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Active root-inhabiting microbes identified by rapid incorporation of plant-derived carbon into RNA

机译:通过快速将植物来源的碳掺入RNA来鉴定活性的根系微生物

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摘要

Plant roots harbor a large diversity of microorganisms that have an essential role in ecosystem functioning. To better understand the level of intimacy of root-inhabiting microbes such as arbuscular mycorrhizal fungi and bacteria, we provided 13CO2 to plants at atmospheric concentration during a 5-h pulse. We expected microbes dependent on a carbon flux from their host plant to become rapidly labeled. We showed that a wide variety of microbes occurred in roots, mostly previously unknown. Strikingly, the greatest part of this unsuspected diversity corresponded to active primary consumers. We found 17 bacterial phylotypes co-occurring within roots of a single plant, including five potentially new phylotypes. Fourteen phylotypes were heavily labeled with the 13C. Eight were phylogenetically close to Burkholderiales, which encompass known symbionts; the others were potentially new bacterial root symbionts. By analyzing unlabeled and 13C-enriched RNAs, we demonstrated differential activity in C consumption among these root-inhabiting microbes. Arbuscular mycorrhizal fungal RNAs were heavily labeled, confirming the high carbon flux from the plant to the fungal compartment, but some of the fungi present appeared to be much more active than others. The results presented here reveal the possibility of uncharacterized root symbioses.
机译:植物根部具有多种多样的微生物,这些微生物在生态系统功能中起着至关重要的作用。为了更好地了解根系微生物(如丛枝菌根真菌和细菌)的亲密程度,我们在5小时的脉冲时间内以大气浓度向植物提供了13CO2。我们预计微生物将依赖其寄主植物的碳通量而迅速被标记。我们表明,根部存在多种微生物,其中大多数以前未知。令人惊讶的是,这种未曾想到的多样性的绝大部分对应于活跃的主要消费者。我们发现一株植物的根中同时存在17种细菌系统型,其中包括5种潜在的新型系统型。 14种系统型被13C大量标记。在系统发育上靠近伯克霍尔德氏菌的有八个,其中包括已知的共生体。其他可能是新的细菌根共生体。通过分析未标记的和富含13C的RNA,我们证明了在这些根系微生物中C消耗的差异。丛枝菌根真菌的RNA高度标记,证实了从植物到真菌区室的高碳通量,但是存在的某些真菌似乎比其他真菌更具活性。此处给出的结果揭示了未表征的根共生的可能性。

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