从葡萄园生态土壤中分离的细菌对产霉菌毒素真菌的生物防治。

Paula de la Huerta-Bengoechea, Jéssica Gil-Serna, Clara Melguizo, Antonio J Ramos, Montserrat Prim, Covadonga Vázquez, Belén Patiño
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引用次数: 2

摘要

葡萄葡萄园中产生霉菌毒素的曲霉是食品安全和经济的一个问题。此外,气候变化导致的气温上升正在改变微生物群落,导致一些真菌物种被取代,黄曲霉毒素等真菌毒素增加。利用微生物作为生物防治剂(bca)是防止真菌生长和毒素产生的最有前途的策略之一。在本研究中,从西班牙不同地区的有机葡萄园土壤中分离出513种微生物。对分离得到的480株细菌和33株酵母菌进行顺序筛选,筛选出最适合作为bca的菌株。在鉴定出符合所有要求的16株分离菌后,选择6株分离菌进行体外抑毒能力试验:A. carbonarius、A. niger和A. flavus。分离的节杆菌、红球菌和真菌芽孢杆菌对上述真菌的生长和霉菌毒素浓度均有较好的抑制作用,值得进一步研究其作为BCA的工业应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biocontrol of Mycotoxigenic Fungi Using Bacteria Isolated from Ecological Vineyard Soils.

Biocontrol of Mycotoxigenic Fungi Using Bacteria Isolated from Ecological Vineyard Soils.

Biocontrol of Mycotoxigenic Fungi Using Bacteria Isolated from Ecological Vineyard Soils.

Biocontrol of Mycotoxigenic Fungi Using Bacteria Isolated from Ecological Vineyard Soils.

The presence of mycotoxin-producing Aspergillus species in vineyards is a problem for food safety and the economy. In addition, rising temperatures due to climate change are modifying microbial communities, causing the replacement of some fungal species and the rise of mycotoxins such as aflatoxins. The use of microorganisms as biological control agents (BCAs) is one of the most promising strategies to prevent fungal growth and toxin production. In this study, 513 microorganisms were isolated from organic vineyard soils in different regions of Spain. The 480 bacteria and 33 yeasts isolated were sequentially screened to select those with the most suitable characteristics to be used as BCAs. After identifying 16 isolates meeting all requirements, six bacterial isolates were selected to test their potential to control three relevant toxigenic grape fungi in vitro: A. carbonarius, A. niger and A. flavus. Isolates of Arthrobacter sp., Rhodococcus sp. and Bacillus mycoides showed an excellent ability to reduce the growth and mycotoxin concentration of the above-mentioned fungi and represent potential candidates for further study regarding their possible industrial application as a BCA.

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