用哈茨木霉生物防治花生中的黄曲霉

Biocontrol of Aspergillus flavus in groundnut using Trichoderma harzianum stain kd

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中文摘要:花生( Arachis hypogea) 采收前在干旱胁迫下受黄曲霉及寄生曲霉感染是全球主要的健康和食品安全问题。真菌释放的黄曲霉毒素,在十亿分之几的水平就具有肝毒性并能致癌。本研究中,用一种生物防治剂,哈茨木霉(Tkd),控制花生在田间的黄曲霉感染。研究表明用Tkd可以减少花生种子受黄曲霉感染,从而减少花生种子的黄曲霉毒素污染,特别是在干旱条件下。同时,Tkd处理后可以增产35%以上。
外文摘要:Pre-harvest infection of groundnut ( Arachis hypogea) during drought stress by strains of Aspergillus flavus and Aspergillus parasiticus is a major health and food safety concern worldwide. The fungi release aflatoxins, which are carcinogenic and hepatotoxic at levels of parts per billion. In this study, a formulated biocontrol agent, Trichoderma harzianum strain kd (Tkd), was used to control Aspergillus flavus infection of groundnut in the field. Groundnut seeds treated with Tkd developed more root biomass than the control (untreated with Tkd). Growth of Trichoderma mycelium from sterilized roots of groundnuts grown on Trichoderma selective media indicates root colonization of the intercellular spaces in groundnut roots by Tkd. Even the control plants showed evidence of root colonization by Trichoderma but at much lower levels. This shows that groundnuts are particularly a compatible host of Trichoderma acting as an endophyte. Under scanning electron microscopy, T. harzianum showed the ability to parasitize A. flavus by coiling around A. flavus hyphae, penetrating and degrading the mycelium of A. flavus. The levels of aflatoxin B1 contamination from Aspergillus infection were determined using a MaxiSignal ELISA test kit. The aflatoxin levels of A. flavus-inoculated control plants were significantly ( p < 0.001) higher than that of the Tkd-treated plants, by 57 and 65%, in two trials. Yields from plants treated with Tkd were 35 and 49% higher than that from the control (untreated with Tkd) plants in these field trials. It can be concluded that application of Tkd to groundnut seeds may reduce infection of the groundnut seeds by Aspergillus flavus, and hence, it may reduce the contamination of the seed by aflatoxin, especially under drought stress condition. Concurrently, Tkd treatment may result in yields being enhanced by more than 35%.
外文关键词:Aflatoxin;Aspergillus flavus;Yield;Crop safety;Root stimulation
作者:Kifle, MH;Yobo, KS;Laing, MD
作者单位:Univ KwaZulu Natal
期刊名称:JOURNAL OF PLANT DISEASES AND PROTECTION
期刊影响因子:0.477
出版年份:2017
出版刊次:1
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  1. 编译服务:农产品质量安全
  2. 编译者:虞德容
  3. 编译时间:2017-07-26