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Global landscape of phenazine biosynthesis and biodegradation reveals species-specific colonization patterns in agricultural soils and crop microbiomes

机译:吩嗪生物合成和生物降解的全球景观揭示了农业土壤和农作物微生物体中的特异性定植模式

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摘要

Phenazines are natural bacterial antibiotics that can protect crops from disease. However, for most crops it is unknown which producers and specific phenazines are ecologically relevant, and whether phenazine biodegradation can counter their effects. To better understand their ecology, we developed and environmentally-validated a quantitative metagenomic approach to mine for phenazine biosynthesis and biodegradation genes, applying it to >800 soil and plant-associated shotgun-metagenomes. We discover novel producer-crop associations and demonstrate that phenazine biosynthesis is prevalent across habitats and preferentially enriched in rhizospheres, whereas biodegrading bacteria are rare. We validate an association between maize and Dyella japonica, a putative producer abundant in crop microbiomes. D. japonica upregulates phenazine biosynthesis during phosphate limitation and robustly colonizes maize seedling roots. This work provides a global picture of phenazines in natural environments and highlights plant-microbe associations of agricultural potential. Our metagenomic approach may be extended to other metabolites and functional traits in diverse ecosystems.
机译:保险汀是天然细菌抗生素,可保护作物免受疾病。然而,对于大多数作物来说,它未知生产者和特定的苯脲素是生态相关的,并且是否吩嗪生物降解可以对抗它们的效果。为了更好地了解他们的生态学,我们开发和环境验证了氨基吡啶生物合成和生物降解基因的定量偏见方法,将其施加到> 800土壤和植物相关的霰弹枪 - 梅蛋白。我们发现新型生产商 - 作物关联,并证明苯吡啶生物合成患有栖息地的普遍存在栖息地,优先富集在根茎中,而生物降解细菌是罕见的。我们验证了玉米和Dyella japonica之间的关联,该推定的生产商在作物微生物体中丰富。 D. japonica在磷酸盐限制期间上调吩嗪生物合成,粗糙地殖民玉米幼苗根。这项工作在自然环境中提供了全球捕食物的图片,并突出了农业潜力的植物微生物关联。我们的Metagenomic方法可以扩展到不同生态系统中的其他代谢物和功能性状。

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