首页> 外文期刊>BioControl: Journal of the International Organization for Biological Control >Effects of temperature and relative humidity on Aflatoxin B1 reduction in corn grains and antagonistic activities against Aflatoxin-producing Aspergillus flavus by a volatile organic compound-producing yeast, Kwoniella heveanensis DMKU-CE82
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Effects of temperature and relative humidity on Aflatoxin B1 reduction in corn grains and antagonistic activities against Aflatoxin-producing Aspergillus flavus by a volatile organic compound-producing yeast, Kwoniella heveanensis DMKU-CE82

机译:温度和相对湿度对黄芪和抗毒素的拮抗活性的黄曲霉毒素B1的影响通过挥发性有机化合物制造酵母,kwoniella heveanensis dmku-ce82

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摘要

As shown in our previous study, Kwoniella heveanensis DMKU-CE82, a volatile organic compound (VOC)-producing yeast, demonstrated promising antagonistic activity against aflatoxin-producing strain of Aspergillus flavus. This yeast's volatile organic compounds (VOCs) could reduce Aflatoxin B1 (AFB1) in corn grains. In the current study, we evaluated the effect of temperatures and relative humidity on AFB1 reduction during grain storage when co-incubated with this VOC-producing yeast. The VOCs produced by K. heveanensis DMKU-CE82 could promote reduction of AFB1 to less than 20 part per billion (ppb) in the fungal contaminated corn grains under most storage conditions at 35 degrees C. The major VOCs produced by 2-, 4-, and 6-day-old yeast cultures were closely matched to 3-methyl-1-butanol, 2-methyl-1-butanol, hydrazine-1-1-dimethyl, and butanoic acid-3-methyl. In addition, this yeast strain had the ability to produce beta-1,3-glucanase, amylase, cellulase, chitinase, siderophores, and biofilms. Scanning electron microscopy also confirmed the antagonistic activity of K. heveanensis DMKU-CE82 as it caused structural damage to conidia and inhibited the development of mycelia and conidiophores in both direct fungal-yeast interaction and the VOC method in corn grains. These results demonstrated that this yeast strain could be a promising biocontrol agent against aflatoxin-producing fungi in agricultural products.
机译:如我们以前的研究所示,Kwoniella Heveanensis DMKu-Ce82,一种挥发性有机化合物(VOC) - 发霉的酵母,表现出对曲霉毒素的黄曲霉毒素产生菌株的有前途拮抗活性。该酵母的挥发性有机化合物(VOC)可以在玉米颗粒中减少黄曲霉毒素B1(AFB1)。在目前的研究中,我们评估了温度和相对湿度在与该VOC生产酵母共育时谷物储存期间的AFB1减少的影响。 K. Heveanensis DMKU-CE82产生的VOC可以促进在35摄氏度的大多数储存条件下在真菌污染的玉米粒度下促进AFB1至少于20亿(PPB)。2-,4-的主要VOC ,6天龄酵母培养物与3-甲基-1-丁醇,2-甲基-1-丁醇,肼-1-1-二甲基和丁酸-3-甲基密切相关。此外,该酵母菌株具有生产β-1,3-葡聚糖酶,淀粉酶,纤维素酶,几丁质酶,施胶团和生物膜的能力。扫描电子显微镜也证实了K.Heveanensis DMKU-CE82的拮抗活性,因为它对分类产生了结构损伤,并且抑制了直接真菌 - 酵母相互作用和玉米颗粒中的霉菌和霉菌的发育。这些结果表明,该酵母菌株可以是对农产品生产黄毒素的真菌的有前途的生物控制剂。

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