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首页> 外文期刊>Canadian journal of microbiology >Effects of the Fusarium spp. mycotoxins fusaric acid and deoxynivalenol on the growth of Ruminococcus albus and Methanobrevibacter ruminantium.
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Effects of the Fusarium spp. mycotoxins fusaric acid and deoxynivalenol on the growth of Ruminococcus albus and Methanobrevibacter ruminantium.

机译:镰刀菌属的影响。霉菌毒素富铁酸和脱氧雪腐烯醇对阿米瘤胃球菌和反刍动物短杆菌的生长。

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摘要

The Fusarium spp. mycotoxins fusaric acid and deoxynivalenol (DON) were tested for antimicrobial activity against Ruminococcus albus and Methanobrevibacter ruminantium. The growth of both organisms was inhibited by fusaric acid as low as 15 micrograms/mL (84 microM) but not by DON, at levels as high as 100 micrograms/mL (338 microM). No synergistic inhibitory effect was observed with DON plus fusaric acid. Neither organism was able to adapt to the fusaric acid and responses of each organism to the compound were different. The optical density (OD) maximum for R. albus, but not for M. ruminantium, was diminished after 28 days incubation at concentrations of fusaric acid below 240 micrograms/mL. Inhibition of R. albus started before significant growth had occurred, while M. ruminantium doubled twice before the onset of inhibition. Responses to picolinic acid, an analog of fusaric acid, were also dramatically different between the two microorganisms with M. ruminantium exhibiting a severe lag followed by a complete recovery of growth, while R. albus was only slightly inhibited with no lag. These results suggest that the mechanism of fusaric acid inhibition is specific to each microorganism. This is the first demonstration of the common mycotoxin fusaric acid inhibiting the growth of rumen bacteria.
机译:镰刀菌属。测试了霉菌毒素富铁酸和脱氧雪腐烯醇(DON)的抗阿米氏球菌和反刍动物短杆菌的抗菌活性。低至15微克/ mL(84 microM)的富马酸抑制了这两种生物的生长,但高至100微克/ mL(338 microM)的DON抑制了它们的生长。 DON加富沙酸未观察到协同抑制作用。两种生物都无法适应富马酸,并且每种生物对化合物的反应都不同。在低于240微克/ mL的富马酸浓度下培养28天后,黄连杆菌而不是反刍分支杆菌的最大光密度(OD)降低。在出现明显的生长之前,开始对白粉病的抑制作用,而反刍分支杆菌在抑制作用发生之前就翻了一番。反刍果酸类似物吡啶甲酸的反应在两种微生物之间也有显着差异,反刍分支杆菌表现出严重的滞后性,随后完全恢复了生长,而白粉病仅受到轻微的抑制而没有滞后。这些结果表明,对岩藻酸的抑制机制对每种微生物都是特异性的。这是常见的霉菌毒素岩藻酸抑制瘤胃细菌生长的首次证明。

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