首页> 美国卫生研究院文献>other >Combinational Inhibitory Action of Hedychium spicatum L. Essential Oil and γ-Radiation on Growth Rate and Mycotoxins Content of Fusarium graminearum in Maize: Response Surface Methodology
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Combinational Inhibitory Action of Hedychium spicatum L. Essential Oil and γ-Radiation on Growth Rate and Mycotoxins Content of Fusarium graminearum in Maize: Response Surface Methodology

机译:辣根Hedychium spicatum L.精油和γ-辐射对玉米禾本科镰刀菌生长速率和霉菌毒素含量的联合抑制作用:响应面方法

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摘要

Nowadays, contamination of agricultural commodities with fungi and their mycotoxins is one of the most annoying with regard to food safety and pose serious health risk. Therefore, there is a requisite to propose suitable mitigation strategies to reduce the contamination of fungi and mycotoxins in agricultural commodities. In the present study, combinational inhibitory effect of Hedychium spicatum L. essential oil (HSEO) and radiation was established on growth rate, production of deoxynivalenol (DON) and zearalenone (ZEA) by Fusarium graminearum in maize grains. The HSEO was obtained from rhizomes by hydrodistillation technique and chemical composition was revealed by GC-MS analysis. A total of 48 compounds were identified and major compounds were 1,8-cineole (23.15%), linalool (12.82%), and β-pinene (10.06%). The discrete treatments of HSEO and radiation were effective in reducing the fungal growth rate and mycotoxins content, and the complete reduction was noticed at 3.15 mg/g of HSEO and 6 kGy of radiation. Response surface methodology (RSM) was applied to evaluate the combinational inhibitory effect of HSEO and radiation treatments on fungal growth rate and mycotoxins content. A total of 13 experiments were designed with distinct doses of HSEO and radiation by central composite design (CCD) of Stat-Ease Design-Expert software. In combinational approach, complete reductions of fungal growth, DON, and ZEA content were noticed at 1.89 mg/g of HSEO and 4.12 kGy of radiation treatments. The optimized design concluded that combinational treatments of HSEO and radiation were much more effective in reducing the fungal growth and mycotoxins content compared to their discrete treatments (p < 0.05). Responses of the design were assessed by second-order polynomial regression analysis and found that quadratic model was well fitted. The optimized design has larger F-value and adequate precision, smaller p-value, decent regression coefficients (R2) and found statistically significant (p < 0.05). In addition, correlation matrix, normal plot residuals, Box-Cox, and actual vs. predicted plots were endorsed that optimized design was accurate and appropriate. The proposed combinational decontamination technique could be highly applicable in agriculture and food industry to safeguard the food and feed products from fungi and mycotoxins.
机译:如今,真菌和霉菌毒素对农产品的污染在食品安全方面是最令人讨厌的问题之一,并构成严重的健康风险。因此,有必要提出适当的缓解策略,以减少农产品中真菌和霉菌毒素的污染。在本研究中,建立了辣根Hedychium spicatum L.精油(HSEO)和辐射的联合抑制作用,对禾谷镰孢(Fusarium graminearum)玉米籽粒的生长速率,脱氧雪腐烯醇(DON)和玉米赤霉烯酮(ZEA)的产生具有抑制作用。通过水蒸馏技术从根茎中获得HSEO,并通过GC-MS分析揭示化学组成。总共鉴定出48种化合物,主要化合物为1,8​​-桉树脑(23.15%),芳樟醇(12.82%)和β-pine烯(10.06%)。 HSEO和放射线的离散处理有效地降低了真菌的生长速度和真菌毒素含量,在3.15 mg / g HSEO和6 kGy放射线下,完全降低。应用响应面方法(RSM)评估HSEO和放疗对真菌生长速率和霉菌毒素含量的联合抑制作用。通过Stat-Ease Design-Expert软件的中央复合设计(CCD),设计了13个不同剂量的HSEO和辐射实验。在组合方法中,在1.89 mg / g的HSEO和4.12 kGy的辐射处理下,发现真菌生长,DON和ZEA含量完全降低。优化的设计得出的结论是,与单独的处理相比,HSEO和放射线的组合处理在减少真菌生长和真菌毒素含量方面更为有效(p <0.05)。通过二阶多项式回归分析评估了设计的响应,发现二次模型非常合适。优化的设计具有较大的F值和足够的精度,较小的p值,体面的回归系数(R 2 ),并且具有统计学意义(p <0.05)。此外,还认可了相关矩阵,正态图残差,Box-Cox以及实际与预测图之间的关系,从而证明优化设计是正确且适当的。所提出的组合式去污技术可以高度适用于农业和食品工业,以保护食品和饲料产品免受真菌和霉菌毒素的侵害。

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