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种子萌发和出土过程中驱动群落组装的功能微生物特征

Functional Microbial Features Driving Community Assembly During Seed Germination and Emergence.

作者信息

Torres-Cortés Gloria, Bonneau Sophie, Bouchez Olivier, Genthon Clémence, Briand Martial, Jacques Marie-Agnès, Barret Matthieu

机构信息

IRHS, INRA, Agrocampus Ouest, Université d'Angers, Beaucouzé, France.

INRA, US 1426, Castanet-Tolosan, France.

出版信息

Front Plant Sci. 2018 Jun 29;9:902. doi: 10.3389/fpls.2018.00902. eCollection 2018.

Abstract

Microbial interactions occurring on and around seeds are especially important for plant fitness since seed-borne microorganisms are the initial source of inoculum for the plant microbiota. In this study, we analyze structural and functional changes occurring within the plant microbiota at these early stages of the plant cycle, namely germination and emergence. To this purpose, we performed shotgun DNA sequencing of microbial assemblages associated to seeds, germinating seeds and seedlings of two plant species: bean and radish. We observed an enrichment of and during emergence and a set of functional traits linked to copiotrophy that could be responsible for this selection as a result of an increase of nutrient availability after germination. Representative bacterial isolates of taxa that are selected in seedlings showed indeed faster bacterial growth rate in comparison to seed-associated bacteria isolates. Finally, binning of metagenomics contigs results in the reconstruction of population genomes of the major bacterial taxa associated to the samples. Together, our results demonstrate that, although seed microbiota varied across plant species, nutrient availability during germination elicits changes of the composition of microbial communities by potentially selecting microbial groups with functional traits linked to copiotrophy. The data presented here represents the first attempts to empirically assess changes in the microbial community during plant emergence and moves us toward a more holistic understanding of the plant microbiome.

摘要

种子上及其周围发生的微生物相互作用对植物适应性尤为重要,因为种子携带的微生物是植物微生物群接种体的初始来源。在本研究中,我们分析了植物周期早期阶段(即发芽和出土)植物微生物群内发生的结构和功能变化。为此,我们对两种植物(豆类和萝卜)的种子、发芽种子和幼苗相关的微生物群落进行了鸟枪法DNA测序。我们观察到出土过程中 和 的富集,以及一组与富营养型相关的功能性状,发芽后营养物质可用性增加可能导致这种选择。与种子相关细菌分离株相比,在幼苗中选择的分类群的代表性细菌分离株确实显示出更快的细菌生长速度。最后,宏基因组重叠群的分箱导致了与样本相关的主要细菌分类群的群体基因组的重建。总之,我们的结果表明,尽管种子微生物群因植物物种而异,但发芽期间的营养物质可用性通过潜在地选择具有与富营养型相关功能性状的微生物群来引发微生物群落组成的变化。这里呈现的数据代表了对植物出土期间微生物群落变化进行实证评估的首次尝试,并使我们朝着对植物微生物组更全面的理解迈进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2c9/6034153/8bd2e41d004c/fpls-09-00902-g001.jpg

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