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商业生物防治剂对两种谷物产毒真菌: 和 的表现行为截然不同。

Commercial Biocontrol Agents Reveal Contrasting Comportments Against Two Mycotoxigenic Fungi in Cereals: and .

机构信息

Qualisud, Univ Montpellier, CIRAD, Montpellier SupAgro, Univ d'Avignon, Univ de La Réunion, Montpellier, France.

CIRAD, UMR Qualisud, F-34398 Montpellier, France.

出版信息

Toxins (Basel). 2020 Feb 29;12(3):152. doi: 10.3390/toxins12030152.

Abstract

The aim of this study was to investigate the impact of commercialized biological control agents (BCAs) against two major mycotoxigenic fungi in cereals, and , which are trichothecene and fumonisin producers, respectively. With these objectives in mind, three commercial BCAs were selected with contrasting uses and microorganism types (, , ) and a culture medium was identified to develop an optimized dual culture bioassay method. Their comportment was examined in dual culture bioassay in vitro with both fusaria to determine growth and mycotoxin production kinetics. Antagonist activity and variable levels or patterns of mycotoxinogenesis inhibition were observed depending on the microorganism type of BCA or on the culture conditions (e.g., different nutritional sources), suggesting that contrasting biocontrol mechanisms are involved. leads to a growth inhibition zone where the pathogen mycelium structure is altered, suggesting the diffusion of antimicrobial compounds. In contrast, and are able to grow faster than the pathogen. showed the capacity to degrade pathogenic mycelia, involving chitinolytic activities. In dual culture bioassay with , this BCA reduced the growth and mycotoxin concentration by 48% and 72%, respectively, and by 78% and 72% in dual culture bioassay against . progressed over the pathogen colony, suggesting a close type of interaction such as mycoparasitism, as confirmed by microscopic observation. In dual culture bioassay with , reduced the growth and mycotoxin concentration by 79% and 93%, respectively. In the dual culture bioassay with , reduced the growth and mycotoxin concentration by 49% and 56%, respectively. In vitro dual culture bioassay with different culture media as well as the nutritional phenotyping of different microorganisms made it possible to explore the path of nutritional competition in order to explain part of the observed inhibition by BCAs.

摘要

本研究旨在探讨商业化生物防治剂(BCA)对两种主要谷物产毒真菌,即分别产单端孢霉烯族毒素和伏马菌素的 和 的影响。基于这些目标,选择了三种具有不同用途和微生物类型( 、 、 )的商业 BCA,并确定了一种培养基来开发优化的双重培养生物测定方法。在体外双重培养生物测定中,用两种镰刀菌检查它们的行为,以确定生长和产毒动力学。根据 BCA 的微生物类型或培养条件(例如,不同的营养源),观察到拮抗活性和产毒抑制水平或模式的变化,这表明涉及不同的生物防治机制。 导致病原菌菌丝结构改变的抑菌生长带,提示抗菌化合物的扩散。相比之下, 和 能够比病原菌生长得更快。 表现出降解病原菌菌丝的能力,涉及几丁质酶活性。在与 的双重培养生物测定中,该 BCA 分别使生长和产毒浓度降低了 48%和 72%,在与 的双重培养生物测定中分别降低了 78%和 72%。 在病原菌菌落上进展,表明存在一种类似于菌寄生的密切相互作用,这通过显微镜观察得到了证实。在与 的双重培养生物测定中, 使生长和产毒浓度分别降低了 79%和 93%。在与 的双重培养生物测定中, 使生长和产毒浓度分别降低了 49%和 56%。不同培养介质的体外双重培养生物测定以及不同微生物的营养表型分析,使得探索营养竞争途径成为可能,以解释部分观察到的 BCA 抑制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5991/7150872/26ef3a5f1ccc/toxins-12-00152-g0A1.jpg

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