生物
殖民地化
拟南芥
根际
转录组
代谢组学
代谢组
拟南芥
侧根
微生物群
代谢物
植物
微生物学
遗传学
细菌
突变体
基因
生物化学
生物信息学
基因表达
作者
Eliza P.I. Loo,Paloma Durán,Tin Yau Pang,Philipp Westhoff,Deng Chen,Carlos J. Durán‐Valle,Martin J. Lercher,Ruben Garrido‐Oter,Wolf B. Frommer
标识
DOI:10.1016/j.chom.2024.02.014
摘要
Plant roots are functionally heterogeneous in cellular architecture, transcriptome profile, metabolic state, and microbial immunity. We hypothesized that axial differentiation may also impact spatial colonization by root microbiota along the root axis. We developed two growth systems, ArtSoil and CD-Rhizotron, to grow and then dissect Arabidopsis thaliana roots into three segments. We demonstrate that distinct endospheric and rhizosphere bacterial communities colonize the segments, supporting the hypothesis of microbiota differentiation along the axis. Root metabolite profiling of each segment reveals differential metabolite enrichment and specificity. Bioinformatic analyses and GUS histochemistry indicate microbe-induced accumulation of SWEET2, 4, and 12 sugar uniporters. Profiling of root segments from sweet mutants shows altered spatial metabolic profiles and reorganization of endospheric root microbiota. This work reveals the interdependency between root metabolites and microbial colonization and the contribution of SWEETs to spatial diversity and stability of microbial ecosystem.
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