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从罗布斯塔咖啡中分离出的酵母或乳酸菌对黑曲霉生长及体外产赭曲霉毒素A的生物防治活性。

Biocontrol activities of yeasts or lactic acid bacteria isolated from Robusta coffee against Aspergillus carbonarius growth and ochratoxin A production in vitro.

作者信息

Rodríguez Claudia López, Strub Caroline, Fontana Angélique, Verheecke-Vaessen Carol, Durand Noël, Beugré Corinne, Guehi Tagro, Medina Angel, Schorr-Galindo Sabine

机构信息

Qualisud, Univ Montpellier, CIRAD, Institut Agro, IRD, Avignon Univ, Univ de La Réunion, Montpellier, France; Applied Mycology Group, Environment and AgriFood Theme, Cranfield University, Cranfield, UK.

Qualisud, Univ Montpellier, CIRAD, Institut Agro, IRD, Avignon Univ, Univ de La Réunion, Montpellier, France.

出版信息

Int J Food Microbiol. 2024 Apr 16;415:110638. doi: 10.1016/j.ijfoodmicro.2024.110638. Epub 2024 Feb 24.

Abstract

Biocontrol Agents (BCAs) can be an eco-friendly alternative to fungicides to reduce the contamination with mycotoxigenic fungi on coffee. In the present study, different strains of bacteria and yeasts were isolated from Ivorian Robusta coffee. Their ability to reduce fungal growth and Ochratoxin A (OTA) production during their confrontation against Aspergillus carbonarius was screened on solid media. Some strains were able to reduce growth and OTA production by 85 % and 90 % and were molecularly identified as two yeasts, Rhodosporidiobolus ruineniae and Meyerozyma caribbica. Subsequent tests on liquid media with A. carbonarius or solely with OTA revealed adhesion of R. ruineniae to the mycelium of A. carbonarius through Scanning Electron Microscopy, and an OTA adsorption efficiency of 50 %. For M. caribbica potential degradation of OTA after 24 h incubation was observed. Both yeasts could be potential BCAs good candidates for Ivorian Robusta coffee protection against A. carbonarius and OTA contamination.

摘要

生物防治剂(BCAs)可以作为一种环保型替代杀菌剂的物质,以减少咖啡上产毒真菌的污染。在本研究中,从科特迪瓦罗布斯塔咖啡中分离出不同的细菌和酵母菌株。在固体培养基上筛选了它们在与黑曲霉对峙期间减少真菌生长和赭曲霉毒素A(OTA)产生的能力。一些菌株能够将生长和OTA产生减少85%和90%,并通过分子鉴定为两种酵母,即鲁氏红酵母和加勒比梅奇酵母。随后在含有黑曲霉或仅含有OTA的液体培养基上进行的测试通过扫描电子显微镜显示鲁氏红酵母与黑曲霉的菌丝体有粘附,并且OTA吸附效率为50%。对于加勒比梅奇酵母,在孵育24小时后观察到OTA有潜在降解。这两种酵母都可能是保护科特迪瓦罗布斯塔咖啡免受黑曲霉和OTA污染的潜在生物防治剂的良好候选者。

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