Development of biochar-impregnated alginate beads for the delivery of biocontrol agents for peanut aflatoxin

Jiachang Feng, Jianpeng Dou, Wenfu Wu
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引用次数: 1

Abstract

Abstract The competitive inhibition of aflatoxigenic fungi by non-aflatoxigenic Aspergillus flavus has proved to be an effective method to prevent and control peanut aflatoxin contamination, and most of the currently used inoculum carriers are grains. In this study, the reliability and efficiency of replacing grain kernels with novel chitosan-coated alginate-poly(N-isopropylacrylamide) (PNIPAAm) beads impregnated with biochar (CSACB) were evaluated. Characterisation of the beads was performed by SEM, thermogravimetry analysis (TGA), and swelling properties analyses. The optimised CSACB beads had good physical stability, shelf life, and entrapment efficiency. In addition, the water-holding capacity and porous structure were excellent, as the biochar provided a beneficial microenvironment for the attachment and microbial growth of the biocontrol fungus. The effect of reducing aflatoxin in peanuts was verified experimentally. Collectively, the novel CSACB beads are suitable carriers of non-aflatoxigenic A. flavus for the biocontrol of peanut aflatoxin.
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生物炭浸渍海藻酸酯微球的研制及其对花生黄曲霉毒素的生物防治作用
非黄曲霉对产黄曲霉真菌的竞争抑制已被证明是防治花生黄曲霉毒素污染的有效方法,目前使用的接种载体多为谷物。本研究对新型壳聚糖包被海藻酸-聚n-异丙基丙烯酰胺(PNIPAAm)微球浸渍生物炭(CSACB)替代籽粒的可靠性和效率进行了评价。通过扫描电镜(SEM)、热重分析(TGA)和膨胀特性分析对微球进行了表征。优化后的CSACB珠具有良好的物理稳定性、保存期和包封效率。此外,生物炭具有良好的持水能力和多孔结构,为生物防治真菌的附着和微生物生长提供了有利的微环境。对花生中黄曲霉毒素的去除效果进行了实验验证。综上所述,新型CSACB微珠是花生黄曲霉毒素生物防治的非黄曲霉毒素A. flavus载体。
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