Inhibitory of multiple antifungal components produced by Lactobacillus plantarum K35 on growth, aflatoxin production and ultrastructure alterations of Aspergillus flavus and Aspergillus parasiticus
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Adebayo, 2011, Suspected mode of antimycotic action of brevicin SG1 against Candida albicans and Penicillium citrinum, Food Control, 22, 1814, 10.1016/j.foodcont.2011.04.013
Angsubhakorn, 1989, Minimal dose and time protection by lindane (gamma-isomer of 1,2,3,4,5,6 hexachlorocyclohexane) against liver tumors induced by aflatoxin B1, International Journal of Cancer, 43, 531, 10.1002/ijc.2910430332
Avis, 2007, Antifungal compounds that target fungal membrane: application in plant disease control, Canadian Journal of Plant Pathology, 29, 323, 10.1080/07060660709507478
Aziz, 2007, Control of Fusarium moulds and fumonisin B1 in seeds by gamma-irradiation, Food Control, 18, 1337, 10.1016/j.foodcont.2005.12.013
Batish, 1997, Antifungal attributes of lactic acid bacteria, Critical Reviews in Biotechnology, 17, 209, 10.3109/07388559709146614
Coallier-Ascah, 1985, Interaction between Streptococcus lactis and Aspergillus flavus on production of aflatoxin, Applied and Environmental Microbiology, 49, 163, 10.1128/AEM.49.1.163-167.1985
Coloretti, 2007, Antifungal activity of lactobacilli isolated from salami, FEMS Microbiology Letters, 271, 245, 10.1111/j.1574-6968.2007.00723.x
Dal Bello, 2007, Improvement of the quality and shelf life of wheat bread by fermentation with the antifungal strain Lactobacillus plantarum FST 1.7, Journal of Cereal Science, 45, 309, 10.1016/j.jcs.2006.09.004
Dalié, 2010, Lactic acid bacteria: potential for control of mould growth and mycotoxins: a review, Food Control, 21, 370, 10.1016/j.foodcont.2009.07.011
Dash, 2009, Antibacterial and antilarval-settlement potential and metabolite profiles of novel sponge-associated marine bacteria, Journal of Industrial Microbiology & Biotechnology, 36, 1047, 10.1007/s10295-009-0588-x
Delavenne, 2012, Biodiversity of antifungal lactic acid bacteria isolated from raw milk samples from cow, ewe and goat over one-year period, International Journal of Food Microbiology, 155, 185, 10.1016/j.ijfoodmicro.2012.02.003
De Muynck, 2004, Potential of selected lactic acid bacteria to produce food compatible antifungal metabolites, Microbiological Research, 159, 339, 10.1016/j.micres.2004.07.002
Egal, 2005, Dietary exposure to aflatoxin from maize and groundnut in young children from Benin and Togo, West Africa, International Journal of Food Microbiology, 104, 215, 10.1016/j.ijfoodmicro.2005.03.004
Hassan, 2008, Antifungal activity of Lactobacillus paracasei ssp. Tolerans isolated from a sourdough bread culture, International Journal of Food Microbiology, 121, 112, 10.1016/j.ijfoodmicro.2007.11.038
Herbette, 1984, Mechanisms of fatty acid effects on sarcoplasmic reticulum II. structural changes induced by oleic and palmitic acids, The Journal of Biological Chemistry, 259, 1325, 10.1016/S0021-9258(17)43606-4
Huttunen, 1995, Purification and identification of antimicrobial substances produced by two Lactobacillus casei strains, International Dairy Journal, 5, 503, 10.1016/0958-6946(95)00030-7
Karunaratne, 1990, Inhibition of mold growth and aflatoxin production by Lactobacillus spp, Journal of Food Protection, 53, 230, 10.4315/0362-028X-53.3.230
Kumar, 2013, Purification of an antifungal compound, cyclo (L-Pro-D-Leu) for cereals produced by Bacillus cereus subsp. thuringiensis associated with entomopathogenic nematode, Microbiological Research, 168, 278, 10.1016/j.micres.2012.12.003
Lavermicocca, 2000, Purification and characterization of novel antifungal compounds from the sourdough Lactobacillus plantarum strain 21B, Applied and Environmental Microbiology, 66, 4084, 10.1128/AEM.66.9.4084-4090.2000
Lavermicocca, 2003, Antifungal activity of phenyllactic acid against molds isolated from bakery products, Applied and Environmental Microbiology, 69, 634, 10.1128/AEM.69.1.634-640.2003
Magnusson, 2001, Lactobacillus coryniformis subsp. coryniformis strain Si3 produces a broad-spectrum proteinaceous antifungal compound, Applied and Environmental Microbiology, 67, 1, 10.1128/AEM.67.1.1-5.2001
Magnusson, 2003, Broad and complex antifungal activity among environmental isolates of lactic acid bacteria, FEMS Microbiology Letters, 219, 129, 10.1016/S0378-1097(02)01207-7
National Committee for Clinical Laboratory Standards, 2002
Niku-Paavola, 1999, New types of antimicrobial compounds produced by Lactobacillus plantarum, Journal of Applied Microbiology, 86, 29, 10.1046/j.1365-2672.1999.00632.x
Prema, 2010, Production and characterization of an antifungal compound (3-phenyllactic acid) produced by Lactobacillus plantarum strain, Food Bioprocess Technology, 3, 379, 10.1007/s11947-008-0127-1
Rammanee, 2011, Effects of tropical citrus essential oils on growth, aflatoxin production, and ultrastructure alterations of Aspergillus flavus and Aspergillus parasiticus, Food and Bioprocess Technology, 4, 1050, 10.1007/s11947-010-0507-1
Reddy, 1985, Effect of time, temperature and pH on the growth and production of antimicrobial substance by Streptococcus lactis ssp. diacetylactis S1-67-C, Milchwissenshaft, 40, 346
Ryan, 2009, Quantification of phenyllactic acid in wheat sourdough using high resolution gas chromatography-mass spectrometry, Journal of Agricultural and Food Chemistry, 57, 1060, 10.1021/jf802578e
Sathe, 2007, Antifungal lactic acid bacteria with potential to prolong shelf-life of fresh vegetables, Journal of Applied Microbiology, 103, 2622, 10.1111/j.1365-2672.2007.03525.x
Schillinger, 2010, Inhibition of Penicillium nordicum in MRS medium by lactic acid bacteria isolated from foods, Food Control, 21, 107, 10.1016/j.foodcont.2008.11.010
Schnürer, 2005, Antifungal lactic acid bacteria as biopreservatives, Trends in Food Science and Technology, 16, 70, 10.1016/j.tifs.2004.02.014
Sjögren, 2003, Antifungal 3-hydroxyl fatty acid from Lactobacillus plantarum MiLAB14, Applied and Environmental Microbiology, 69, 7554, 10.1128/AEM.69.12.7554-7557.2003
Ström, 2002, Lactobacillus plantarum MiLAB393 produces the antifungal cyclic dipeptides cyclo(L-Phe-L-Pro) and cyclo(L-Phe-trans-4-OH-L-Pro) and 3-phenyllactic acid, Applied and Environmental Microbiology, 68, 4322, 10.1128/AEM.68.9.4322-4327.2002
Tolouee, 2010, Effect of Matricaria chamomilla L. flower essential oil on the growth and ultrastructure of Aspergillus niger van Tieghem, International Journal of Food Microbiology, 139, 127, 10.1016/j.ijfoodmicro.2010.03.032
Vergopoulou, 2001, Methyl jasmonate stimulates aflatoxin B1 biosynthesis by Aspergillus parasiticus, Journal of Agricultural and Food Chemistry, 49, 3494, 10.1021/jf010074+
Walters, 2004, Antifungal activities of four fatty acids against plant pathogenic fungi, Mycopathologia, 157, 87, 10.1023/B:MYCO.0000012222.68156.2c
Wang, 2012, Genome shuffling of Lactobacillus plantarum for improving antifungal activity, Food Control, 32, 341, 10.1016/j.foodcont.2012.12.020
Yang, 2008, Antifungal activity of Lactobacillus plantarum isolated from kimchi, Korean Journal of Microbiology Biotechnology, 36, 276
Yang, 2010, Purification of a new antifungal compound produced by Lactobacillus plantarum AF1 isolated from kimchi, International Journal of Food Microbiology, 139, 56, 10.1016/j.ijfoodmicro.2010.02.012
