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白香柱菌挥发物在气调(CA)贮藏条件下可控制产毒真菌。

Muscodor albus volatiles control toxigenic fungi under Controlled Atmosphere (CA) storage conditions.

作者信息

Braun Gordon, Vailati Matteo, Prange Robert, Bevis Eric

机构信息

Atlantic Food and Horticulture Research Centre, Agriculture and Agri-Food Canada, 32 Main St., Kentville, NS B4N 1J5, Canada.

出版信息

Int J Mol Sci. 2012 Nov 27;13(12):15848-58. doi: 10.3390/ijms131215848.

DOI:10.3390/ijms131215848
PMID:23443097
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3546665/
Abstract

Muscodor albus, a biofumigant fungus, has the potential to control post-harvest pathogens in storage. It has been shown to produce over 20 volatile compounds with fungicidal, bactericidal and insecticidal properties. However, M. albus is a warm climate endophyte, and its biofumigant activity is significantly inhibited at temperatures below 5 °C. Conidia of seven mycotoxin producing fungi, Aspergillus carbonarius, A. flavus, A. niger, A. ochraceus, Penicillium verrucosum, Fusarium culmorum and F. graminearum, were killed or prevented from germinating by exposure to volatiles from 2 g M. albus-colonized rye grain per L of headspace in sealed glass jars for 24 h at 20 °C. Two major volatiles of M. albus, isobutyric acid (IBA) and 2-methyl-1-butanol (2MB) at 50 µL/L and 100 µL/L, respectively, gave differential control of the seven fungi when applied individually at 20 °C. When the fungi were exposed to both IBA and 2MB together, an average of 94% of the conidia were killed or suppressed. In a factorial experiment with controlled atmosphere storage (CA) at 3 °C and 72 h exposure to four concentrations of IBA and 2MB combinations, 50 µL/L IBA plus 100 µL/L 2MB killed or suppressed germination of the conidia of all seven fungi. Controlled atmosphere had no significant effect on conidial viability or volatile efficacy. Major volatiles of M. albus may have significant potential to control plant pathogens in either ambient air or CA storage at temperatures below 5 °C. However, combinations of volatiles may be required to provide a broader spectrum of control than individual volatiles.

摘要

白香柱菌是一种生物熏蒸真菌,具有控制储存期收获后病原体的潜力。已证明它能产生20多种具有杀真菌、杀菌和杀虫特性的挥发性化合物。然而,白香柱菌是一种适应温暖气候的内生菌,其生物熏蒸活性在5℃以下的温度下会受到显著抑制。在20℃的密封玻璃瓶中,每升顶空空间暴露于2克定殖有白香柱菌的黑麦籽粒挥发物中24小时后,七种产真菌毒素的真菌,即碳黑曲霉、黄曲霉、黑曲霉、赭曲霉、疣孢青霉、禾谷镰刀菌和燕麦镰刀菌的分生孢子被杀死或抑制萌发。白香柱菌的两种主要挥发物,异丁酸(IBA)和2-甲基-1-丁醇(2MB),分别以50μL/L和100μL/L的浓度在20℃单独施用时,对这七种真菌有不同的控制效果。当真菌同时暴露于IBA和2MB时,平均94%的分生孢子被杀死或抑制。在一个在3℃进行控制气氛储存(CA)并暴露于四种浓度的IBA和2MB组合72小时的析因实验中,50μL/L IBA加100μL/L 2MB杀死或抑制了所有七种真菌分生孢子的萌发。控制气氛对分生孢子活力或挥发物功效没有显著影响。白香柱菌的主要挥发物在5℃以下的环境空气或CA储存中可能具有控制植物病原体的巨大潜力。然而,可能需要挥发物组合才能提供比单一挥发物更广泛的控制范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e8/3546665/ae79fda7a72c/ijms-13-15848f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e8/3546665/0ad2b29ac9bd/ijms-13-15848f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e8/3546665/ae79fda7a72c/ijms-13-15848f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e8/3546665/0ad2b29ac9bd/ijms-13-15848f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e8/3546665/ae79fda7a72c/ijms-13-15848f2.jpg

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Muscodor albus and its biological promise.白腐菌及其生物学前景。
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