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接触健康成年人的落叶微生物群可保护幼苗免受病原体损害。

Exposure to the leaf litter microbiome of healthy adults protects seedlings from pathogen damage.

作者信息

Christian Natalie, Herre Edward Allen, Mejia Luis C, Clay Keith

机构信息

Evolution, Ecology and Behavior Program, Department of Biology, Indiana University, 1001 East 3rd Street, Bloomington, IN 47405, USA

Smithsonian Tropical Research Institute, Unit 9100 Box 0948, DPO AA 34002-9998, USA.

出版信息

Proc Biol Sci. 2017 Jul 12;284(1858). doi: 10.1098/rspb.2017.0641.

Abstract

It is increasingly recognized that microbiota affect host health and physiology. However, it is unclear what factors shape microbiome community assembly in nature, and how microbiome assembly can be manipulated to improve host health. All plant leaves host foliar endophytic fungi, which make up a diverse, environmentally acquired fungal microbiota. Here, we experimentally manipulated assembly of the cacao tree () fungal microbiome in nature and tested the effect of assembly outcome on host health. Using next-generation sequencing, as well as culture-based methods coupled with Sanger sequencing, we found that manipulating leaf litter exposure and location within the forest canopy significantly altered microbiome composition in cacao. Exposing cacao seedlings to leaf litter from healthy conspecific adults enriched the seedling microbiome with , a fungal endophyte known to enhance pathogen resistance of cacao seedlings by upregulating host defensive pathways. As a result, seedlings exposed to healthy conspecific litter experienced reduced pathogen damage. Our results link processes that affect the assembly and composition of microbiome communities to their functional consequences for host success, and have broad implications for understanding plant-microbe interactions. Deliberate manipulation of the plant-fungal microbiome also has potentially important applications for cacao production and other agricultural systems in general.

摘要

人们越来越认识到微生物群会影响宿主的健康和生理机能。然而,目前尚不清楚哪些因素塑造了自然界中微生物群落的组装,以及如何通过操控微生物群落的组装来改善宿主健康。所有植物叶片都带有叶内生真菌,它们构成了一个多样的、从环境中获取的真菌微生物群。在此,我们在自然界中通过实验操控了可可树真菌微生物群的组装,并测试了组装结果对宿主健康的影响。利用新一代测序技术以及基于培养的方法结合桑格测序,我们发现操控凋落物暴露情况以及在树冠层中的位置会显著改变可可树的微生物群组成。将可可幼苗暴露于健康同种成年树的凋落物中,会使幼苗微生物群富含一种真菌内生菌,已知该内生菌可通过上调宿主防御途径来增强可可幼苗对病原体的抗性。结果,暴露于健康同种凋落物的幼苗遭受的病原体损害减少。我们的研究结果将影响微生物群落组装和组成的过程与其对宿主成功的功能后果联系起来,对于理解植物 - 微生物相互作用具有广泛意义。对植物 - 真菌微生物群的刻意操控对可可生产及一般其他农业系统也可能具有重要应用价值。

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