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Endophyte Bacillus subtilis evade plant defense by producing lantibiotic subtilomycin to mask self-produced flagellin

机译:内生枯草芽孢杆菌可通过生产羊毛硫抗生素枯草霉素来掩盖自身产生的鞭毛蛋白来逃避植物防御。

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摘要

Microbes can enter into healthy plants as endophytes and confer beneficial functions. The entry of commensal microbes into plants involves penetrating plant defense. Most mechanisms about overcoming plant defense are focused on adapted pathogens, while the mechanism involved in beneficial endophyte evades plant defense to achieve harmonious commensalism is unclear. Here, we discover a mechanism that an endophyte bacterium Bacillus subtilis BSn5 reduce to stimulate the plant defensive response by producing lantibiotic subtilomycin to bind self-produced flagellin. Subtilomycin bind with flagellin and affect flg22-induced plant defense, by which means promotes the endophytic colonization in A. thaliana. Subtilomycin also promotes the BSn5 colonization in a distinct plant, Amorphophallus konjac, where the BSn5 was isolated. Our investigation shows more independent subtilomycin/-like producers are isolated from distinct plants. Our work unveils a common strategy that is used for bacterial endophytic colonization.
机译:微生物可以作为内生菌进入健康植物并赋予其有益的功能。共生微生物进入植物涉及穿透植物防御。克服植物防御的大多数机制都集中在适应性病原体上,而有益的内生菌逃避植物防御以实现和谐共鸣的机制尚不清楚。在这里,我们发现内生细菌枯草芽孢杆菌BSn5减少通过产生羊毛硫抗生素枯草霉素结合自身产生的鞭毛蛋白来刺激植物防御反应的机制。枯草杆菌素与鞭毛蛋白结合并影响flg22诱导的植物防御,从而促进拟南芥内生菌的定植。枯草霉素还促进了分离植物BSn5的独特植物魔芋魔芋中BSn5的定殖。我们的调查显示,从不同植物中分离出了更多独立的枯草杆菌/样生产商。我们的工作揭示了一种用于细菌内生菌定植的通用策略。

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