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Bacillus subtilis Early Colonization of Arabidopsis thaliana Roots Involves Multiple Chemotaxis Receptors

机译:枯草芽孢杆菌 拟南芥根的早期定殖涉及多个趋化性受体

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ABSTRACT Colonization of plant roots by Bacillus subtilis is mutually beneficial to plants and bacteria. Plants can secrete up to 30% of their fixed carbon via root exudates, thereby feeding the bacteria, and in return the associated B.?subtilis bacteria provide the plant with many growth-promoting traits. Formation of a biofilm on the root by matrix-producing B.?subtilis is a well-established requirement for long-term colonization. However, we observed that cells start forming a biofilm only several hours after motile cells first settle on the plant. We also found that intact chemotaxis machinery is required for early root colonization by B.?subtilis and for plant protection. Arabidopsis?thaliana root exudates attract B.?subtilis in vitro , an activity mediated by the two characterized chemoreceptors, McpB and McpC, as well as by the orphan receptor TlpC. Nonetheless, bacteria lacking these chemoreceptors are still able to colonize the root, suggesting that other chemoreceptors might also play a role in this process. These observations suggest that A.?thaliana actively recruits B.?subtilis through root-secreted molecules, and our results stress the important roles of B.?subtilis chemoreceptors for efficient colonization of plants in natural environments. These results demonstrate a remarkable strategy adapted by beneficial rhizobacteria to utilize carbon-rich root exudates, which may facilitate rhizobacterial colonization and a mutualistic association with the host. IMPORTANCE Bacillus subtilis is a plant growth-promoting rhizobacterium that establishes robust interactions with roots. Many studies have now demonstrated that biofilm formation is required for long-term colonization. However, we observed that motile B.?subtilis mediates the first contact with the roots. These cells differentiate into biofilm-producing cells only several hours after the bacteria first contact the root. Our study reveals that intact chemotaxis machinery is required for the bacteria to reach the root. Many, if not all, of the B.?subtilis 10 chemoreceptors are involved in the interaction with the plant. These observations stress the importance of root-bacterium interactions in the B.?subtilis lifestyle.
机译:摘要枯草芽孢杆菌对植物根部的定殖对植物和细菌都是互惠互利的。植物可以通过根系分泌物分泌高达30%的固定碳,从而为细菌提供营养,而相关的枯草芽孢杆菌细菌则为植物提供了许多促进生长的性状。产生基质的枯草芽孢杆菌在根部形成生物膜是长期定殖的公认要求。但是,我们观察到仅在活动细胞首次定植在植物上几个小时后,细胞才开始形成生物膜。我们还发现完整的趋化性机制是枯草芽孢杆菌早期定根和植物保护所必需的。拟南芥根系分泌物在体外吸引枯草芽孢杆菌,这是由两个特征化的化学感受器McpB和McpC以及孤儿受体TlpC介导的。尽管如此,缺乏这些化学感受器的细菌仍然能够在根部定植,这表明其他化学感受器也可能在此过程中起作用。这些观察结果表明拟南芥通过根分泌的分子积极募集枯草芽孢杆菌,我们的结果强调了枯草芽孢杆菌化学感受器对于自然环境中植物有效定殖的重要作用。这些结果表明,通过有益的根瘤菌适应了利用富碳根分泌物的显着策略,这可能促进了根瘤菌定植并与宿主建立了相互联系。重要事项枯草芽孢杆菌是一种促进植物生长的根瘤菌,可与根建立牢固的相互作用。现在许多研究表明,长期定居需要生物膜的形成。但是,我们观察到能动的枯草芽孢杆菌介导了与根的第一次接触。在细菌首次接触根部后数小时,这些细胞便分化为产生生物膜的细胞。我们的研究表明,细菌到达根部需要完整的趋化机制。许多(如果不是全部)枯草芽孢杆菌10化学感受器参与了与植物的相互作用。这些观察结果强调了根-细菌相互作用在枯草芽孢杆菌生活方式中的重要性。

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