| Literature DB >> 31052282 |
Jianbo Qiu1, Jianhong Xu2,3, Jianrong Shi4,5.
Abstract
Wheat Fusarium head blight (FHB), caused by Fusarium species, is a widespread and destructive fungal disease. In addition to the substantial yield and revenue losses, diseased grains are often contaminated with Fusarium mycotoxins, making them unsuitable for human consumption or use as animal feed. As a vital food and feed ingredient in China, the quality and safety of wheat and its products have gained growing attention from consumers, producers, scientists, and policymakers. This review supplies detailed data about the occurrence of Fusarium toxins and related intoxications from the 1980s to the present. Despite the serious situation of toxin contamination in wheat, the concentration of toxins in flour is usually lower than that in raw materials, and food-poisoning incidents have been considerably reduced. Much work has been conducted on every phase of toxin production and wheat circulation by scientific researchers. Regulations for maximum contamination limits have been established in recent years and play a substantial role in ensuring the stability of the national economy and people's livelihoods.Entities:
Keywords: China; Fusarium species; Fusarium toxins; mycotoxicoses; toxin management; wheat
Mesh:
Substances:
Year: 2019 PMID: 31052282 PMCID: PMC6562770 DOI: 10.3390/toxins11050248
Source DB: PubMed Journal: Toxins (Basel) ISSN: 2072-6651 Impact factor: 4.546
Outbreaks of moldy wheat-related food-poisoning incidents in humans since the 1980s.
| Year | Region | Consumer | Victim | Reference |
|---|---|---|---|---|
| 1985 | Lingtao, Gansu | 1549 | 1351 | [ |
| 1985 | Puyang, Henan | 217 | 101 | [ |
| 1988 | Yulin, Guangxi | 160 | 40 | [ |
| 1988 | Tongshan, Jiangsu | 9 | 9 | [ |
| 1989 | Zigong, Sichuan | 7 | 7 | [ |
| 1989 | Baihe, Shannxi | 5016 | 701 | [ |
| 1991 | Xincai, Henan | 840 | 479 | [ |
| 1991 | Linquan, Anhui | 93 | 67 | [ |
| 1991 | Fuyang, Anhui | 354 | 263 | [ |
| 1991 | Xuyi, Jiangsu | 141 | 117 | [ |
| 1996 | Putian, Fujian | 3 | 2 | [ |
| 2000 | Kedong, Helongjiang | 6 | 6 | [ |
| 2003 | Dongming, Shandong | 4 | 4 | [ |
| 2003 | Baihe, Shannxi | 5043 | 701 | [ |
Occurrence of Fusarium toxins in high KBD or cancer incidence regions.
| Year | Regions | Sample Size | Toxin | Incidence (%) | Average Content (µg/kg) | Content (µg/kg) | Reference |
|---|---|---|---|---|---|---|---|
| 1989 | Shannxi | 5 | DON | 100.0 | 514.0 | 343.0–1051.0 | [ |
| 3ADON | 100.0 | 363.0 | 15.0–731.0 | ||||
| NIV | 100.0 | 183.0 | 17.0–373.0 | ||||
| ZEN | 40.0 | 15.0 | 5.0–25.0 | ||||
| Shannxi | 5 | DON | 100.0 | 184.0 | 73.0–410.0 | ||
| 3ADON | 0 | 0 | 0 | ||||
| NIV | 60.0 | 10.0 | 8.0–13.0 | ||||
| ZEN | 0 | 0 | 0 | ||||
| Inner Mongolia | 6 | DON | 100.0 | 101.0 | |||
| 3ADON | 50.0 | 24.0 | |||||
| NIV | 33.3 | 9.0 | |||||
| ZEN | 0 | 0 | 0 | ||||
| Inner Mongolia | 7 | DON | 100.0 | 75.0 | |||
| 3ADON | 28.6 | 57.0 | |||||
| NIV | 0 | 0 | 0 | ||||
| ZEN | 0 | 0 | 0 | ||||
| 2010 | Qinghai | 23 | DON | 87.0 | 302.0 | [ | |
| Qinghai | 27 | DON | 29.6 | 199.0 | |||
| 2010 | Gansu | 20 | DON | 75.0 | 142.8 | 12.8–205.3 | [ |
| 20 | DON | 80.0 | 137.4 | 28.5–180.7 | |||
| 20 | DON | 75.0 | 127.3 | 20.6–176.1 | |||
| Shandong | 20 | DON | 10.0 | 12.9 | 10.2–15.6 | ||
| 20 | DON | 20.0 | 18.1 | 8.9–27.3 | |||
| 1989 | Henan Linxian | 15 | DON | 46.7 | 59.0 | 7.0–309.0 | [ |
| 15 | NIV | 0 | 0 | 0 | |||
| Henan Shangqiu | 15 | DON | 46.7 | 18.0 | 7.0–36.0 | ||
| 15 | NIV | 46.7 | 15.0 | 13.0–21.0 | |||
| 1995 | Linxian, Henan | 25 | DON | 92.0 | 83.0 | 9.0–193.0 | [ |
| 15ADON | 0 | 0 | |||||
| NIV | 29.0 | 13.0–50.0 | |||||
| Henan Shangqiu | 15 | DON | 60.0 | 40.0 | 15.0–125.0 | ||
| 15ADON | 0 | 0 | |||||
| NIV | 12.0 | 4.0–22.0 | |||||
| 1997 | Linxian, Henan | 15 | DON | 66.7 | 28.0 | 0–138.0 | |
| 15ADON | 0 | 0 | |||||
| NIV | 95.0 | ||||||
| Henan Shangqiu | 15 | DON | 0 | 0 | 0 | ||
| 15ADON | 0 | 0 | |||||
| NIV | 0 | 0 | |||||
| 2000 | Linxian, Henan | 9 | DON | 77.8 | 732.0 | 0–1614.0 | [ |
| 11 | NIV | 100.0 | 666.0 | 190.0–1476.0 | |||
| Cixian, Hebei | 18 | DON | 100.0 | 1031.0 | 176.0–4280.0 | ||
| 18 | NIV | 100.0 | 731.0 | 102.0–2105.0 | |||
| 2010 | Shandong | 20 | DON | 100.0 | 195.2 | 70.1–302.8 | [ |
| 20 | 100.0 | 184.3 | 85.4–287.5 | ||||
| Shandong | 20 | 10.0 | 12.9 | 10.2–15.6 | |||
| 20 | 20.0 | 18.1 | 18.9–27.3 |
The ratio of F. graminearum and F. asiaticum strains with varied chemotypes in partial studies in China.
| Year | Region | Sample Sizes | Fg15ADON | Fg3ADON | FgNIV | Fa3ADON | FaNIV | Fa15ADON | Reference |
|---|---|---|---|---|---|---|---|---|---|
| 1975–1980 | China | 2450 | 94.5% | [ | |||||
| 1975–1981 | Hunan | 185 | 97.2% | [ | |||||
| 1978–1981 | Fujian | 1081 | 99.1% | [ | |||||
| 1985 | Henan | 241 | 98.0% | [ | |||||
| 1985–1987 | Ningxia | 350 | 63.8% | [ | |||||
| 1991–1992 | Qinghai | 27 | 56.5% | [ | |||||
| 1993–1995 | Qinghai | 1005 | 54.3% | [ | |||||
| 1999 | China | 299 | 22.7% | 51.8% | 17.7% | 7.7% | [ | ||
| 2000 | Zhejiang | 208 | 42.3% | 57.7% | [ | ||||
| 2007–2014 | Henan | 327 | 89.0 % | 6.7% | 0.9% | 0.3% | [ | ||
| 2008 | China | 444 | 38.1% | 38.5% | 21.9% | 1.6% | [ | ||
| 2008 | Sichuan | 90 | 6.7% | 3.3% | 3.3% | 25.56% | 52.2% | [ | |
| Chongqing | 6 | 33.3% | 66.7% | ||||||
| Hubei | 201 | 12.4% | 8.0% | 0.5% | 58.7% | 4.5% | 10.5% | ||
| Henan | 25 | 100.0% | |||||||
| Anhui | 42 | 45.2% | 7.1% | 4.8% | 35.7% | 7.1% | |||
| Jiangsu | 69 | 15.9% | 10.1% | 63.8% | 10.1% | ||||
| 2008–2010 | Jiangsu | 292 | 5.5% | 84.6% | 9.9% | [ | |||
| Anhui | 71 | 21.1% | 59.2% | 19.7% | |||||
| Henan | 88 | 89.8% | 8.0% | 2.3% | |||||
| Hebei | 23 | 100.0% | |||||||
| Shandong | 31 | 83.8% | 12.9% | 3.2% | |||||
| Hubei | 25 | 92.0% | 8.0% | ||||||
| 2008 | Fujian | 59 | 76.0% | 24.0% | [ | ||||
| 2009 | 100 | 4.0% | 81.0% | 15.0% | |||||
| 2009 | Hubei | 168 | 9.5% | 69.6% | 6.6% | 7.7% | [ | ||
| 2011–2012 | Shandong | 95 | 94.7% | 4.4% | 1.1% | [ | |||
| 2011 | Jiangsu/Anhui | 350 | 4.0% | 4.0% | 82.9% | 4.3% | 4.9% | [ | |
| 2012 | Jiangsu/Anhui | 541 | 8.7% | 1.5% | 75.1% | 9.4% | 5.4% | ||
| 2013 | Northeast China | 118 | 64.4% | [ | |||||
| 2014 | Sichuan | 103 | 18.5% | 7.8% | 71.8% | 1.0% | [ | ||
| Hubei | 57 | 87.7% | 7.0% | 5.3% | |||||
| Anhui | 93 | 1.1% | 87.1% | 10.8% | 1.1% | ||||
| Jiangsu | 67 | 3.0% | 89.6% | 7.5% | |||||
| Fujian | 217 | 2.8% | 10.6% | 67.7% | 18.9% | ||||
| 2014–2015 | Shandong | 120 | 84.2% | 4.2% | 1.7% | 10.0% | [ | ||
| 2016 | Northeast China | 84 | 44.1% | 3.6% | 1.2% | 4.8% | 22.6% | [ | |
Recent mycotoxin survey data in wheat grains in China.
| Year | Regions | Sample Sizes | Toxins | Incidence (%) | Average Content (µg/kg) | Range (µg/kg) | Exceedance Rate (%) | Reference |
|---|---|---|---|---|---|---|---|---|
| 1983 | Anhui | 40 | DON | 100.0 | 1161.4 | 22.5 | [ | |
| 1986 | 182 | 44.5 | 312.9 | 7.1 | ||||
| 1989 | 81 | 100.0 | 2640.0 | 0–13,300.0 | 81.5 | |||
| 1991 | 26 | 100.0 | 2105.8 | 57.7 | ||||
| 1986 | Anhui | 150 | DON | 53.3 | 340.0 | 0–4000.0 | [ | |
| 83 | ZEN | 22.9 | 32.0 | 0–300.0 | ||||
| 1991 | Anhui | 10 | DON | 100.0 | 15,900.0 | 2000.0–50,000.0 | 100.0 | [ |
| 2007–2008 | Anhui | 25 | D3G | 64.0 | 45.5 | 2.2–238.4 | [ | |
| NIV | 72.0 | 53.3 | 1.8–229.9 | |||||
| 3ADON | 44.0 | 6.3 | 1.8–18.4 | |||||
| 15ADON | 12.0 | 2.6 | 2.3–3.0 | |||||
| DON | 100.0 | 46.3 | 3.7–169.3 | 0 | ||||
| ZEN | 20.0 | 12.9 | 3.3–36.1 | 0 | ||||
| 2010 | Anhui | 21 | DON | 90.5 | 2701.0 | 521.0–4975.0 | 81.0 | [ |
| 2012 | Anhui | 22 | DON | 95.4 | 4501.6 | 465.0–9930.0 | [ | |
| 2015 | Anhui | 370 | DON | 100.0 | 17,753.8 | 109.6–86,255.1 | [ | |
| D3G | 99.5 | 414.4 | 28.3–2957.2 | |||||
| NIV | 87.8 | 250.2 | 0–2399.7 | |||||
| 3ADON | 80.0 | 39.6 | 0–284.1 | |||||
| 15ADON | 67.3 | 13.2 | 0–184.7 | |||||
| ZEN | 68.7 | 25.7 | 0–1091.4 | 5.1 | ||||
| 1986 | Jiangsu | 202 | DON | 26.7 | 40.0 | 0–400.0 | 0 | [ |
| 54 | ZEN | 64.8 | 51.0 | 0–300.0 | ||||
| 1991 | Jiangsu | 7 | DON | 71.4 | 2900.0 | 1560.0–5000.0 | [ | |
| 2007–2008 | Jiangsu | 24 | D3G | 62.5 | 59.3 | 1.7–179 | [ | |
| NIV | 29.2 | 12.4 | 1.9–29.5 | |||||
| 3ADON | 29.2 | 5.5 | 2.1–11.3 | |||||
| 15ADON | 4.2 | 2.4 | 0–2.4 | |||||
| DON | 95.8 | 73.0 | 2.8–408.3 | 0 | ||||
| ZEN | 16.7 | 3.9 | 1.7–6.6 | 0 | ||||
| 2010 | Jiangsu | 35 | DON | 88.6 | 1221.0 | 259.0–3900.0 | 51.4 | [ |
| 2010 | Jiangsu | 41 | DON | 100.0 | 1075.2 | 151.6–2550.2 | 44.0 | [ |
| ZEN | 46.3 | 216.0 | 10.1–3048.9 | 9.8 | ||||
| 2011 | 64 | DON | 32.8 | 82.1 | 14.5–1579.8 | 3.1 | ||
| ZEN | 0 | 0 | 0 | 0 | ||||
| 2012 | 75 | DON | 96.0 | 306.7 | 16.3–41157.1 | 48.0 | ||
| ZEN | 5.3 | 3.2 | 50.2–72.6 | 2.6 | ||||
| 2012 | Jiangsu | 62 | DON | 95.1 | 3260.9 | 260.0–11,200.0 | [ | |
| 2013 | Jiangsu | 66 | ZEN | 37.9 | 11.8 | 6.5–110.0 | [ | |
| 2014 | 66 | 46.9 | 22.0 | 15.0–194.3 | ||||
| 2015 | 70 | 54.3 | 39.3 | 25.1–307.3 | ||||
| 2015 | Jiangsu | 443 | DON | 100.0 | 2087.0 | 166.0–14,960.0 | [ | |
| D3G | 96.0 | 545.0 | 83.0–5092.0 | |||||
| 2016 | 439 | DON | 100.0 | 2601.0 | 12.0–18,061.0 | |||
| D3G | 97.0 | 819.0 | 0–6708.0 | |||||
| 1985 | Henan | 19 | DON | 100.0 | 17,500.0 | 1.0–40,000.0 | 100.0 | [ |
| ZEN | 10.5 | 375.0 | 250.0–500.0 | 10.5 | ||||
| 1985 | Henan | 191 | DON | 99.0 | 923.0 | 15.9–3337.8 | 47.1 | [ |
| 191 | NIV | 81.0 | 128.2 | 12.5–608.6 | ||||
| 92 | ZEN | 100.0 | 15.3 | 3.3–149.9 | ||||
| 1986 | Henan | 100 | DON | 74.0 | 14.2 | 6.7–175.4 | 0 | |
| NIV | 4.0 | 9.5–49.0 | ||||||
| 1986 | Henan | 97 | DON | 57.7 | 40.0 | 0–400.0 | 0 | [ |
| 60 | ZEN | 11.7 | 8.0 | 0–50.0 | 0 | |||
| 1991 | Henan | 35 | DON | 100.0 | 1500.0 | 1000.0–3500.0 | 100.0 | [ |
| 1991 | Henan | 24 | DON | 0-3500.0 | 41.7 | [ | ||
| 1998 | Henan | 31 | DON | 96.8 | 2850.0 | 177.0–14,000.0 | [ | |
| 15ADON | 64.5 | 365.0 | 59.0–1800.0 | |||||
| NIV | 3.2 | 578.0 | 0–578.0 | |||||
| ZEN | 67.7 | 209.0 | 9.0–1400.0 | |||||
| 28 | DON | 89.3 | 223.0 | 53.0–1240.0 | ||||
| 15ADON | 0 | 0 | 0 | |||||
| NIV | 0 | 0 | 0 | |||||
| ZEN | 25.0 | 108.0 | 1.0–217.0 | |||||
| 1999 | 34 | DON | 85.3 | 294.0 | 74.0–941.0 | 0 | ||
| 15ADON | 0 | 0 | 0 | |||||
| NIV | 0 | 0 | 0 | |||||
| ZEN | 58.8 | 23.0 | 5.0–113.0 | |||||
| 2007–2008 | Henan | 28 | D3G | 75.0 | 24.6 | 2.8–171.1 | [ | |
| NIV | 0 | 0 | 0 | |||||
| 3ADON | 14.3 | 3.6 | 0–4.9 | |||||
| 15ADON | 46.4 | 4.1 | 0–17.7 | |||||
| DON | 100.0 | 74.6 | 2.9–363.6 | 0 | ||||
| ZEN | 17.9 | 3.3 | 0–8.1 | 0 | ||||
| 1986 | Shanghai | 100 | DON | 100.0 | 340.0 | 0–2000.0 | [ | |
| ZEN | 33.0 | 11.0 | 0–780.0 | |||||
| 1995 | Shanghai | 100 | DON | 53.0 | 280.9 | 0–1919.7 | 10.0 | [ |
| NIV | 35.0 | 103.4 | 0–1428.0 | |||||
| 2009–2012 | Shanghai | 198 | DON | 80.8 | 64.7 | 0.5–604.0 | 0 | [ |
| 2011–2012 | Shanghai | 38 | 3ADON | 100.0 | 10.3 | 0.7–35.2 | ||
| 15-DON | 100.0 | 1.4 | 0.5–6.2 | |||||
| 2007–2008 | Hebei | 25 | D3G | 60.0 | 88.9 | 5.6–388.0 | [ | |
| NIV | 24.0 | 12.3 | 1.8–57.5 | |||||
| 3ADON | 48.0 | 12.5 | 1.6–70.8 | |||||
| 15ADON | 88.0 | 236.1 | 1.5–1256.2 | |||||
| DON | 80.0 | 167.3 | 1.7–636.2 | 0 | ||||
| ZEN | 56.0 | 126.1 | 4.7–930.4 | |||||
| 1986 | Gansu | 135 | DON | 57.0 | 2050.0 | 0–20,000.0 | [ | |
| 101 | ZEN | 40.6 | 15.0 | 0–300.0 | ||||
| 2013 | Shannxi | 81 | DON | 96.1 | 515.3 | 79.0–3030.0 | 8.64 | [ |
| Ningxia | 26 | 100.0 | 804.4 | 71.0–2330.0 | 26.92 | |||
| Gansu | 52 | 86.5 | 294.4 | 0–1798.0 | 1.92 | |||
| Xinjiang | 22 | 0 | 0 | 0 | 0 | |||
| 2000–2016 | Tibet | 199 | DON | 0 | 0 | 0 | 0 | [ |
| ZEN | 0.5 | 0.5 | ||||||
| 2007–2008 | Sichuan | 30 | D3G | 0 | 0 | 0 | [ | |
| NIV | 73.3 | 17.7 | 3.0–39.1 | |||||
| 3ADON | 0 | 0 | 0 | |||||
| 15ADON | 0 | 0 | 0 | |||||
| DON | 50.0 | 16.4 | 3.0–47.8 | 0 | ||||
| ZEN | 20.0 | 5.1 | 2.0–8.8 | 0 | ||||
| 2007–2008 | Chongqing | 30 | D3G | 73.3 | 72.5 | 9.8–235.3 | [ | |
| NIV | 100.0 | 199.5 | 7.8–1035.8 | |||||
| 3ADON | 60.0 | 9.1 | 1.9–34.6 | |||||
| 15ADON | 46.7 | 9.6 | 2.1–71.0 | |||||
| DON | 100.0 | 133.3 | 12.0–590.7 | 0 | ||||
| ZEN | 80.0 | 199.4 | 2.3–3425.1 | |||||
| 2016 | Heilongjiang | 55 | DON | 0 | 0 | 0 | 0 | [ |
| 1984 | China | 29 | DON | 51.7 | 401.7 | 0–2450.0 | 6.9 | [ |
| NIV | 37.9 | 267.3 | 0–6644.0 | |||||
| ZEN | 44.8 | 6.8 | 0–32.0 | 0 | ||||
| 2003 | China | 48 | ZEN | 100.0 | 98.0 | 0–470.0 | 72.9 | [ |
| 2005 | China | 190 | DON | 66.3 | 50.0 | 0–612.7 | 0 | [ |
| 2007 | China | 229 | DON | 38.0 | 73.9 | 0-600.8 | 0 | [ |
| ZEN | 16.0 | 1.6 | 0–72.4 | |||||
| 2008 | China | 41 | DON | 97.6 | 425.5 | 9.8 | [ | |
| ZEN | 68.3 | 152.4 | 41.5 | |||||
| 2010–2013 | China | 681 | DON | 66.5 | 72.8 | 774.8–14276.0 | [ | |
| AcDON | 66.8 | 74.7 | 797.7–14604.2 |
Recent mycotoxin survey data in wheat flour in China.
| Year | Regions | Toxins | Sample Sizes | Incidence (%) | Average Content (µg/kg) | Range (µg/kg) | Exceedance Rate (%) | Reference |
|---|---|---|---|---|---|---|---|---|
| 1983–1991 | Anhui | DON | 132 | 92.4 | 1065.6 | 40.9 | [ | |
| 1988 | Hebei | DON | 50 | 54.0 | 75.0 | 0–173.0 | 0 | [ |
| 1988–1989 | Anhui | DON | 100 | 90.0 | 1008.6 | 43.0 | [ | |
| 1988–1989 | Shanghai | DON | 25 | 100.0 | 79.8 | 0 | [ | |
| 25 | 80.0 | 58.1 | 0 | |||||
| 1989 | Anhui | DON | 84 | 100.0 | 1334.0 | 58.3 | [ | |
| 1989 | Jiangsu | DON | 50 | 96.0 | 577.7 | 18.0 | [ | |
| 1996 | Shanghai | DON | 30 | 86.7 | 101.2 | 0 | [ | |
| NIV | 56.7 | 53.3 | ||||||
| 2009 | China | DON | 292 | 100.0 | 178.4 | 0.5–2995.1 | 1.7 | [ |
| ZEN | 53.4 | 5.1 | 0.3–55.0 | 0 | ||||
| NIV | 88.4 | 8.1 | 0.3–218.2 | |||||
| 2010 | China | DON | 125 | 96.8 | 179.0 | 0.1–1016.8 | 0.8 | [ |
| 3ADON | 64.0 | 2.2 | 0.1–19.8 | |||||
| 15ADON | 95.2 | 4.2 | 0.1–25.5 | |||||
| D3G | 83.2 | 10.1 | 0.1–52.8 | |||||
| NIV | 86.4 | 10.3 | 0.1–76.5 | |||||
| ZEN | 72.8 | 3.5 | 0.1–52 | 0 | ||||
| 2010 | China | DON | 143.0 | 4.2 | [ | |||
| 2011 | 147.0 | 2.2 | ||||||
| 2012 | 658.0 | 20.7 | ||||||
| 2013 | 5678 | 58.7 | 317.0 | 0–56,100 | 4.7 | |||
| 2010–2013 | China | DON | 3848 | 71.7 | 126.0 | 218.0–6922.0 | [ | |
| AcDON | 3860 | 71.8 | 91.5 | 219.2–6922.0 | ||||
| 2010- | Shandong | DON | 359 | 97.2 | 84.3 | 0–825.9 | 0 | [ |
| 3ADON | 11.1 | 0.1 | 0–3.6 | |||||
| 15ADON | 14.2 | 0.5 | 0–11.1 | |||||
| NIV | 40.4 | 1.4 | 0–23.9 | |||||
| D3G | 33.4 | 1.1 | 0–15.7 | |||||
| ZEN | 0 | 0 | 0 | 0 | ||||
| 2010- | Hubei | DON | 26 | 69.2 | 129.4 | 0–2133.2 | 3.9 | [ |
| D3G | 30.8 | <20.0 | 0–252.4 | |||||
| 2010- | Hebei | DON | 348 | 91.4 | 240.0 | 0–1129.0 | 0.6 | [ |
| 15ADON | 34.2 | 1.9 | 0–6.0 | |||||
| NIV | 16.4 | 3.2 | 0–19.1 | |||||
| ZEN | 13.2 | 8.4 | 0–98.8 | 0.3 | ||||
| D3G | 5.5 | 1.9 | 0–3.9 | |||||
| 3ADON | 2.1 | 3.2 | 0–2.6 | |||||
| 2011 | Hebei | DON | 31 | 16.1 | 137.0 | 2.4–639.0 | 0 | [ |
| 3ADON | 6.4 | 0.7 | 0.6–0.8 | |||||
| 15ADON | 0 | 0 | ||||||
| 2012 | DON | 348 | 91.4 | 240.0 | 11.5–1130.0 | 0.6 | ||
| 3ADON | 34.2 | 1.9 | 1.1–6.0 | |||||
| 15ADON | 3.2 | 2.1 | 1.5–2.6 | |||||
| 2013 | DON | 293 | 99.6 | 156.0 | 6.2–878.0 | 0 | ||
| 3ADON | 0 | 0 | 0 | |||||
| 15ADON | 0 | 0 | 0 | |||||
| 2013 | China | DON | 50 | 30.0 | 58.1 | 0–862.0 | 0 | [ |
| 2013 | China | DON | 158 | 84.2 | 4084.8 | 23.5–25,375 | 68.0 | [ |
| D3G | 24.1 | 13.9 | 8.7–33.3 | |||||
| 3ADON | 84.2 | 14.9 | 10.6–177.5 | |||||
| 15ADON | 60.8 | 14.7 | 13.4–23.5 | |||||
| NIV | 22.2 | 26.9 | 1.8–94.0 | |||||
| ZEN | 77.2 | 85.8 | 13–158 | 24.0 | ||||
| 2013 | Fujian | DON | 59 | 89.8 | 11.2 | [ | ||
| ZEN | 11.9 | 0 | ||||||
| 2013 | Guangdong | DON | 30 | 86.7 | 87.9 | 0–860.8 | 0 | [ |
| 2013–2016 | Shannxi | DON | 504 | 86.9 | 311.0 | 6.0–3670.0 | 6.7 | [ |
| 3ADON | 59.9 | 33.7 | 21.9–535.0 | |||||
| 15ADON | 8.3 | 5.7 | 4.5–105.0 | |||||
| ZEN | 0.2 | 2.6 | 0–31.0 | 0 | ||||
| 2013 | Tibet | DON | 85 | 27.1 | 47.0 | 0–630.0 | 0 | [ |
| ZEN | 74.0 | 5.4 | 0–13.9 | 0 | ||||
| 2014 | Xinjiang | DON | 84 | 51.2 | 20.3 | 8.7–152.6 | 0 | [ |
| 15ADON | 28.6 | 15.3 | 5.6–159.2 | |||||
| 2014 | Henan | DON | 65 | 69.2 | 218.3 | 0 | [ | |
| 2014 | Hebei | DON | 293 | 99.7 | 156.0 | 0–878.4 | 0 | [ |
| 2014–2015 | Henan | DON | 295 | 8.8 | 14.4 | 0–750.0 | 0 | [ |
| 3ADON | 0 | 0 | 0 | 0 | ||||
| 15ADON | 0 | 0 | 0 | 0 | ||||
| ZEN | 0 | 0 | 0 | 0 | ||||
| 2016–2017 | Jiangsu | DON | 35 | 100.0 | 308.9 | 44.6–924.6 | 0 | [ |
| 3ADON | 28.6 | 7.1 | 0–54.9 | |||||
| 15ADON | 17.1 | 3.2 | 0–23.7 | |||||
| ZEN | 17.1 | 1.2 | 0–16.9 | 0 | ||||
| DON | 50 | 62.0 | 91.9 | 0–401.8 | 0 | |||
| 3ADON | 6.0 | 1.1 | 0–21.0 | |||||
| 15ADON | 2.0 | 0.3 | 0–14.7 | |||||
| ZEN | 0 | 0 | 0 | 0 | ||||
| 2017 | China | DON | 75 | 85.3 | 455.7 | 12.5–1285.4 | 20.0 | [ |
| 15 | 100.0 | 426 | 51.6–1308.9 | 13.3 |
Limits of DON and ZEN relate to cereals for food and feed in China.
| Food Category | Toxin | Limit (μg/kg) | Standard Code |
|---|---|---|---|
| cereal and its product: | DON | 1000 | GB2761 |
| plant feedstuffs | 5000 | GB13078 | |
| calf, lamb, concentrate supplement in lactation period | 1000 | ||
| other concentrate supplement | 3000 | ||
| pig formula feed | 1000 | ||
| other formula feed | 3000 | ||
| cereal and its product: wheat, wheat flour, corn, corn flour (corn gluten meal, corn flake) | ZEN | 60 | GB2761 |
| corn and its processed products | 500 | GB13078 | |
| corn bran, corn gluten feed, corn steep powder, corn distiller’s grains products | 1500 | ||
| other plant feedstuffs | 1000 | ||
| calf, lamb, concentrate supplement in lactation period | 500 | ||
| piglet formula feed | 150 | ||
| gilt formula feed | 100 | ||
| other pig formula feed | 250 | ||
| other formula feed | 500 |
Current detection standard for DON and ZEN by Chinese regulations.
| Standard Code | Standard Category | Standard Name | Method | Toxin |
|---|---|---|---|---|
| GB 5009.111-2016 | Mandatory | Determination of deoxynivalenol and its acetylated | Isotope-dilution LC-MS/MS; Immunoaffinity chromatography-HPLC; thin layer chromatography | DON |
| GB/T 30956-2014 | Recommendatory national standard | Determination of deoxynivalenol in feeds | Immunoaffinity chromatography-HPLC | |
| GB/T 8381.6-2005 | Method for determination of deoxynivalenol in formula feed | Thin layer chromatography | ||
| SN/T 3137-2012 | Recommendatory industry standard | Determination of deoxynivalenol, 3-acety-ldeoxynivalenol, 15-O-4-acetyl-deoxynivalenol, and their metabolite in food for export | HPLC-MS/MS | |
| SN/T 3136-2012 | Determination of aflatoxins, ochratoxin, fumonisin B1, deoxynivalenol, T-2 and HT-2 toxins in peanut, grains, and their products for export | HPLC-MS/MS | ||
| LS/T 6110-2014 | Recommendatory industry standard | Detection of deoxynivalenol in cereal | Rapid quantitative method of colloidal gold technique | |
| LS/T 6113-2015 | Recommendatory industry standard | Detection of deoxynivalenol in grain | Rapid quantitative method of colloidal gold technique | |
| LS/T 6127-2017 | Recommendatory industry standard | Detection of deoxynivalenol in grain | UPLC | |
| LS/T 6133-2018 | Recommendatory industry standard | Determination of 16 mycotoxins in cereal | HPLC-MS/MS | |
| KJ 201702 | Rapid detection standard | Rapid detection of deoxynivalenol in food | Colloidal gold immunochromatographic | |
| GB 5009.209-2016 | Mandatory | Determination of zearalenone in food | HPLC; HPLC-MS/MS; Immunoaffinity chromatography-fluorescence spectrometer | ZEN |
| GB/T 19540-2004 | Recommendatory national standard | Determination of zearalenone in feeds | Thin layer chromatography; Enzyme-linked immunosorbent assay | |
| GB/T 28716-2012 | Determination of zearalenone in feeds | HPLC method with immunoaffinity column clean-up | ||
| SN/T 3235-2012 | Recommendatory industry standard | Determination of multi-groups of banned drug residues in foodstuffs of Animal origin for export | LC-MS/MS | |
| SN/T 4058-2014 | Recommendatory industry standard | Determination of residues of zeranols in foodstuffs of animal origin for export | HPLC and HPLC-MS/MS method with Immunoaffinity column clean-up | |
| NY/T 2071-2011 | Recommendatory agriculture standard | Determination of aflatoxins, zearalenone, and T-2 in feed | LC-MS/MS | |
| LS/T 6109-2014 | Recommendatory agriculture standard | Detection of zearalenone in cereal | Rapid method of colloidal gold technique | |
| LS/T 6112-2015 | Recommendatory agriculture standard | Detection of zearalenone in grain | Rapid quantitative method of colloidal gold technique | |
| LS/T 6129-2017 | Recommendatory agriculture standard | Determination of zearalenone in grains | UPLC-MS/MS | |
| LS/T 6133-2018 | Recommendatory industry standard | Determination of 16 mycotoxins in cereal | HPLC-MS/MS |