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三种蓝莓品种根际微生物组特征的比较与解读。

Comparison and interpretation of characteristics of Rhizosphere microbiomes of three blueberry varieties.

机构信息

School of Life Sciences, Hefei Normal University, Hefei, 230601, Anhui, China.

School of Life Sciences, Anhui Medical University, Hefei, 230032, Anhui, China.

出版信息

BMC Microbiol. 2021 Jan 22;21(1):30. doi: 10.1186/s12866-021-02092-7.

Abstract

BACKGROUND

Studies on the rhizosphere microbiome of various plants proved that rhizosphere microbiota carries out various vital functions and can regulate the growth and improve the yield of plants. However, the rhizosphere microbiome of commercial blueberry was only reported by a few studies and remains elusive. Comparison and interpretation of the characteristics of the rhizosphere microbiome of blueberry are critical important to maintain its health.

RESULTS

In this study, a total of 20 rhizosphere soil samples, including 15 rhizosphere soil samples from three different blueberry varieties and five bulk soil samples, were sequenced with a high-throughput sequencing strategy. Based on these sequencing datasets, we profiled the taxonomical, functional, and phenotypic compositions of rhizosphere microbial communities for three different blueberry varieties and compared our results with a previous study focused on the rhizosphere microbiome of blueberry varieties. Our results demonstrated significant differences in alpha diversity and beta diversity of rhizosphere microbial communities of different blueberry varieties and bulk soil. The distribution patterns of taxonomical, functional, and phenotypic compositions of rhizosphere microbiome differ across the blueberry varieties. The rhizosphere microbial communities of three different blueberry varieties could be distinctly separated, and 28 discriminative biomarkers were selected to distinguish these three blueberry varieties. Core rhizosphere microbiota for blueberry was identified, and it contained 201 OTUs, which were mainly affiliated with Proteobacteria, Actinobacteria, and Acidobacteria. Moreover, the interactions between OTUs of blueberry rhizosphere microbial communities were explored by a co-occurrence network of OTUs from an ecological perspective.

CONCLUSIONS

This pilot study explored the characteristics of blueberry's rhizosphere microbial community, such as the beneficial microorganisms and core microbiome, and provided an integrative perspective on blueberry's rhizosphere microbiome, which beneficial to blueberry health and production.

摘要

背景

对各种植物根际微生物组的研究表明,根际微生物群执行着各种重要功能,可调节植物生长并提高产量。然而,有关商业蓝莓根际微生物组的研究仅由少数研究报道,其特征仍不清楚。比较和解释蓝莓根际微生物组的特征对于维持其健康至关重要。

结果

本研究共采集了 20 个根际土壤样本,包括来自 3 个不同蓝莓品种的 15 个根际土壤样本和 5 个土壤样本,采用高通量测序策略进行测序。基于这些测序数据集,我们对 3 个不同蓝莓品种的根际微生物群落的分类学、功能和表型组成进行了分析,并将我们的结果与之前一项专注于蓝莓品种根际微生物组的研究进行了比较。我们的结果表明,不同蓝莓品种和土壤样本的根际微生物群落的 alpha 多样性和 beta 多样性存在显著差异。根际微生物组的分类学、功能和表型组成的分布模式在不同蓝莓品种之间存在差异。3 个不同蓝莓品种的根际微生物群落可以明显区分,选择了 28 个判别性生物标志物来区分这 3 个蓝莓品种。鉴定出了蓝莓的核心根际微生物组,其中包含 201 个 OTUs,主要归属于变形菌门、放线菌门和酸杆菌门。此外,还从生态角度通过 OTUs 的共现网络探索了蓝莓根际微生物群落中 OTUs 之间的相互作用。

结论

本研究探索了蓝莓根际微生物群落的特征,如有益微生物和核心微生物组,为蓝莓根际微生物组提供了一个综合视角,有助于蓝莓的健康和生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bca7/7821519/60ff1ad0f87e/12866_2021_2092_Fig1_HTML.jpg

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