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Original Articles

Mycotoxins in corn and wheat silage in Israel

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Pages 1614-1625 | Received 14 Mar 2013, Accepted 02 May 2013, Published online: 21 Jun 2013

References

  • Abia WA, Warth B, Sulyok M, Krska R, Tchana AN, Njobeh PB, Dutton MF, Moundipa PF. 2013. Determination of multi-mycotoxin occurrence in cereals, nuts and their products in Cameroon by liquid chromatography tandem mass spectrometry (LC-MS/MS). Food Contr. 31:438–453.
  • Aldrich DC, Turner WB. 1970. Metabolites of Helminthosporium monoceras: structures of monocerin and related benzopyrans. J Chem Soc Perkin. 1:2598–2600.
  • Anderson RC, Majak W, Rassmussen MA, Callaway TR, Beier RC, Nisbet DJ, Allison MJ. 2005. Toxicity and metabolism of the conjugates of 3-nitropropanol and 3-nitropropionic acid in forages poisonous to livestock. J Agric Food Chem. 53:2344–2350.
  • Auerbach H, Oldenburg E, Weissbach F. 1998. Incidence of Penicillium roqueforti and roquefortine C in silages. J Sci Food Agric. 76:565–572.
  • Bacon CW, Porter JK, Norred W, Leslie JF. 1996. Production of fusaric acid by Fusarium species. Appl Environ Microbiol. 62:4039–4043.
  • Bennett JW, Klich M. 2003. Mycotoxins. Clin Microbiol Rev. 16:497–516.
  • Bentley R. 2000. Mycophenolic acid: a one hundred year odyssey from antibiotic to immunosuppressant. Chem Rev. 100:3801–3826.
  • Boysen ME, Jacobsson KG, Schnürer J. 2000. Molecular identification of species from the Penicillium roqueforti group associated with spoiled animal feed. Appl Environ Microbiol. 66:1523–1526.
  • Bryden W. 2012. Mycotoxin contamination of the feed supply chain: implications for animal productivity and feed security. Animal Feed Sci Technol. 173:134–158.
  • CAST. 1989. Mycotoxins: economic and health risks. Report 116. Ames (IA): Council for Agricultural Science and Technology; p. 99.
  • CAST. 2003. Mycotoxins: risks in plant, animal, and human systems. Ames, IA: Council for Agricultural Science and Technology.
  • Claydon N, Grove JF, Pople M. 1979. Insecticidal secondary metabolic products from the entomogenous fungus Fusarium larvarum. J Invert Pathol. 33:364–367.
  • Conková E, Laciaková A, Kovác G, Seidel H. 2003. Fusarial toxins and their role in animal diseases. Vet J. 165:214–220.
  • Driehuis F, Oude Elferink SJ. 2000. The impact of the quality of silage on animal health and food safety: a review. Vet Q. 22:212–216.
  • Driehuis F, Spanjer MC, Scholten JM, te Giffel MC. 2008a. Occurrence of mycotoxins in feedstuffs of dairy cows and estimation of total dietary intakes. J Dairy Sci. 91:4261–4271.
  • Driehuis F, Spanjer MC, Scholten JM, TeGiffel MC. 2008b. Occurrence of mycotoxins in maize, grass and wheat silage for dairy cattle in the Netherlands. Food Addit Contam B. 1:41–50.
  • Dunn JJ, Lee LS, Ciegler A. 1982. Mutagenicity and toxicity of aflatoxin precursors. Environ Mutagen. 4:19–26.
  • Eckard S, Wettstein FE, Forrer HR, Vogelgsang S. 2011. Incidence of Fusarium species and mycotoxins in silage maize. Toxins. 3:949–967.
  • EFSA Panel on Contaminants in the Food Chain. 2011. Scientific opinion on the risks for animal and public health related to the presence of Alternaria toxins in feed and food. EFSA J. 9:2407–2504.
  • Elix JA. 1996. Biochemistry and secondary metabolites. In: Nash TH, editor. Lichen biology. Cambridge (UK): Cambridge University Press; p. 154–180.
  • European Commission. 2006a. Commission recommendation (EC) 2006/576. Off J Eur Union. L 229:7.
  • Filek G, Lindner W. 1996. Determination of the mycotoxin moniliformin in cereals by high-performance liquid chromatography and fluorescence detection. J Chromatogr A. 732:291–298.
  • Fink-Gremmels J. 2008. The role of mycotoxins in the health and performance of dairy cows. Vet J. 176:84–92.
  • Fujita T, Inoue K, Yamamoto S, Ikumoto T, Sasaki S, Toyama R, Chiba K, Hoshino Y, Okumoto T. 1994. Fungal metabolites. Part 11. A potent immunosuppressive activity found in Isaria sinclairii metabolite. J Antibiot (Tokyo). 47:208–215.
  • Garon D, Richard E, Sage L, Bouchart V, Pottier D, Lebailly P. 2006. Mycoflora and multimycotoxin detection in corn silage: experimental study. J Agric Food Chem. 54:3479–3484.
  • Ge HM, Song YC, Shan CY, Ye YH, Tan RX. 2005. New and cytotoxic anthraquinones form Pleospora sp. IFB-E006, an endophytic fungus in Imperata cylindrical. Planta Med. 71:1063–1065.
  • He Q, Liu K, Wang S, Hou H, Yuan Y, Wang X. 2012. Toxicity induced by emodin on zebrafish embryos. Drug ChemToxicol. 35:149–154.
  • Hornbogen T, Glinski M, Zocher R. 2002. Biosynthesis of depsipeptide mycotoxins in Fusarium. European J Plant Pathol. 108:713–718.
  • Jahnke GD, Price CJ, Marr MC, Myers CB, George JD. 2004. Developmental toxicity evaluation of emodin in rats and mice. Birth Defects Res B Dev Reprod Toxicol. 71:89–101.
  • Jestoi M, Rokka M, Yli-Mattila T, Parikka P, Rizzo A, Peltonen K. 2004. Presence and concentrations of the Fusarium-related mycotoxins beauvericin, enniatins and moniliformin in Finnish grain samples. Food Addit Contam. 21:794–802.
  • Jizba J, Sedmera P, Zima J, Beran M, Blumauerová M, Kandybin NV, Samoukina GV. 1991. Macrotetrolide antibiotics produced by Streptomyces globisporus. Folia Microbiol (Praha). 36:437–443.
  • Johnson VJ, He Q, Osuchowski MF, Sharma RP. 2004. Disruption of sphingolid homeostasis by myriocin, a mycotoxin, reduces thymic and splenic T-lymphocyte populations. Toxicol. 201:67–75.
  • Kensler TW, Roebuck BD, Wogan GN, Groopman JD. 2011. Aflatoxin: a 50-year odyssey of mechanistic and translational toxicology. Tox Sci. 120:S28–S48.
  • Korosteleva SN, Smith TK, Boermans HJ. 2007. Effects of feedborne Fusarium mycotoxins on the performance, metabolism, and immunity of dairy cows. J Dairy Sci. 90:3867–3873.
  • Lee KE, Kim BH, Lee C. 2010. Occurrence of Fusarium mycotoxin beauvericin in animal feeds in Korea. Animal Feed Sci Technol. 157:190–194.
  • Liu GT, Qian YZ, Zhang P, Dong WH, Qi YM, Guo HT. 1992. Etiologic role of Alternaria alternata in human esophageal cancer. Chin Med J. 105:394–400.
  • Logrieco A, Moretti A, Castella G, Kostecki M, Golinski P, Ritieni A, Chelkowski J. 1998. Beauvericin production by Fusarium species. Appl Environ Microbiol. 64:3084–3088.
  • Logrieco A, Rizzo A, Ferracane R, Ritieni A. 2002. Occurrence of beauvericin and enniatins in wheat affected by Fusarium avenaceum head blight. Appl Environ Microbiol. 68:82–85.
  • Marin S, Ramos AJ, Cano-Sancho G, Sanchis V. 2012. Reduction of mycotoxins and toxigenic fungi in the Mediterranean basin maize chain. Phytopathol Mediterr. 51:93–118.
  • May HD, Wu Q, Blake CK. 2000. Effects of the Fusarium spp. mycotoxins fusaric acid and deoxynivalenol on the growth of Ruminococcus albus and Methanobrevibacter ruminantium. Can J Microbiol. 46:692–699.
  • Miller JD. 1993. The toxicological significance of mixtures of fungal toxins. Afr Newsletter Occup Health Safety. 3:32–38.
  • Miller JD. 2008. Mycotoxins in small grains and maize: old problems, new challenges. Food Addit Contam. 25:219–230.
  • Miyake Y, Kozutsumi Y, Nakamura S, Fujita T, Kawasaki T. 1995. Serine palmitoyltransferase is the primary target of sphingosine-like immunosuppressant, ISP-1/myriocin. Biochem Biophys Res Commun. 211:396–403.
  • Mogensen JM, Sørensen SM, Sulyok M, van der Westhuizen L, Shephard GS, Frisvad JC, Thrane U, Krska R, Nielsen KF. 2011. Single-kernel analysis of fumonisins and other fungal metabolites in maize from South African subsistence farmers. Food Addit Contam Part A. 28:1724–1734.
  • O‘Brien M, Nielsen KF, O‘Kiely P, Forristal PD, Fuller HT, Frisvad JC. 2006. Mycotoxins and other secondary metabolites produced in vitro by Penicillium paneum Frisvad and Penicillium roqueforti Thom isolated from baled grass silage in Ireland. J Agric Food Chem. 54:9268–9276.
  • Ostry V. 2008. Alternaria mycotoxins: an overview of chemical characterization, producers, toxicity, analysis and occurrence in foodstuffs. World Myco J. 1:175–188.
  • Overy DP, Seifert KA, Savard ME, Frisvad JC. 2003. Spoilage fungi and their mycotoxins in commercially marketed chestnuts. Int J Food Microbiol. 88:69–77.
  • Patriarca A, Azcarate MP, Terminiello L, Fernández Pinto V. 2007. Mycotoxin production by Alternaria strains isolated from Argentinean wheat. Int J Food Microbiol. 119:219–222.
  • Pena GA, Pereyra CM, Armando MR, Chiacchiera SM, Magnoli CE, Orlando JL, Dalcero AM, Rosa CA, Cavaglieri LR. 2010. Aspergillus fumigatus toxicity and gliotoxin levels in feedstuff for domestic animals and pets in Argentina. Lett Appl Microbiol. 50:77–81.
  • Pereyra CM, Alonso VA, Rosa CAR, Chiacchiera SM, Dalcero AM, Cavaglieri LR. 2008. Gliotoxin natural incidence and toxigenicity of Aspergillus fumigatus isolated from corn silage and ready dairy cattle feed. World Mycotoxin J. 1:457–462.
  • Pereyra ML, Chiacchiera SM, Rosa CAR, Sager R, Dalcero AM, Cavaglieri L. 2011. Comparative analysis of the mycobiota and mycotoxins contaminating corn trench silos and silo bags. J Sci Food Agric. 91:1474–1481.
  • Porter JK, Bacon CW, Wray EM, Hagler Jr WM. 1995. Fusaric acid in Fusarium moniliforme cultures, corn, and feeds toxic to livestock and the neurochemical effects in the brain and pineal gland of rats. Nat Toxins. 3:91–100.
  • Porter JK, Wray EM, Rimando AM, Stancel PC, Bacon CW, Voss KA. 1996. Lactational passage of fusaric acid from the feed of nursing dams to the neonate rat and effects on pineal neurochemistry in the F1and F2 generations at weaning. J Toxicol Environ Health. 49:161–175.
  • Puel O, Galtier P, Oswald IP. 2010. Biosynthesis and toxicological effects of patulin. Toxins. 2:613–631.
  • Rasmussen RR, Storm IM, Rasmussen PH, Smedsgaard J, Nielsen KF. 2010. Multi-mycotoxin analysis of maize silage by LC-MS/MS. Anal Bioanal Chem. 397:765–776.
  • Rheeder JP, Marasas WF, Vismer HF. 2002. Production of fumonisin analogs by Fusarium species. Appl Environ Microbiol. 68:2101–2105.
  • Richard E, Heutte N, Bouchart V, Garon D. 2009. Evaluation of fungal contamination and mycotoxin production in maize silage. Animal Feed Sci Technol. 148:309–320.
  • Richard E, Heutte N, Sage L, Pottier D, Bouchart V, Lebailly P, Garon D. 2007. Toxigenic fungi and mycotoxins in mature corn silage. Food Chem Toxicol. 45:2420–2425.
  • Rodrigues I, Naehrer K. 2012. Prevalence of mycotoxins in feedstuffs and feed surveyed worldwide in 2009 and 2010. Phytopathol Mediterr. 51:175–192.
  • Roigé MB, Aranguren SM, Riccio MB, Pereyra S, Soraci AL, Tapia MO. 2009. Mycobiota and mycotoxins in fermented feed, wheat grains and corn grains in Southern Buenos Aires province, Argentina. Rev Iberoam Micol. 26:233–237.
  • Santini A, Meca G, Uhlig S, Ritieni A. 2012. Fusaproliferin, beauvericin and enniatins: occurrence in food – a review. World Mycotoxin J. 5:71–81.
  • Schollenberger M, Müller HM, Rüfle M, Suchy S, Plank S, Drochner W. 2006. Natural occurrence of 16 fusarium toxins in grains and feedstuffs of plant origin from Germany. Mycopathologia. 161:43–52.
  • Scott FE, Simpson TJ, Trimble LA, Vederas JC. 1984. Biosynthesis of monocerin. Incorporation of 2H-, 13C-, and 18O-labelled acetates by Drechsler aravenelii. J Chem Soc Chem Commun. 12:756–758.
  • Scudamore KA, Livesey CT. 1998. Occurrence and significance of mycotoxins in forage crops and silage: a review. J Sci Food Agric. 77:1–17.
  • Seglar WJ. 2011. Clinical aspects of mycotoxicosis in breeding dairy cows. Large Anim Rev. 17:260–264.
  • Shah VP, Midha KK, Findlay JWA, Hill HM, Hulse JD, McGilveray IJ, McKay G, Miller KJ, Patnaik RN, Powell ML, et al. 2000. Bioanalytical method validation – a revisit with a decade of progress. Pharm Res. 17:1551–1557.
  • Smith TK, McMillan EG, Castillo JB. 1997. Effect of feeding blends of Fusarium mycotoxin-contaminated grains containing deoxynivalenol and fusaric acid on growth and feed consumption of immature swine. J Anim Sci. 75:2184–2191.
  • Sørensen JL, Nielsen KF, Rasmussen PH, Thrane U. 2008. Development of a LC-MS/MS method for the analysis of enniatins and beauvericin in whole fresh and ensiled maize. J Agric Food Chem. 56:10439–10443.
  • Srinivas G, Babykutty S, Sathiadevan PP, Srinivas P. 2007. Molecular mechanism of emodin action: transition from laxative ingredient to an antitumor agent. Med Res Rev. 27:591–608.
  • Storm IML, Sorensen JL, Rasmussen RR, Nielsen KF, Thrane U. 2008. Mycotoxins in silage. Stewart Posthar Rev. 6:1–12.
  • Streit E, Schatzmayr G, Tassis P, Tzika E, Marin D, Taranu I, Tabuc C, Nicolau A, Aprodu I, Puel O, Oswald IP. 2012. Current situation of mycotoxin contamination and co-occurrence in animal feed-focus on Europe. Toxins. 4:788–809.
  • Sulyok M, Berthiller F, Krska R, Schuhmacher R. 2006. Development and validation of a liquid chromatography/tandem mass spectrometric method for the determination of 39 mycotoxins in wheat and maize. Rapid Commun Mass Spectrom. 20:2649–2659.
  • Sulyok M, Krska R, Schuhmacher R. 2007. A liquid chromatography/tandem mass spectrometric multi-mycotoxin method for the quantification of 87 analytes and its application to semi-quantitative screening of moldy food samples. Anal Bioanal Chem. 389:1505–1523.
  • Sulyok M, Krska R, Schumacher R. 2010. Application of an LC–MS/MS based multi-mycotoxin method for the semi-quantitative determination of mycotoxins occurring in different types of food infected by moulds. Food Chem. 119:408–416.
  • Teller RS, Schmidt RJ, Whitlow LW, Kung Jr L. 2012. Effect of physical damage to ears of corn before harvest and treatment with various additives on the concentration of mycotoxins, silage fermentation, and aerobic stability of corn silage. J Dairy Sci. 95:1428–1436.
  • Uhlig S, Torp M, Jarp J, Parich A, Gutleb AC, Krska R. 2004. Moniliformin in Norwegian grain. Food Addit Contam. 21:598–606.
  • US EPA. 2000. Assigning values to nondetected/non-quantified pesticide residues in human health food exposure assessments [Internet]. Washington, DC: Office of Pesticide Programs US Environmental Protection Agency. [cited 2012 Nov 14]. Available from http://www.epa.gov/oppfead1/trac/science/trac3b012.pdf
  • Van Asselt ED, Azambuja W, Moretti A, Kastelein P, De Rijk TC, Stratakou I. 2012. A Dutch field survey on fungal infection and mycotoxin concentrations in maize. Food Addit Contam A. 29:1556–1565.
  • Van der Fels-Klerx HJ, Olesen JE, Naustvoll LJ, Friocourt Y, Mengelers MJ, Christensen JH. 2012. Climate change impacts on natural toxins in food production systems, exemplified by deoxynivalenol in wheat and diarrhetic shellfish toxins. Food Addit Contam Part A. 29:1647–1659.
  • Van Pamel E, Verbeken A, Vlaemynck G, De Boever J, Daeseleire E. 2011. Ultrahigh-performance liquid chromatographic-tandem mass spectrometric multimycotoxin method for quantitating 26 mycotoxins in maize silage. J Agric Food Chem. 59:9747–9755.
  • Vesonder RF, Tjarks LW, Rohwedder WK, Burmeister HR, Laugal JA. 1979. Equisetin, an antibiotic from NRRL 5537, identified as a derivative of N-methyl-2,4-pyrollidone. J Antibiot (Tokyo). 32:759–761.
  • Walburga von Bargen K, Lohrey L, Cramer B, Humpf HU. 2012. Analysis of the Fusarium mycotoxin moniliformin in cereal samples using 13C2-moniliformin and high-resolution mass spectrometry. J Agric Food Chem. 60:3586–3591.
  • Wang Q, Xu L. 2012. Beauvericin, a bioactive compound produced by fungi: a short review. Molecules. 17: 2367–2377.
  • Warth B, Parich A, Atehnkeng J, Bandyopadhyay R, Schuhmacher R, Sulyok M, Krska R. 2012. Quantitation of mycotoxins in food and feed from Burkina Faso and Mozambique using a modern LC/MS/MS multitoxin method. J Agric Food Chem. 60:9352–9363.
  • Wehner FC, Thiel PG, du Rand M. 1979. Mutagenicity of the mycotoxin emodin in the salmonella/microsome system. Appl Environ Microbiol. 37:658–660.
  • Wilkinson JM. 1999. Silage and animal health. Nat Toxins. 7:221–232.
  • Wilkinson JM, Toivonen MI. 2003. World silage: a survey of forage conservation around the world. Lincoln (UK): Chalcombe Publications.
  • Yiannikouris A, Jouany JP. 2002. Mycotoxins in feeds and their fate in animals: a review. Anim Res. 51:81–99.
  • Zhan J, Wijeratne EM, Seliga CJ, Zhang J, Pierson EE, Pierson 3rd LS, Vanetten HD, Gunatilaka AA. 2004. A new anthraquinone and cytotoxic curvularins of a Penicillium sp. from the rhizosphere of Fallugiaparadoxa of the Sonoran desert. J Antibiot. 57:341–344.

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