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定义的植物根室小样本重复之间出人意料的多样性。

Unexpected diversity among small-scale sample replicates of defined plant root compartments.

机构信息

Section of Microbiology, Department of Biology, University of Copenhagen, Copenhagen, Denmark.

Department of Agricultural Microbiology, Faculty of Agriculture, Zagazig University, Zagazig, Egypt.

出版信息

ISME J. 2022 Apr;16(4):997-1003. doi: 10.1038/s41396-021-01094-7. Epub 2021 Nov 10.

Abstract

Community assembly processes determine patterns of species distribution and abundance which are central to the ecology of microbiomes. When studying plant root microbiome assembly, it is typical to sample at the whole plant root system scale. However, sampling at these relatively large spatial scales may hinder the observability of intermediate processes. To study the relative importance of these processes, we employed millimetre-scale sampling of the cell elongation zone of individual roots. Both the rhizosphere and rhizoplane microbiomes were examined in fibrous and taproot model systems, represented by wheat and faba bean, respectively. Like others, we found that the plant root microbiome assembly is mainly driven by plant selection. However, based on variability between replicate millimetre-scale samples and comparisons with randomized null models, we infer that either priority effects during early root colonization or variable selection among replicate plant roots also determines root microbiome assembly.

摘要

群落组装过程决定了物种分布和丰度的模式,而这是微生物组生态学的核心。在研究植物根际微生物组组装时,通常在整个植物根系尺度上进行采样。然而,在这些相对较大的空间尺度上采样可能会阻碍中间过程的可观察性。为了研究这些过程的相对重要性,我们采用了个体根细胞伸长区的毫米级采样。在分别由小麦和蚕豆代表的纤维根和主根模型系统中,我们同时研究了根际和根面微生物组。和其他人一样,我们发现植物根际微生物组的组装主要是由植物选择驱动的。然而,基于重复毫米级样本之间的可变性和与随机化零模型的比较,我们推断,在早期根定植过程中的优先效应或重复植物根之间的可变选择也决定了根际微生物组的组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a62b/8940884/3238d12bb729/41396_2021_1094_Fig1_HTML.jpg

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