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杨属全生物群:解析植物生境和基因型对微生物组的影响。

The Populus holobiont: dissecting the effects of plant niches and genotype on the microbiome.

机构信息

Biosciences Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd, Oak Ridge, TN, 37831, USA.

Present address: Department of Biochemistry & Molecular Biology, Brody School of Medicine, East Carolina Diabetes & Obesity Institute, East Carolina University, Greenville, NC, USA.

出版信息

Microbiome. 2018 Feb 12;6(1):31. doi: 10.1186/s40168-018-0413-8.

Abstract

BACKGROUND

Microorganisms serve important functions within numerous eukaryotic host organisms. An understanding of the variation in the plant niche-level microbiome, from rhizosphere soils to plant canopies, is imperative to gain a better understanding of how both the structural and functional processes of microbiomes impact the health of the overall plant holobiome. Using Populus trees as a model ecosystem, we characterized the archaeal/bacterial and fungal microbiome across 30 different tissue-level niches within replicated Populus deltoides and hybrid Populus trichocarpa × deltoides individuals using 16S and ITS2 rRNA gene analyses.

RESULTS

Our analyses indicate that archaeal/bacterial and fungal microbiomes varied primarily across broader plant habitat classes (leaves, stems, roots, soils) regardless of plant genotype, except for fungal communities within leaf niches, which were greatly impacted by the host genotype. Differences between tree genotypes are evident in the elevated presence of two potential fungal pathogens, Marssonina brunnea and Septoria sp., on hybrid P. trichocarpa × deltoides trees which may in turn be contributing to divergence in overall microbiome composition. Archaeal/bacterial diversity increased from leaves, to stem, to root, and to soil habitats, whereas fungal diversity was the greatest in stems and soils.

CONCLUSIONS

This study provides a holistic understanding of microbiome structure within a bioenergy relevant plant host, one of the most complete niche-level analyses of any plant. As such, it constitutes a detailed atlas or map for further hypothesis testing on the significance of individual microbial taxa within specific niches and habitats of Populus and a baseline for comparisons to other plant species.

摘要

背景

微生物在许多真核宿主生物中发挥着重要作用。了解植物小生境水平微生物组(从根际土壤到植物冠层)的变化,对于更好地理解微生物组的结构和功能过程如何影响整个植物整体微生物组的健康是至关重要的。我们以杨树为模式生态系统,使用 16S 和 ITS2 rRNA 基因分析,在 30 个不同的组织水平小生境中对拟南芥/细菌和真菌微生物组进行了特征描述,这些小生境存在于重复的美洲黑杨和杂交美洲黑杨×白杨个体中。

结果

我们的分析表明,无论植物基因型如何,拟南芥/细菌和真菌微生物组主要在更广泛的植物栖息地类别(叶片、茎、根、土壤)之间发生变化,除了叶片小生境中的真菌群落受宿主基因型的影响很大。树种之间的差异在两个潜在真菌病原体——Marssonina brunnea 和 Septoria sp.——在杂交 P. trichocarpa × deltoides 树上的高存在度上表现明显,这可能反过来又导致了整体微生物组组成的差异。拟南芥/细菌多样性从叶片、茎、根到土壤栖息地逐渐增加,而真菌多样性在茎和土壤中最大。

结论

本研究提供了对生物能源相关植物宿主内微生物组结构的全面理解,是对任何植物进行的最完整的小生境水平分析之一。因此,它构成了对杨树特定小生境和栖息地中单个微生物类群重要性的进一步假设检验的详细图谱或地图,也是与其他植物物种进行比较的基线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0df0/5810025/0b682072148f/40168_2018_413_Fig1_HTML.jpg

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