[1] |
SANZANI S M, REVERBERI M, GEISEN R. Mycotoxins in harvested fruits and vegetables: insights in producing fungi, biological role, conducive conditions, and tools to manage postharvest contamination[J]. Postharvest Biology and Technology, 2016, 122: 95-105.
|
[2] |
胡冰, 时浩楠, 胡本伦, 等. 食品中黄曲霉毒素检测方法研究进展[J]. 中国农业科技导报, 2022, 24(1): 106-118.
|
[3] |
赵晓野, 王儒, 王婷, 等. 黄曲霉毒素的危害及检测方法研究进展[J]. 食品安全导刊, 2022(3): 155-158.
|
[4] |
李璇. 温度调控黄曲霉菌生长和产毒的代谢特征研究[D]. 兰州: 甘肃农业大学, 2021.
|
[5] |
王龑, 管乐, 韩紫怡, 等. 我国花生黄曲霉毒素污染影响因素分析[J]. 食品安全质量检测学报, 2021, 12(19): 7818-7825.
|
[6] |
NAEEM I, ISMAIL A, REHMAN A U, et al. Prevalence of aflatoxins in selected dry fruits, impact of storage conditions on contamination levels and associated health risks on Pakistani consumers[J]. International Journal of Environmental Research and Public Health, 2022, 19(6): 3404.
|
[7] |
范楷, 祭芳, 徐剑宏, 等. 长三角地区市场常见农产品中40种真菌毒素的污染状况和特征分析[J]. 中国农业科学, 2021, 54(13): 2870-2884.
|
[8] |
史文景. 柑橘和果汁中链格孢霉毒素检测技术研究[D]. 重庆: 西南大学, 2014.
|
[9] |
李志霞, 聂继云, 闫震, 等. 果品主要真菌毒素污染检测、风险评估与控制研究进展[J]. 中国农业科学, 2017, 50(2): 332-347.
|
[10] |
王琦, 蔡瑞, 王周利, 等. 果蔬制品中链格孢霉毒素检测与控制研究进展[J]. 食品安全质量检测学报, 2020, 11(1): 114-120.
|
[11] |
邢家溧, 张子庚, 郑睿行, 等. 固相萃取-超高效液相色谱-串联质谱法检测婴幼儿奶粉中的7种链格孢霉毒素[J]. 色谱, 2022, 40(2): 156-164.
|
[12] |
安玉会, 卢荣华, 冯文舟. 林县交链孢霉毒素-交链孢醇单甲醚和交链孢烯的协同毒性和致畸作用研究[J]. 癌症, 1988, 7(1): 54-55.
|
[13] |
RYCHLIK M, LEPPER H, WEIDNER C, et al. Risk evaluation of the Alternaria mycotoxin tenuazonic acid in foods for adults and infants and subsequent risk management[J]. Food Control, 2016, 68: 181-185.
|
[14] |
ASAM S, KONITZER K, RYCHLIK M. Precise determination of the Alternaria mycotoxins alternariol and alternariol monomethyl ether in cereal, fruit and vegetable products using stable isotope dilution assays[J]. Mycotoxin Research, 2011, 27(1): 23-28.
|
[15] |
SOMMA S, POSE G, PARDO A, et al. AFLP variability, toxin production, and pathogenicity of Alternaria species from Argentinean tomato fruits and puree[J]. International Journal of Food Microbiology, 2011, 145(2/3): 414-419.
|
[16] |
BRZONKALIK K, HÜMMER D, SYLDATK C, et al. Influence of pH and carbon to nitrogen ratio on mycotoxin production by Alternaria alternata in submerged cultivation[J]. AMB Express, 2012, 2(1): 28.
|
[17] |
POSE G, PATRIARCA A, KYANKO V, et al. Water activity and temperature effects on mycotoxin production by Alternaria alternata on a synthetic tomato medium[J]. International Journal of Food Microbiology, 2010, 142(3): 348-353.
|
[18] |
PUNTSCHER H, KÜTT M L, SKRINJAR P, et al. Tracking emerging mycotoxins in food: development of an LC-MS/MS method for free and modified Alternaria toxins[J]. Analytical and Bioanalytical Chemistry, 2018, 410(18): 4481-4494.
|
[19] |
FAN Y Y, LIU F J, HE W Z, et al. Screening of multi-mycotoxins in fruits by ultra-performance liquid chromatography coupled to ion mobility quadrupole time-of-flight mass spectrometry[J]. Food Chemistry, 2022, 368: 130858.
|
[20] |
OSTRY V, MALIR F, TOMAN J, et al. Mycotoxins as human carcinogens-the IARC Monographs classification[J]. Mycotoxin Research, 2017, 33(1): 65-73.
|
[21] |
王刘庆, 焦健, 王蒙. 葡萄及其制品中赭曲霉毒素A的污染与控制研究进展[J]. 食品安全质量检测学报, 2022, 13(2): 612-619.
|
[22] |
SCHMIDT-HEYDT M, MAGAN N, GEISEN R. Stress induction of mycotoxin biosynthesis genes by abiotic factors[J]. FEMS Microbiology Letters, 2008, 284(2): 142-149.
|
[23] |
SERRA R, MENDONÇA C, ABRUNHOSA L, et al. Determination of ochratoxin A in wine grapes: comparison of extraction procedures and method validation[J]. Analytica Chimica Acta, 2004, 513(1): 41-47.
|
[24] |
WANG Y J, NIE J Y, YAN Z, et al. Occurrence and co-occurrence of mycotoxins in nuts and dried fruits from China[J]. Food Control, 2018, 88: 181-189.
|
[25] |
YUSEFI J, VALAEE M, NAZARI F, et al. Occurrence of ochratoxin A in grape juice of Iran[J]. Iranian Journal of Pharmaceutical Research, 2018, 17(1): 140-146.
|
[26] |
王利平, 王丽霞, 刘保友, 等. 苹果及其制品中展青霉素研究进展[J]. 落叶果树, 2022, 54(3): 39-43.
|
[27] |
邓健康, 吴曈, 扈婧, 等. 食品中展青霉素的前处理及检测方法研究进展[J]. 食品研究与开发, 2021, 42(21): 184-191.
|
[28] |
薛华丽, 毕阳, 宗元元, 等. 果蔬及其制品中真菌毒素的污染与检测研究进展[J]. 食品科学, 2016, 37(23): 285-290.
|
[29] |
ZONG Y Y, LI B Q, TIAN S P. Effects of carbon, nitrogen and ambient pH on patulin production and related gene expression in Penicillium expansum[J]. International Journal of Food Microbiology, 2015, 206: 102-108.
|
[30] |
VIDAL A, OUHIBI S, GHALI R, et al. The mycotoxin patulin: an updated short review on occurrence, toxicity and analytical challenges[J]. Food and Chemical Toxicology, 2019, 129: 249-256.
|
[31] |
LEE T P, SAKAI R, MANAF N A, et al. High performance liquid chromatography method for the determination of patulin and 5-hydroxymethylfurfural in fruit juices marketed in Malaysia[J]. Food Control, 2014, 38: 142-149.
|
[32] |
ZAIED C, ABID S, HLEL W, et al. Occurrence of patulin in apple-based-foods largely consumed in Tunisia[J]. Food Control, 2013, 31(2): 263-267.
|
[33] |
JI X F, LI R, YANG H, et al. Occurrence of patulin in various fruit products and dietary exposure assessment for consumers in China[J]. Food Control, 2017, 78: 100-107.
|
[34] |
MENEELY J P, RICCI F, VAN EGMOND H P, et al. Current methods of analysis for the determination of trichothecene mycotoxins in food[J]. Trends in Analytical Chemistry, 2011, 30(2): 192-203.
|
[35] |
TOLOSA J, FONT G, MAÑES J, et al. Nuts and dried fruits: natural occurrence of emerging Fusarium mycotoxins[J]. Food Control, 2013, 33(1): 215-220.
|
[36] |
MERHEJ J, RICHARD-FORGET F, BARREAU C. The pH regulatory factor Pac1 regulates Tri gene expression and trichothecene production in Fusarium graminearum[J]. Fungal Genetics and Biology, 2011, 48(3): 275-284.
|
[37] |
TANG Y M, XUE H L, BI Y, et al. A method of analysis for T-2 toxin and neosolaniol by UPLC-MS/MS in apple fruit inoculated with Trichothecium roseum[J]. Food Additives & Contaminants: Part A, 2015, 32(4): 480-487.
|
[38] |
吴秀. 链格孢菌侵染对西兰花品质的影响及致病机理研究[D]. 武汉: 华中农业大学, 2017.
|
[39] |
HE J W, ZHOU T, YOUNG J C, et al. Chemical and biological transformations for detoxification of trichothecene mycotoxins in human and animal food chains: a review[J]. Trends in Food Science & Technology, 2010, 21(2): 67-76.
|
[40] |
YOUNG J C, ZHU H H, ZHOU T. Degradation of trichothecene mycotoxins by aqueous ozone[J]. Food and Chemical Toxicology, 2006, 44(3): 417-424.
|
[41] |
伍小红, 李建科, 惠伟. 臭氧处理对苹果保鲜的影响研究[J]. 食品科技, 2006, 31(7): 252-254.
|
[42] |
MECA G, BLAIOTTA G, RITIENI A. Reduction of ochratoxin A during the fermentation of Italian red wine Moscato[J]. Food Control, 2010, 21(4): 579-583.
|
[43] |
FARZANEH M, SHI Z Q, GHASSEMPOUR A, et al. Aflatoxin B1 degradation by Bacillus subtilis UTBSP1 isolated from pistachio nuts of Iran[J]. Food Control, 2012, 23 (1): 100-106.
|
[44] |
李娇. 链格孢菌侵染对芒果贮藏品质及生理的影响[D]. 福州: 福建农林大学, 2016.
|
[45] |
JOHN J M, JINAP S, HANANI Z A N, et al. The effects of different packaging materials, temperatures and water activities to control aflatoxin B1 production by Aspergillus flavus and A. parasiticus in stored peanuts[J]. Journal of Food Science and Technology, 2019, 56(6): 3145-3150.
|
[46] |
XING J L, ZHANG Z G, ZHENG R H, et al. Simultaneous detection of seven Alternaria toxins in mixed fruit puree by ultra-high-performance liquid chromatography-tandem mass spectrometry coupled with a modified QuEChERS[J]. Toxins, 2021, 13(11): 808.
|
[47] |
TAGHDISI S M, DANESH N M, RAMEZANI M, et al. A novel electrochemical aptasensor for ochratoxin a sensing in spiked food using strand-displacement polymerase reaction[J]. Talanta, 2021, 223: 121705.
|