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孤儿豆科植物(Kersterning's groundnut)[Macrotyloma geocarpum (Harms) Marechal & Baudet]根际微生物群落结构。

Microbial community structure in the rhizosphere of the orphan legume Kersting's groundnut [Macrotyloma geocarpum (Harms) Marechal & Baudet].

机构信息

Department of Chemistry, Tshwane University of Technology, Arcadia campus, 175 Nelson Mandela Drive, Private Bag X680, Pretoria, 0001, South Africa.

Department of Crop Sciences, Tshwane University of Technology, Arcadia campus, Pretoria, South Africa.

出版信息

Mol Biol Rep. 2019 Aug;46(4):4471-4481. doi: 10.1007/s11033-019-04902-8. Epub 2019 Jun 12.

Abstract

The presence of microbial communities in the rhizosphere of plants is an important determinant of plant health and soil organic matter composition. Plant species play significant roles in selecting the specific microbial communities that inhabit the root zone. However, till now, there is no solid information regarding the presence of specific plant-microbiome in the rhizosphere of many plants, especially under-exploited and under-researched species such as Kersting's groundnut. This study assessed the effect of five Kersting's groundnut landraces on the structure of microbial communities in rhizosphere of field-grown plants. The five tested Kersting's groundnut landraces (Belane Mottled, Boli, Funsi, Puffeun and Heng Red Mottled) were found to exert a marked selective influence on bacteria associated with their rhizospheres, measured using 16S rDNA MiSeq illumina sequencing. Community differences in microbial composition and relative abundance were both significant. Numerous phyla in the rhizosphere were affected by the test landraces. Except for Belane mottled whose rhizospheres were dominated by Proteobacteria, the rhizosphere soils of the other landraces were dominated by Bacteroidetes. With the exception of landrace Puffeun which showed only Mesorhizobium in its rhizosphere, all the other test landraces revealed the presence of Bradyrhizobium and Rhizobium species of alpha Proteobacteria. Furthermore, the rhizosphere of all landraces were abundant in species of the indole-3-acetic-acid producing Sphingomonas and cellulose-degrading Fibrobacteres. The results of this study suggest that Kersting's groundnut landraces can shape bacterial community composition in the rhizosphere via plant-related changes in the rhizosphere soil.

摘要

植物根际中微生物群落的存在是影响植物健康和土壤有机质组成的重要因素。植物物种在选择栖息在根区的特定微生物群落方面起着重要作用。然而,到目前为止,对于许多植物,特别是那些尚未被充分开发和研究的植物(如 Kersting's groundnut)的根际中特定的植物-微生物组的存在,还没有确凿的信息。本研究评估了五种 Kersting's groundnut 地方品种对田间生长植物根际微生物群落结构的影响。研究发现,五种测试的 Kersting's groundnut 地方品种(Belane 杂斑、Boli、Funsi、Puffeun 和 Heng 红杂斑)对与其根际相关的细菌表现出明显的选择性影响,这是通过 16S rDNA MiSeq illumina 测序来衡量的。微生物组成和相对丰度的群落差异均具有统计学意义。根际中许多门都受到了试验地方品种的影响。除了 Belane 杂斑,其根际以 Proteobacteria 为主外,其他地方品种的根际土壤以 Bacteroidetes 为主。除了 Puffeun 地方品种仅在其根际中显示出 Mesorhizobium 外,所有其他试验地方品种都显示出 alpha Proteobacteria 的 Bradyrhizobium 和 Rhizobium 种的存在。此外,所有地方品种的根际都富含产生吲哚-3-乙酸的 Sphingomonas 和纤维素降解的 Fibrobacteres 物种。本研究结果表明,Kersting's groundnut 地方品种可以通过根际土壤中与植物相关的变化来塑造根际中的细菌群落组成。

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