首页> 外文期刊>International Journal of Food Microbiology >Risk management of ochratoxigenic fungi and ochratoxin A in maize grains by bioactive EVOH films containing individual components of some essential oils
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Risk management of ochratoxigenic fungi and ochratoxin A in maize grains by bioactive EVOH films containing individual components of some essential oils

机译:含有一些精油个体成分的生物活性EVOH薄膜玉米籽粒玉米籽粒的风险管理

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摘要

Aspergillus steynii and Aspergillus tubingensis are possibly the main ochratoxin A (OTA) producing species in Aspergillus section Circumdati and section Nigri, respectively. OTA is a potent nephrotoxic, teratogenic, embryotoxic, genotoxic, neurotoxic, carcinogenic and immunosuppressive compound being cereals the first source of OTA in the diet. In this study bioactive ethylene-vinyl alcohol copolymer (EVOH) films containing cinnamaldehyde (CINHO), linalool (LIN), isoeugenol (IEG) or citral (CIT) which are major components of some plant essential oils (EOs) were produced and tested against A. steynii and A. tubingensis growth and OTA production in partly milled maize grains. Due to the favourable safety profile, these bioactive compounds are considered in the category "GRAS". The study was carried out under different water activity (0.96 and 0.99 a(w)), and temperature (24 and 32 degrees C) conditions. ANOVA showed that class of film, fungal species, aw and temperature and their interactions significantly affected growth rates (GR), ED50 and ED50 and the doses for total fungal growth inhibition and OTA production. The most effective EVOH films against both species were those containing CINHO. ED50, ED50 and doses for total growth and OTA inhibition were 165-405, 297-614, 333-666 mu g of EVOHCINHO/plate (25 g of maize grains), respectively, depending on environmental conditions. The least efficient were EVOH-LIN films. ED50, ED50 and doses for total growth and OTA inhibition were 2800 & 3330, & 3330 and & 3330 mu g of EVOH-LIN/plate (25 g of maize grains), respectively. The effectiveness of the bioactive films increased with increasing doses. Overall, A. tubingensis was less sensitive to treatments than A. steynii. Depending on the species, a(w) and temperature affected GR and OTA production in a different way. In A. steynii cultures, optimal growth occurred at 0.96 a(w), and 32 degrees C while optimal OTA production happened at 0.99 a and 32 C. In A. tubingensis cultures optimal growth happened at 0.99 a(w) and 32 degrees C, although the best conditions for OTA production were 0.99 a(w), and 24 degrees C. Thus, these species can be very competitive in warm climates and storage conditions. The EVOH-CINHO films followed by EVOH-IEG and EVOH-CIT films, designed in this study and applied in vapour phase, can be potent antifungal agents against A. steynii and A. tubingensis and strong inhibitors of OTA biosynthesis in maize grains at very low doses. This is the first study on the impact that interacting environmental conditions and bioactive films containing individual components of EOs have on the growth of these ochratoxigenic fungi and on OTA production in maize grains.
机译:曲霉菌术和曲霉菌管是可能的主要核毒素A(OTA)在曲霉菌截面和截面中产生物种。 OTA是一种有效的肾毒性,致畸,胚胎毒性,遗传毒性,神经毒性,致癌性和免疫抑制化合物,其饮食中的第一次OTA源。在该研究中,生产并测试含有肉桂醛(Cinho),Linalool(Lin),异戊二烯酚(IEG)或柠檬醛(CIT)的生物活性乙烯 - 乙烯醇共聚物(EVOH)薄膜,其是一些植物精油(EOS)的主要成分。 A. Steynii和A. Tubingensis的生长和OTA生产在部分碾磨的玉米谷物中。由于安全性有利,这些生物活性化合物被认为是“GRAS”类别。该研究在不同的水处理(0.96和0.99A(W))下进行,温度(24和32℃)条件。 ANOVA表明,薄膜,真菌物种,AW和温度及其相互作用显着影响了生长速率(GR),ED50和ED50以及用于总体真菌生长抑制和OTA生产的剂量。对两种物种的最有效的EVOH薄膜是含Cinho的薄膜。 ED50,ED50和总增长的剂量和OTA抑制剂分别为165-405,297-614,333-666μg,分别根据环境条件,分别为Evohcinho /板(25g玉米颗粒)。效率最低是EVOH-LIN薄膜。 ED50,ED50和总增长的剂量和OTA抑制为2800& GT; 3330,& 3330和& 3330 mu g分别为EVOH-LIN /板(25克玉米晶粒)。随着剂量的增加,生物活性膜的有效性增加。总体而言,A. Tubingensis对治疗不太敏感而不是A. Steynii。根据物种,(W)和温度影响GR和OTA以不同方式产生的。在A.TETEMNII培养物中,最佳生长发生在0.96A(w)和32℃,而最佳的OTA生产发生在0.99a和32℃。在A.管道培养物中,最佳的增长发生在0.99 a(w)和32℃时发生最佳增长,尽管OTA生产的最佳条件为0.99A(w)和24℃。因此,这些物种在暖气候和储存条件下可以非常竞争。 EVOH-Cinho薄膜随后是EVOH-IEG和EVOH-CIT薄膜,在本研究中设计并在气相中施用于气相,可以是针对A. Steynii和A. Tumingensis的有效的抗真菌剂,并且在玉米籽粒中的OTA生物合成的强抑制剂低剂量。这是第一次研究含有EOS个体成分的环境条件和生物活性薄膜对这些玉米籽粒中的玉米籽粒的生长和OTA产生的影响。

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