An atoxigenic Aspergillus flavus PA67 from Shandong province exhibits potential in biocontrol against toxigenic Aspergillus flavus, Sclerotium rolfsii, and Fusarium proliferatum

IF 5 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Jia Xu , Yanyan Zhang , Junhe Ren, Qing Kong
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Abstract

Peanuts and corn are susceptible to various soil-borne fungi, leading to significant economic losses. Atoxigenic Aspergillus flavus have been widely used as biocontrol agents for managing aflatoxin contamination because of their minimal environmental impact, strong competitive ability, and sustained inhibition effect. After multiple identifications and cluster amplification pattern (CAP) analysis, three atoxigenic A. flavus PA04, PA10 and PA67 were isolated from peanut samples in Shandong Province, which can reduce aflatoxin levels by up to 90 %. Our study revealed that atoxigenic A. flavus also competed vigorously with Sclerotium rolfsii and Fusarium proliferatum for nutrition and space, achieving notable inhibition rates of up to 90.4 % and 90.6 %, respectively. The supernatants of atoxigenic A. flavus also inhibited the growth of S. rolfsii and F. proliferatum, with PA67 demonstrating the most significant effect. Whole genome sequencing revealed that PA67 contains multiple glycoside hydrolases and metabolites with antifungal activity. The kojic acid production of PA67 was higher than that of PA04 and PA10, reaching 17.48 g/L, which has a significant inhibition on sclerotia germination. PA67 supernatant significantly inhibited the hyphae growth of S. rolfsii and F. proliferatum, and down-regulated genes related to sclerotia and fumonisin formation. This study demonstrates the biocontrol potential of PA67 against three soil-borne fungi and is the first investigation of atoxigenic A. flavus to inhibit S. rolfsii and F. proliferatum.

山东省的一种无毒黄曲霉 PA67 具有生物防治毒性黄曲霉、球孢霉和增殖镰刀菌的潜力
花生和玉米易受各种土传真菌的影响,导致重大经济损失。致毒黄曲霉菌因其对环境影响小、竞争能力强、抑制效果持续等特点,被广泛用作治理黄曲霉毒素污染的生物控制剂。经过多重鉴定和聚类扩增模式(CAP)分析,我们从山东省的花生样品中分离出了 PA04、PA10 和 PA67 三种黄曲霉毒素致病菌,它们可使黄曲霉毒素含量降低 90%。我们的研究发现,黄曲霉毒素还能在营养和空间上与花生硬壳菌和花生镰刀菌展开激烈竞争,抑制率分别高达 90.4% 和 90.6%。缺氧黄曲霉的上清液也能抑制 S. rolfsii 和 F. proliferatum 的生长,其中 PA67 的效果最为显著。全基因组测序显示,PA67 含有多种糖苷水解酶和具有抗真菌活性的代谢物。PA67 的曲酸产量比 PA04 和 PA10 高,达到 17.48 g/L,对硬菌萌发有显著抑制作用。PA67 上清液可明显抑制 S. rolfsii 和 F. proliferatum 的菌丝生长,并下调与硬菌和烟曲霉毒素形成相关的基因。这项研究证明了 PA67 对三种土传真菌的生物防治潜力,也是首次对黄曲霉毒素抑制 S. rolfsii 和 F. proliferatum 的研究。
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来源期刊
International journal of food microbiology
International journal of food microbiology 工程技术-食品科技
CiteScore
10.40
自引率
5.60%
发文量
322
审稿时长
65 days
期刊介绍: The International Journal of Food Microbiology publishes papers dealing with all aspects of food microbiology. Articles must present information that is novel, has high impact and interest, and is of high scientific quality. They should provide scientific or technological advancement in the specific field of interest of the journal and enhance its strong international reputation. Preliminary or confirmatory results as well as contributions not strictly related to food microbiology will not be considered for publication.
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