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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Ecological and Mechanistic Insights Into the Direct and Indirect Antimicrobial Properties of Bacillus subtilis Lipopeptides on Plant Pathogens
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Ecological and Mechanistic Insights Into the Direct and Indirect Antimicrobial Properties of Bacillus subtilis Lipopeptides on Plant Pathogens

机译:枯草芽孢杆菌脂肽对植物病原体直接和间接抗菌特性的生态和机制研究

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摘要

Members of the genus Bacillus produce a wide variety of antimicrobial compounds. Cyclic lipopeptides (CLP) produced by Bacillus subtilis strains have been shown to protect host plants from a numbers of pathogens. The representative families of these CLP (surfactins, fengycins, and iturins) share a polypeptide ring linked to a lipid tail of varying length. CLP provide plant protection through a variety of unique mechanisms. Members of the surfactin and fengycin families elicit induced systemic resistance in certain host plants, and they also function by directly affecting the biological membranes of bacterial and fungal pathogens, mainly resulting in membrane pore formation. Specific pore forming mechanisms differ between CLP families, causing differential activities. CLP also may aid in enhanced B. subtilis colonization of the plant environment in addition to potentially preventing the adhesion of competitive microorganisms. Several recent studies have highlighted the control of plant pathogens by CLP-producing B. subtilis strains. Strong ecological advantages through multifaceted activities of CLP provide these strains with immense promise in controlling pathogens in a variety of plant ecosystems.
机译:芽孢杆菌属的成员产生各种各样的抗菌化合物。枯草芽孢杆菌菌株产生的环脂肽(CLP)已显示可以保护宿主植物免受多种病原体的侵害。这些CLP的代表性家族(表面活性素,丰霉素和iturins)共有一个多肽环,该多肽环连接到不同长度的脂质尾巴上。 CLP通过各种独特的机制提供植物保护。表面活性素和丰霉素家族的成员在某些宿主植物中引起诱导的系统抗性,并且它们还通过直接影响细菌和真菌病原体的生物膜而起作用,主要导致膜孔的形成。 CLP系列之间特定的孔形成机制不同,从而导致差异的活动。 CLP除了可能防止竞争性微生物的粘附外,还可以帮助增强植物环境中枯草芽孢杆菌的定殖。最近的一些研究强调了产生CLP的枯草芽孢杆菌菌株对植物病原体的控制。通过CLP的多方面活动,其强大的生态优势为这些菌株在控制各种植物生态系统中的病原体方面提供了广阔的前景。

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