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首页> 外文期刊>Journal of applied microbiology >Antifungal activity ofEuphorbiaspecies against moulds responsible of cereal ear rots
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Antifungal activity ofEuphorbiaspecies against moulds responsible of cereal ear rots

机译:反对模具的抗真菌活性对谷物耳腐蚀的模具

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摘要

Aims This work aimed to identify secondary metabolites from aerial parts ofEuphorbiaspecies functional for control of toxigenicFusariumspecies responsible of cereal grain rots. Methods and Results Aerial parts ofEuphorbia serpens,Euphorbia schickendantziiandEuphorbia collinawere sequentially extracted with hexane, ethyl acetate and methanol. The extracts were tested against strains ofFusarium verticillioidesandFusarium graminearumby microdilution tests. The hexane extract ofE. collinaprovided the lowest IC(50)s on both fungal species. Further fractionation showed that cycloartenol (CA) and 24-methylenecycloartanol are associated to the moderate inhibitory effect of the hexane extract on fungal growth.Sublethal concentrations of CA and 24MCA blocked deoxynivalenol (DON) and fumonisins production.CA and 24MCA co-applied with potassium sorbate, a food preservative used forFusariumcontrol, synergized the growth inhibition of fungi. The mixtures reduced mycotoxins accumulation when applied at sublethal concentrations. Conclusions CA and 24MCA inhibited both fungal growth and mycotoxins production. This fact is an advantage respect to potassium sorbate which increased the mycotoxins accumulation at sublethal concentrations. Significance and Impact of the Study CA and 24MCA synergized potassium sorbate and their mixtures offer a lower mycotoxigenic risk than potassium sorbate for control of theFusariumspecies.
机译:目的本研究的目的是鉴定对控制谷粒腐烂的产毒鱼类有作用的乌佛兰属植物地上部分的次生代谢物。方法和结果用正己烷、乙酸乙酯和甲醇依次提取蛇床子、大戟和大戟的地上部分。通过微量稀释试验,对提取物进行了抗轮状镰刀菌和禾谷镰刀菌菌株的试验。正己烷提取物。Collina对两种真菌的IC(50)最低。进一步的分级显示,环蒿醇(CA)和24-亚甲基环蒿醇与己烷提取物对真菌生长的中度抑制作用有关。亚致死浓度的CA和24MCA阻断脱氧雪腐镰刀菌烯醇(DON)和伏马菌素的产生。CA和24MCA与用于防治镰刀菌的食品防腐剂山梨酸钾共同施用,可协同抑制真菌生长。当以亚致死浓度施用时,这种混合物减少了真菌毒素的积累。结论CA和24MCA对真菌生长和真菌毒素产生均有抑制作用。这是山梨酸钾的一个优势,山梨酸钾在亚致死浓度下增加了真菌毒素的积累。研究的意义和影响CA和24MCA协同山梨酸钾及其混合物在控制真菌方面比山梨酸钾具有更低的霉菌毒素风险。

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