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葡萄砧木塑造地下细菌微生物组及其网络,但不影响其潜在功能。

Grapevine rootstocks shape underground bacterial microbiome and networking but not potential functionality.

机构信息

King Abdullah University of Science and Technology (KAUST), Biological and Environmental Sciences and Engineering Division (BESE), Thuwal, 23955-6900, Saudi Arabia.

Department of Food Environmental and Nutritional Sciences, Università degli Studi di Milano, 20133, Milano, Italy.

出版信息

Microbiome. 2018 Jan 3;6(1):3. doi: 10.1186/s40168-017-0391-2.

Abstract

BACKGROUND

The plant compartments of Vitis vinifera, including the rhizosphere, rhizoplane, root endosphere, phyllosphere and carposphere, provide unique niches that drive specific bacterial microbiome associations. The majority of phyllosphere endophytes originate from the soil and migrate up to the aerial compartments through the root endosphere. Thus, the soil and root endosphere partially define the aerial endosphere in the leaves and berries, contributing to the terroir of the fruit. However, V. vinifera cultivars are invariably grafted onto the rootstocks of other Vitis species and hybrids. It has been hypothesized that the plant species determines the microbiome of the root endosphere and, as a consequence, the aerial endosphere. In this work, we test the first part of this hypothesis. We investigate whether different rootstocks influence the bacteria selected from the surrounding soil, affecting the bacterial diversity and potential functionality of the rhizosphere and root endosphere.

METHODS

Bacterial microbiomes from both the root tissues and the rhizosphere of Barbera cultivars, both ungrafted and grafted on four different rootstocks, cultivated in the same soil from the same vineyard, were characterized by 16S rRNA high-throughput sequencing. To assess the influence of the root genotype on the bacterial communities' recruitment in the root system, (i) the phylogenetic diversity coupled with the predicted functional profiles and (ii) the co-occurrence bacterial networks were determined. Cultivation-dependent approaches were used to reveal the plant-growth promoting (PGP) potential associated with the grafted and ungrafted root systems.

RESULTS

Richness, diversity and bacterial community networking in the root compartments were significantly influenced by the rootstocks. Complementary to a shared bacterial microbiome, different subsets of soil bacteria, including those endowed with PGP traits, were selected by the root system compartments of different rootstocks. The interaction between the root compartments and the rootstock exerted a unique selective pressure that enhanced niche differentiation, but rootstock-specific bacterial communities were still recruited with conserved PGP traits.

CONCLUSION

While the rootstock significantly influences the taxonomy, structure and network properties of the bacterial community in grapevine roots, a homeostatic effect on the distribution of the predicted and potential functional PGP traits was found.

摘要

背景

葡萄属植物的植物区系,包括根际、根面、根内皮层、叶际和果内区,提供了独特的小生境,驱动了特定的细菌微生物组的关联。大多数叶际内生菌起源于土壤,并通过根内皮层向上迁移到气生区室。因此,土壤和根内皮层部分定义了叶片和浆果中的气生内皮层,为果实的风土条件做出了贡献。然而,葡萄品种总是嫁接到其他葡萄物种和杂种的砧木上。人们假设植物物种决定了根内皮层的微生物组,从而影响了气生内皮层。在这项工作中,我们检验了这一假设的第一部分。我们研究了不同的砧木是否会影响从周围土壤中选择的细菌,从而影响根际和根内皮层的细菌多样性和潜在功能。

方法

对在同一葡萄园同一土壤中种植的巴贝拉品种的未嫁接和嫁接在四种不同砧木上的根组织和根际的细菌微生物组进行了 16S rRNA 高通量测序。为了评估根基因型对根系中细菌群落招募的影响,(i)确定了系统发育多样性与预测功能谱的结合和(ii)细菌共生网络。采用培养依赖的方法来揭示与嫁接和未嫁接根系相关的植物生长促进(PGP)潜力。

结果

根区室的丰富度、多样性和细菌群落网络结构受到砧木的显著影响。除了共享的细菌微生物组外,不同根系统区室还选择了不同的土壤细菌亚群,包括具有 PGP 特性的土壤细菌亚群。根区室与砧木之间的相互作用施加了独特的选择压力,增强了小生境的分化,但仍招募了具有保守 PGP 特性的根系统特定的细菌群落。

结论

虽然砧木显著影响了葡萄根系细菌群落的分类学、结构和网络特性,但发现了对分布预测和潜在功能 PGP 特性的自稳态效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbb5/5751889/de89b595b26b/40168_2017_391_Fig1_HTML.jpg

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