.Biosynthesis of ochratoxins by Aspergillus ochraceus[J]. Phytochemistry, 2001, 58: 709-716.
[65] Weijun Kong, Riwei Wei, Antonio F Logrieco, et al.Occurrence of toxigenic fungi and determination of mycotoxins by HPLC-FLD in functional foods and spices in China markets[J]. Food Chemistry, 2014, 146: 320-326.
[66] Yan Ma, Shuangmei Duan, Donglian Zhang, et al.Microbial succession and the dynamics of chemical compounds during the solid-state fermentation of Pu-erh tea[J]. Applied Sciences, 2017, 7(166): 2-16.
[67] 周才碧, 陈文品, 赵振军, 等. 普洱茶优势菌株赭曲霉的功能和安全性研究[J]. 食品研究与开发, 2015, 36(24): 160-163.
[68] 莫瑾, 龚强, 周慧平, 等. 高效液相色谱-串联质谱法检测茶叶中的赭曲霉毒素A[J]. 食品安全质量检测学报, 2016, 7(1): 182-187.
[69] Antonio Bottalico, Giancarlo Perrone.Toxigenic Fusarium species and mycotoxins associated with head blight in small-grain cereals in Europe[J]. European Journal of Plant Pathology, 2002, 108: 611-624.
[70] K A Voss, M E Snook.Stability of the mycotoxin deoxynivalenol (DON) during the production of flour-based foods and wheat flake cereal[J]. Food Additives & Contaminants: Part A, 2010, 27(12): 1694-1700.
[71] Nancy J Alexander, Robert H Proctor, Susan P McCormick. Genes, gene clusters, and biosynthesis of trichothecenes and fumonisins in Fusarium[J]. Toxin Reviews, 2009, 28(2/3): 198-215.
[72] 赵仁亮. 茯砖茶加工中微生物演变及对品质形成影响的研究[D]. 长沙: 湖南农业大学, 2012.
[73] 刘妍, 陈坚, 谭贵良, 等. QuEChERS-超高效液相色谱串联质谱法测定发酵黑茶中的10种真菌毒素[J]. 现代食品科技, 2017, 33(7): 280-288, 260.
[74] 中华人民共和国国家卫生和计划生育委员会. GB2761—2017 食品安全国家标准食品中真菌毒素限量[S].
[75] 湖南省农业厅. DB43/T 655—2011 安化黑茶加工通用技术要求[S].
[76] 中华全国供销合作总社. GB/T 30378—2013 紧压茶企业良好规范[S].
[77] 胥伟, 姜依何, 吴丹, 等. 高通量测序研究霉变黑毛茶的真菌多样性[J]. 茶叶科学, 2017, 37(5): 483-492.
[78] 姚栗, 葛媛媛, 王洁淼, 等. 国内外食品用微生物菌种管理进展[J]. 食品与发酵工业, 2014,40(9): 139-143.
[79] 葛媛媛, 姚粟, 赵婷, 等. 欧洲食品安全局食品用微生物菌种的管理概述[J]. 食品与发酵工业, 2014, 40(6): 142-146.
[80] 刘文丽, 程池, 姚粟, 等. 韩国食品用微生物菌种管理现状[J]. 食品与发酵工业, 2015, 41(11): 237-242.
[81] ANON. Regulation (EC) No 258/97 of the European Parliament and of the Council of 27 January 1997 concerning novel foods and novel food ingredients[J]. Official Journal of the European Communities, 1997: L043: 1-7.
[82] Safety demonstrations of MFC in fermented food products[J]. Bulletin of the International Dairy Federation, 2012, 455: 1-62.
[83] 赵婷, 姚粟, 葛媛媛, 等. 美国食品工业用菌种法规标准简介[J]. 食品与发酵工业, 2014, 40(4): 108-113.
[84] LEUSCHNER R G K, ROBINSON T, HUGAS M, et al. Qualified presumption of safety (QPS): a generic risk assessment approach for biological agents notified to the European Food Safety Authority (EFSA)[J]. Trends in Food Science and Technology, 2010, 21: 425-435.
[85] Europe Novel Food Task Force ILSI. The safety assessment of novel foods and concepts to determine their safety in use[J]. International Journal of Food Sciences, 2003, 54: S1-S32.
[86] 姚粟, 于学健, 白飞荣, 等. 中国传统发酵食品用微生物菌种名单的研究[J]. 食品与发酵工业, 2017, 43(9): 238-258.