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Antifungal activity of tetrasulfanes against botrytis cinerea

机译:四硫烷类对灰葡萄孢的抗真菌活性

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Various natural polysulfanes (RS~xR', x ≥ 3, R ≠ H), such as diallyltrisulfide and diallyltetrasulfide from garlic, are mostly harmless to humans, higher animals and plants, yet highly active against diverse microbes, including several fungi. Such natural organic sulfur compounds (OSCs) possess considerable practical potential against a wide range of agricultural pests. Unfortunately, their use is often hampered due to the inherently offensive smell, chemical instability and low water solubility. However, since the biological activity of polysulfanes is primarily based on their unique sulfur-sulfur motif, it is possible to preserve this motif and to modify the side-chain(s). Ultimately, such changes result in synthetic polysulfanes which retain or even exceed the activity of their natural analogues, and also show improved physico-chemical properties. The resulting acid-, ether- and ester-based tetrasulfanes synthesized as part of this study are odorless and highly active against the grey mold fungus Botrytis cinerea. Some, but not all, of the synthetic polysulfanes are recognized by an active fungal efflux mechanism mediated by the ABC transporter AtrB. Remarkably, some of them even induce transcription of the AtrB-encoding gene, mediated by transcription factor Mrr1. Taken together, the activity of synthetic polysulfanes against B. cinerea, combined with a likely low ecotoxicity of such sulfur compounds, bodes well for possible future applications against this and eventually other agronomically important plant pathogens.
机译:各种天然的多硫化物(RS〜xR',x≥3,R≠H),例如大蒜中的二烯丙基硫醚和二烯丙基四硫醚,对人类,高级动物和植物无害,但对多种微生物(包括几种真菌)却具有很高的活性。此类天然有机硫化合物(OSC)具有针对各种农业害虫的巨大实用潜力。不幸的是,由于其固有的难闻气味,化学不稳定和低水溶性,它们的使用常常受到阻碍。但是,由于聚硫醚的生物活性主要基于其独特的硫-硫基序,因此可以保留该基序并修饰侧链。最终,这种变化导致合成的聚砜保持或什至超过其天然类似物的活性,并且还表现出改善的理化性质。作为本研究的一部分,合成的基于酸,醚和酯的四硫烷无味,并且对灰霉菌灰葡萄孢具有很高的活性。 ABC转运蛋白AtrB介导的活性真菌外排机制可识别部分但不是全部的合成多硫烷。值得注意的是,其中一些甚至可以诱导由转录因子Mrr1介导的AtrB编码基因的转录。综上所述,合成的多硫醚对灰葡萄孢的活性与此类硫化合物的可能的低生态毒性相结合,预示着该硫磺以及最终在农学上重要的其他植物病原体可能的未来应用。

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