Institute of Environmental Sciences (CML) , Leiden University , 2300 RA Leiden , Netherlands.
National Institute of Public Health and the Environment (RIVM) , Center for Safety of Substances and Products , Post Office Box 1, 3720 BA Bilthoven , Netherlands.
J Agric Food Chem. 2018 Mar 21;66(11):2645-2653. doi: 10.1021/acs.jafc.7b06155. Epub 2018 Feb 27.
The plant rhizosphere microbiota plays multiple roles in plant growth. We investigated the taxonomic and functional variations in the rhizosphere microbial community, examining both prokaryotes and eukaryotes, of four crops at the seedling stage: wheat, barley, and two rice varieties ( indica and japonica) seeded in paddy soil. The diversity of rhizosphere communities in these four species was determined. Results showed that wheat and barley had much stronger selection effects than rice for the rhizosphere microbial community. Functional metagenomic profiling indicated that a series of sequences related to glycan, limonene, and pinene degradation pathways as well as some relatively rare functions related to N or S metabolism were enriched in the rhizosphere soil. We conclude that the four tested crops induced the formation of the microbial community with specific features that may influence the plant growth but stochastic processes also appreciably influenced the functional selection.
植物根际微生物群落在植物生长中发挥着多种作用。我们研究了幼苗期四种作物(小麦、大麦和两种水稻品种(籼稻和粳稻))根际微生物群落的分类和功能变化,这些作物都种植在水田土壤中。我们确定了这四个物种根际群落的多样性。结果表明,小麦和大麦对根际微生物群落的选择作用比水稻强得多。功能宏基因组分析表明,一系列与聚糖、柠檬烯和蒎烯降解途径以及一些与 N 或 S 代谢相关的相对较少的功能相关的序列在根际土壤中富集。我们的结论是,这四种测试作物诱导形成了具有特定特征的微生物群落,这些特征可能影响植物的生长,但随机过程也显著影响了功能选择。