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Biopesticide Activity from Drimanic Compounds to Control Tomato Pathogens

机译:大麦类化合物的生物农药活性可控制番茄病原体。

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摘要

Tomato crops can be affected by several infectious diseases produced by bacteria, fungi, and oomycetes. Four phytopathogens are of special concern because of the major economic losses they generate worldwide in tomato production; Clavibacter michiganensis subsp. michiganensis and Pseudomonas syringae pv. tomato, causative agents behind two highly destructive diseases, bacterial canker and bacterial speck, respectively; fungus Fusarium oxysporum f. sp. lycopersici that causes Fusarium Wilt, which strongly affects tomato crops; and finally, Phytophthora spp., which affect both potato and tomato crops. Polygodial (>1), drimenol (>2), isonordrimenone (>3), and nordrimenone (>4) were studied against these four phytopathogenic microorganisms. Among them, compound >1, obtained from Drimys winteri Forst, and synthetic compound >4 are shown here to have potent activity. Most promisingly, the results showed that compounds >1 and >4 affect Clavibacter michiganensis growth at minimal inhibitory concentrations (MIC) values of 16 and 32 µg/mL, respectively, and high antimycotic activity against Fusarium oxysporum and Phytophthora spp. with MIC of 64 µg/mL. The results of the present study suggest novel treatment alternatives with drimane compounds against bacterial and fungal plant pathogens.
机译:番茄作物可能会受到细菌,真菌和卵菌产生的几种传染病的影响。四种植物病原体受到特别关注,因为它们在全世界的番茄生产中造成了巨大的经济损失。密歇根杆状杆菌亚种。密歇根州和丁香假单胞菌PV。番茄,是导致两种高度破坏性疾病的病原体,分别是细菌性溃疡病和细菌性斑点病;真菌尖孢镰刀菌f。 sp。导致枯萎病的番茄红腐病,严重影响番茄作物;最后是疫霉菌(Phytophthora spp。),它影响马铃薯和番茄作物。研究了polygodial(> 1 ),drimenol(> 2 ),isoordridrimenone(> 3 )和nordrimenone(> 4 )针对这四种植物病原微生物。其中,从Drimys winteri Forst获得的化合物> 1 和合成的化合物> 4 在这里显示出有效的活性。最有希望的结果是,化合物> 1 和> 4 分别以最小抑菌浓度(MIC)分别为16和32 µg / mL和高抗霉菌性影响密歇根氏杆菌的生长。对尖孢镰刀菌和疫霉属的活性。 MIC为64 µg / mL。本研究的结果表明,使用drimane化合物可对细菌和真菌植物病原体进行新型治疗。

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