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Mycotoxins Biosynthesized by Plant-Derived Fusarium Isolates / Tvorba Mikotoksina U Vrstama Roda Fusarium Izoliranim Iz Biljaka


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1. Goliński P, Waśkiewicz A, Gromadzka K. Mycotoxins and mycotoxicoses under climatic conditions of Poland. Pol J Vet Sci 2009;12:581-8.Search in Google Scholar

2. Goliński P, Waśkiewicz A, Wiśniewska H, Kiecana I, Mielniczuk E, Gromadzka K, Kostecki M, Bocianowski J, Rymaniak E. Reaction of winter wheat (Triticum aestivum L.) cultivars to infection with Fusarium spp.: mycotoxin contamination in grain and chaff. Food Addit Contam Part A Chem Anal Control Expo Risk Assess 2010;27:1015-24.Search in Google Scholar

3. Waśkiewicz A, Irzykowska L, Karolewski Z, Bocianowski J, Kostecki M, Goliński P, Knaflewski M, Weber Z. Fusarium spp. and mycotoxins present in asparagus spears. Cereal Res Commun 2008;36(Suppl 5):405-8.Search in Google Scholar

4. Logrieco A, Moretti A, Ritieni A, Caiaffa MF, Macchia L. Beauvericin: Chemistry, biology, and significance. In: Upadhyay RK, editor. Advances in microbial toxin research and its biotechnological exploitation. New York: Kluwer Academic; 2002. p. 23-30.10.1007/978-1-4757-4439-2_2Search in Google Scholar

5. Stępień Ł, Chełkowski J. Fusarium head blight of wheat: pathogenic species and their mycotoxins. World Mycotoxin J 2010;3:107-19.10.3920/WMJ2009.1193Search in Google Scholar

6. Chełkowski J, Gromadzka K, Stępień Ł, Lenc L, Kostecki M, Berthiller F. Fusarium species, zearalenone and deoxynivalenol content in preharvest scabby wheat heads from Poland. World Mycotoxin J 2012;5:133-41.10.3920/WMJ2011.1304Search in Google Scholar

7. von Bargen S, Martinez O, Schadock I, Eisold AM, Gossmann M, Buttner C. Genetic variability of phytopathogenic Fusarium proliferatum associated with crown rot in Asparagus officinalis. J Phytopathol 2009;157:446-56.10.1111/j.1439-0434.2008.01525.xSearch in Google Scholar

8. Punja ZK, Wan A, Rahman M, Goswami RS, Barasubiye T, Seifert KA, Levesque CA. Growth, population dynamics, and diversity of Fusarium equiseti in ginseng fields. Eur J Plant Pathol 2008;121:173-84.10.1007/s10658-007-9261-2Search in Google Scholar

9. Stanković S, Lević J, Petrović T, Logrieco A, Moretti A. Pathogenicity and mycotoxin production by Fusariumproliferatum isolated from onion and garlic in Serbia. Eur J Plant Pathol 2007;118:165-72.10.1007/s10658-007-9126-8Search in Google Scholar

10. Stępień Ł, Koczyk G, Waśkiewicz A. FUM cluster divergence in fumonisins-producing Fusarium species. Fungal Biol 2011;115:112-23.10.1016/j.funbio.2010.10.01121315309Search in Google Scholar

11. Stępień Ł, Koczyk G, Waśkiewicz A. Genetic and phenotypic variation of Fusarium proliferatum isolates from different host species. J Appl Genet 2011;52:487-96.10.1007/s13353-011-0059-8318932221796391Search in Google Scholar

12. Stępień Ł, Gromadzka K, Chełkowski J. Polymorphism of mycotoxin biosynthetic genes among Fusarium equiseti isolates from Italy and Poland. J Appl Genet 2012;53:227-36.10.1007/s13353-012-0085-1333448422354659Search in Google Scholar

13. Waśkiewicz A, Golinski P, Karolewski Z, Irzykowska L, Bocianowski J, Kostecki M, Weber Z. Formation of fumonisins and other secondary metabolites by Fusariumoxysporum and F. proliferatum: a comparative study. Food Addit Contam Part A Chem Anal Control Expo Risk Assess 2010;27:608-15.Search in Google Scholar

14. Karolewski Z, Waśkiewicz A, Irzykowska L, Bocianowski J, Kostecki M, Goliński P, Knaflewski M, Weber Z. Fungi presence and their mycotoxins distribution in asparagus spears. Pol J Environ Stud 2011;20:911-9.Search in Google Scholar

15. Weber Z, Kostecki M, Bargen von S, Gossmann M, Waśkiewicz A, Bocianowski J, Knaflewski M, Buttner C, Goliński P. Fusarium species colonizing spears and forming mycotoxins in field samples of asparagus from Germany and Poland. J Phytopathol 2006;154:209-16.10.1111/j.1439-0434.2006.01085.xSearch in Google Scholar

16. Chełkowski J. Distribution of Fusarium species and their mycotoxins in cereal grains. In: Sinha KK, Bhatnagar D, editors. Mycotoxins in agriculture and food safety. New York (NY): Marcel Dekker Inc,; 1998. p. 45-64.Search in Google Scholar

17. Desjardins AE. Fusarium Mycotoxins: Chemistry, Genetics, and Biology. St. Paul, (MN): American Phytopathological Society Press; 2006.Search in Google Scholar

18. Rheeder JP, Marasas WFO, Vismer HF. Production of fumonisin analogs by Fusarium species. Appl Environ Microbiol 2002;68:2101-5.10.1128/AEM.68.5.2101-2105.200212758611976077Search in Google Scholar

19. Bartok T, Szecsi A, Szekeres A, Mesterhazy A, Bartok M. Detection of new fumonisin mycotoxins and fumonisin-like compounds by reversed-phase high-performance liquid chromatography/electrospray ionization ion trap mass spectrometry. Rapid Commun Mass Spectrom 2006;20:2447-62.10.1002/rcm.260716871522Search in Google Scholar

20. Bartok T, Szekeres A, Szecsi A, Bartok M, Mesterhazy A. A New type of fumonisin series appeared on the scene of food and feed safety. Cereal Res Commun 2008;29(Suppl B):315-9.10.1556/CRC.36.2008.Suppl.B.29Search in Google Scholar

21. Bartok T, Tolgyesi L, Szekeres A, Varga M, Bartha R, Szecsi A, Bartok M, Mesterhazy A. Detection and characterization of twenty-eight isomers of fumonisin B1 (FB1) mycotoxin in a solid rice culture infected with Fusarium verticillioides by reversed-phase high-performance liquid chromatography/ electrospray ionization time-of-flight and ion trap mass spectrometry. Rapid Commun Mass Spectrom 2010;24:35-42.10.1002/rcm.435319960490Search in Google Scholar

22. Waśkiewicz A, Beszterda M, Goliński P. Occurrence of fumonisins in food - an interdisciplinary approach to the problem. Food Control 2012;26:491-9.10.1016/j.foodcont.2012.02.007Search in Google Scholar

23. Brown DW, Butchko AE, Busman M, Proctor RH. The Fusarium verticilioides FUM gene cluster encodes a Zn(II)2Cys6 protein that affects Fum gene expression and fumonisin production. Eucaryot Cell 2007;6:1210-8.10.1128/EC.00400-06195111617483290Search in Google Scholar

24. Soriano JM, Dragacci S. Intake, decontamination and legislation of fumonisins in foods. Food Res Int 2004;37:367-74.10.1016/j.foodres.2004.01.008Search in Google Scholar

25. Logrieco A, Doko B, Moretti A, Frisullo S, Visconti A. Occurrence of fumonisins B1 and B2 in Fusarium proliferatum infected asparagus plants. J Agric Food Chem 2003;46:5201-4.10.1021/jf9804903Search in Google Scholar

26. Desjadrins AE, Busman M, Proctor RH, Stessman R. Wheat kernel black point and fumonisin contamination by Fusariumproliferatum. Food Addit Contam 2007;24:1131-7.10.1080/0265203070151383417886185Search in Google Scholar

27. Voss KA, Smith GW, Haschek WM. Fumonisins: toxicokinetics, mechanism of action and toxicity. Anim Feed Sci Technol 2007;137: 299-325.10.1016/j.anifeedsci.2007.06.007Search in Google Scholar

28. Torres AM, Ramirez ML, Arroyo M, Chulze SN, Magan N. Potential use of antioxidants for control of growth and fumonisin production by Fusarium verticillioides and Fusarium proliferatum on whole maize grain. Int J Food Microbiol 2003;83:319-24.10.1016/S0168-1605(02)00380-XSearch in Google Scholar

29. Moretti A, Logrieco A, Bottalico A, Ritieni A, Randazzo G, Corda P. Beauvericin production by Fusarium subglutinans from different geographical areas. Mycol Res 1995;99:282-6.10.1016/S0953-7562(09)80899-XSearch in Google Scholar

30. Plattner RD, Nelson PE. Production of beauvericin by a strain of F. proliferatum isolated from corn fodder for swine. Appl Environ Microbiol 1994;60:3894-6.10.1128/aem.60.10.3894-3896.19942019067986058Search in Google Scholar

31. Moretti A, Logrieco A, Bottalico A, Ritieni A, Fogliano V, Randazzo G. Diversity in beauvericin and fusaproliferin production by different populations of Gibberella fujikuroi (Fusarium section Liseola). Sydowia 1996;48:45-56.Search in Google Scholar

32. Abdalla, MY, Al-Rokibah A, Moretti A, Mule G. Pathogenicity and toxigenicity of Fusarium proliferatum from date palm in Saudi Arabia. Plant Dis 2000;84:321-4.10.1094/PDIS.2000.84.3.32130841249Search in Google Scholar

33. Macchia L, Caiaffa MF, Fornelli F, Cal L, Nenna S, Moretti A, Logrieco A, Tursi A. Apoptosis induced by the Fusarium mycotoxin beauvericin in mammalian cells. J Appl Genet 2002;43:363-71.Search in Google Scholar

34. Lemmens-Gruber R, Rachoy B, Steininger E, Kouri K, Saleh P, Krska R, Josephs R, Lemmens M. The effect of the Fusarium metabolite beauvericin on electromechanical and physiological properties in isolated smooth and heart muscle preparations of guinea pigs. Mycopathologia 2000;149:5-12.10.1023/A:1007293812007Search in Google Scholar

35. Logrieco A, Bottalico A, Mule G, Moretti A, Perrone G. Epidemiology of toxigenic fungi and their associated mycotoxins for some Mediterranean crops. Eur J Plant Pathol 2003;109:645-67.10.1023/A:1026033021542Search in Google Scholar

36. Moretti A, Belisario A, Tafuri A, Ritieni A, Corazza L, Logrieco A. Production of beauvericin by different races of Fusarium oxysporum f. sp. melonis, the Fusarium wilt agent of muskmelon. Eur J Plant Pathol 2002;108:661-6.10.1023/A:1020674929084Search in Google Scholar

37. Logrieco A, Moretti A, Ritieni A, Chelkowski J, Altomare C, Bottalico A, Randazzo G. Natural occurrence of beauvericin in preharvest Fusarium subglutinans infected corn ears in Poland. J Agric Food Chem 1993;41:2149-52.10.1021/jf00035a061Search in Google Scholar

38. Uhlig S, Jestoi M, Parikka P. Fusarium avenaceum - The North European situation. Int J Food Microbiol 2007;119:17-24.10.1016/j.ijfoodmicro.2007.07.02117884217Search in Google Scholar

39. Leoni LAB, Soares LMV. Survey of moniliformin in corn cultivated in the state of Sao Paulo and in corn products commercialized in the city of Campinas, S.P. Brazil J Microbiol 2003;34:13-5.10.1590/S1517-83822003000100004Search in Google Scholar

40. Bottalico A. Fusarium diseases of cereals, species complex and related mycotoxin profiles. Eur J Plant Pathol 1998;80:85-103.Search in Google Scholar

41. Pineda-Valdes G, Bullerman LB. Thermal stability of moniliformin at varying temperature, pH, and time in an aqueous environment. J Food Prot 2000;63:1598-601.10.4315/0362-028X-63.11.1598Search in Google Scholar

42. Pirrung MC, Nauhaus SK, Singh B. Cofactor-directed, timedependent inhibition of thiamine enzymes by the fungal toxin moniliformin. J Org Chem 1996;61:2592-3.10.1021/jo950451f11667082Search in Google Scholar

43. Kostecki M, Wisniewska H, Giancarlo P, Ritieni A, Golinski P, Chelkowski J, Logrieco A. The effects of cereal substrate and temperature on production of beauvericin, moniliformin and fusaproliferin by Fusarium subglutinans ITEM-1434. Food Addit Contam 1999;16:361-5.10.1080/02652039928384910755127Search in Google Scholar

44. Stępień Ł, Popiel D, Koczyk G, Chełkowski J. Wheatinfecting Fusarium species in Poland - their chemotypes and frequencies revealed by PCR assay. J Appl Genet 2008;49:433-41.10.1007/BF0319564419029692Search in Google Scholar

45. Tamura K, Dudley J, Nei M, Kumar S. MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) software version 4.0. Mol Biol Evol 2007;24:1596-9.10.1093/molbev/msm09217488738Search in Google Scholar

46. Ivić D, Domijan A-M, Peraica M, Miličević T, Cvjetković B. Fusarium spp. contamination of wheat, maize, soybean, and pea in Croatia. Arh Hig Rada Toksikol 2009;60:435-42.10.2478/10004-1254-60-2009-196320061244Search in Google Scholar

47. Bayraktar H, Dolar FT. Molecular identification and genetic diversity of Fusarium species associated with onion fields in Turkey. J Phytopathol 2011;159:28-34.10.1111/j.1439-0434.2010.01715.xSearch in Google Scholar

48. Cramer CS. Breeding and genetics of Fusarium basal rot resistance in onion. Euphytica 2000;115:159-66.10.1023/A:1004071907642Search in Google Scholar

49. Dissanayake MLMC, Tanaka S, Ito S. Fumonisin B1 production by Fusarium proliferatum strains isolates from Allium fistulosum plants and seeds in Japan. Lett Appl Microbiol 2009;48:598-604.10.1111/j.1472-765X.2009.02576.x19416462Search in Google Scholar

50. Dissanayake MLMC, Kashima R, Tanaka S, Ito S. Pathogenic variation and molecular characterization of Fusarium species isolated from wilted Welsh onion in Japan. J Gen Plant Pathol 2009;75:37-45.10.1007/s10327-008-0135-zSearch in Google Scholar

51. Dissanayake MLMC, Kashima R, Tanaka S, Ito S. Genetic diversity and pathogenicity of Fusarium oxysporum isolated from wilted Welsh onion in Japan. J Gen Plant Pathol 2009;75:125-30.10.1007/s10327-009-0152-6Search in Google Scholar

52. Galvan GA, Koning-Boucoiran CFS, Koopman WJM, Burger-Meijer K, Gonzalez PH, Waalwijk C, Kik C, Scholten OE. Genetic variation among Fusarium isolates from onion, and resistance to Fusarium basal rot in related Allium species. Eur J Plant Pathol 2008;121:499-512.10.1007/s10658-008-9270-9Search in Google Scholar

53. Ducan FM, Hellier BC, Lupien SL. First report of Fusariumproliferatum causing rot of garlic bulbs in North America. Plant Pathol 2003;52:426.10.1046/j.1365-3059.2003.00852.xSearch in Google Scholar

54. Sankar NR, Babu GP. First report of Fusarium proliferatum causing rot of garlic bulbs (Allium sativum) in India. Plant Dis 2012;96:290.10.1094/PDIS-08-11-064930731839Search in Google Scholar

55. Hidalgo OB, de Matos AP, Cabral RS, Tussel RT, Arzola M, Santos R, Perez MC. Phytotoxic effect of culture filtrate from Fusarium subglutinans the causal agent of fusariose of pineapple (Ananas comosus (L.) Merr. Euphytica 1998;104:73-7.10.1023/A:1018387210157Search in Google Scholar

56. Jacobs A, van Wyk PS, Marasas WFO, Wingfield BD, Wingfield MJ, Coutinho TA. Fusarium ananatum sp. nov. in the Gibberella fujikuroi species complex from pineapples with fruit rot in South Africa. Fungal Biol 2010;114:515-27.10.1016/j.funbio.2010.03.01320943163Search in Google Scholar

57. Corpas-Hervias C, Melero-Vara JM, Molinero-Ruiz ML, Zurera-Munoz C, Basallote-Ureba MJ. Characterization of isolates of Fusarium spp. Obtained from asparagus in Spain. Plant Dis 2006;90:1441-51.10.1094/PD-90-144130780912Search in Google Scholar

58. Ploetz RC. Fusarium-induced diseases of tropical, perennial crops. Phytopathology 2006;96:648-52.10.1094/PHYTO-96-064818943183Search in Google Scholar

59. Kristensen R, Torp M, Kosiak B, Holst-Jensen A. Phylogeny and toxigenic potential is correlated in Fusarium species as revealed by partial translation elongation factor 1 alpha gene sequences. Mycol Res 2005;109:173-86. 10.1017/S095375620400211415839101Search in Google Scholar

ISSN:
0004-1254
Języki:
Angielski, Slovenian
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Medicine, Basic Medical Science, other