Alternaria toxins in South African sunflower seeds: cooperative study

被引:26
作者
Hickert, Sebastian [1 ,2 ]
Hermes, Lena [1 ]
Mauriz Marques, Lucas Maciel [3 ]
Focke, Christine [1 ]
Cramer, Benedikt [1 ]
Lopes, Norberto Peporine [3 ]
Flett, Bradley [4 ,5 ]
Humpf, Hans-Ulrich [1 ,2 ]
机构
[1] Westfal Wilhelms Univ Munster, Inst Food Chem, Corrensstr 45, D-48149 Munster, Germany
[2] NRW Grad Sch Chem, Wilhelm Klemm Str 10, D-48149 Munster, Germany
[3] Univ Sao Paulo, Fac Ciencias Farmaceut Ribeirao Preto, Dept Fis Quim, BR-14040903 Ribeirao Preto, SP, Brazil
[4] ARC Grain Crops Inst, Private Bag X1251, ZA-2520 Potchefstroom, South Africa
[5] North West Univ, Unit Environm Sci & Management, Private Bag X6001, ZA-2520 Potchefstroom, South Africa
关键词
Alternaria mycotoxins; HPLC-MS/MS; Isolation; Cytotoxicity; Multi-method; Sunflower; PERFORMANCE LIQUID-CHROMATOGRAPHY; MASS-SPECTROMETRIC METHOD; MYCOTOXIN TENUAZONIC ACID; TETRAZOLIUM SALT; ALTERTOXIN-II; HPLC-MS/MS; TOMATO; VALIDATION; BLIGHT; YIELD;
D O I
10.1007/s12550-017-0290-1
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Sunflower seed samples (N = 80) from different sunflower cultivars originating from different localities in South Africa were analyzed for 15 toxins produced by fungi of the genus Alternaria by means of a simple one-step extraction dilute-and-shoot HPLC-MS/MS approach. References for valine-tenuazonic acid (Val-TeA), altenusin (ALTS), and altenuisol (ALTSOH) were isolated from fungal culture extracts and spectroscopically characterized. Additionally, valine-tenuazonic acid was tested regarding its cytotoxicity in comparison with tenuazonic acid (TeA) and showed less activity on HT-29 cells. Furthermore, alternariol monomethyl ether-3-O-beta-D-glucoside (AME-3G) was produced by fermentation of alternariol monomethyl ether (AME) with the fungus Rhizopus oryzae. The seed samples were analyzed both with and without hulls. The method covers the AAL toxins TA(1) and TA(2), altenuene (ALT) and iso-altenuene (iso-ALT), altenuisol, altenusin, altertoxin I (ATX-I) and altertoxin II (ATX-II), alternariol (AOH) and alternariol monomethyl ether, alternariol monomethyl ether-3-O-beta-D-glucoside, tenuazonic acid, allo-tenuazonic acid (allo-TeA) and valine-tenuazonic acid, and tentoxin (TEN). More than 80% of the samples were positive for one or more analytes above the respective limit of detection (0.2-23 mu g/kg). Alternariol, its monomethyl ether, tentoxin, tenuazonic acid, altenuisol, and valine-tenuazonic acid were found in quantifiable amounts. The highest prevalences were found for tentoxin (73% positive, mean content 13.2 mu g/kg, maximum level 130 +/- 0.9 mu g/kg) followed by tenuazonic acid (51% positive, mean content 630 mu g/kg, maximum level 6300 +/- 560 mu g/kg). The obtained data were further analyzed statistically to identify quantitative or qualitative relationships between the levels of Alternaria toxin in the samples.
引用
收藏
页码:309 / 321
页数:13
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