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Antifungal and antimycotoxigenic metabolites in Anacardiaceae species from northwest Argentina: isolation, identification and potential for control of Fusarium species

机译:阿根廷西北部漆树科的抗真菌和抗真菌代谢产物:分离,鉴定和控制镰刀菌的可能性

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摘要

Aims: The purpose of this research was to identify antifungal compounds from leaves of Schinus and Schinopsis species useful for the control of toxigenic Fusarium species responsible of ear rot diseases.Methods and Results: Leaves of Schinopsis (S.lorentzii and S.haenkeana) and Schinus (S.areira, S.gracilipes and S.fasciculatus) were sequentially extracted with dichloromethane, ethyl acetate and methanol. The antifungal activity of the fraction soluble in methanol of these extracts (fCH(2)Cl(2), fAcEt and fMeOH, respectively) was determined by the broth microdilution method and the disc-diffusion method. The minimum inhibitory dose (MID), the diameter of growth inhibition (DGI) and the minimum concentration for 50% inhibition of fungal growth (MIC50) were calculated. The fCH(2)Cl(2) and fAcEt of the Schinopsis species had the lowest MID and MIC50 values and the highest DGI. The antifungal compounds were identified as lupeol and a mix of phenolic lipids. The last one had the highest antifungal activity with MIC50 31-28 mu gg(-1) and 165-150 mu gg(-1) on Fusarium graminearum and Fusarium verticillioides, respectively. The identified metabolites completely inhibited fumonisin and deoxynivalenol production at lower concentrations than ferulic acid, a natural antimycotoxigenic compound.Conclusions: It was proven that lupeol and phenolic lipids were inhibitors of both fungal growth and mycotoxin production of toxigenic Fusarium species. This fact is specially interesting in the control of the toxigenic Fusarium species because several commercial antifungals showed to stimulate mycotoxin biosynthesis at sublethal concentrations.Significance and Impact of the Study: Control of toxigenic Fusarium species requires compounds able to inhibit both fungal growth and mycotoxin production. Our results suggest that the use of lupeol as food preservative and the phenolic lipids as fungal growth inhibitors of F.verticillioides and F.graminearum did not imply an increase in mycotoxin accumulation.
机译:目的:本研究的目的是从Schinus和Schinopsis物种的叶片中鉴定出抗真菌化合物,这些化合物可用于控制引起耳腐病的产毒镰刀菌。方法和结果:Schinopsis(S.lorentzii和S.haenkeana)和依次用二氯甲烷,乙酸乙酯和甲醇萃取Schinus(S.areira,S.gracilipes和S.fasciculatus)。通过肉汤微稀释法和圆盘扩散法测定了这些提取物的可溶于甲醇的级分(分别为fCH(2)Cl(2),fAcEt和fMeOH)的抗真菌活性。计算最小抑制剂量(MID),生长抑制直径(DGI)和抑制50%真菌生长的最小浓度(MIC50)。 fCH(2)Cl(2)和Schnopsis物种的fAcEt具有最低的MID和MIC50值和最高的DGI。该抗真菌化合物被鉴定为羽扇豆酚和酚类脂质的混合物。最后一个具有最高的抗真菌活性,分别对禾谷镰刀菌和褐腐镰刀菌的MIC50为31-28 mu gg(-1)和165-150 mu gg(-1)。鉴定出的代谢物以比阿魏酸(一种天然的抗霉菌毒素化合物)更低的浓度完全抑制了伏马毒素和脱氧雪腐烯醇的产生。结论:证明卢佩醇和酚类脂类是毒素性镰刀菌属真菌生长和霉菌毒素产生的抑制剂。这一事实在控制产毒镰刀菌物种中特别有趣,因为几种商业抗真菌剂均显示在致死浓度下能刺激霉菌毒素的生物合成。研究的意义和影响:控制产毒镰刀菌物种需要能够抑制真菌生长和霉菌毒素产生的化合物。我们的研究结果表明,使用羽扇豆酚作为食品防腐剂和使用酚类脂质作为F.verticillioides和F.graminearum的真菌生长抑制剂并不意味着霉菌毒素的积累增加。

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