4.8 Article

A specialized metabolic network selectively modulates Arabidopsis root microbiota

Journal

SCIENCE
Volume 364, Issue 6440, Pages 546-+

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aau6389

Keywords

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Funding

  1. National Institutes of Health Genome to Natural Products Network award [U101GM110699]
  2. Strategic Priority Research Program of the Chinese Academy of Sciences [XDB11020700]
  3. Key Research Program of the Chinese Academy of Sciences [KFZD-SW-112-02-02, KFZD-SW-219]
  4. International Cooperation and Exchanges NSFC grant [31761143017]
  5. Centre of Excellence for Plant and Microbial Sci3ences (CEPAMS)
  6. UK Biotechnology and Biological Sciences Research Council (BBSRC)
  7. Priority Research Program of the Chinese Academy of Sciences [QYZDB-SSW-SMC021]
  8. European Community's Seventh Framework Program (FP7/2007-2013) [613692]
  9. Engineering and Physical Sciences Research Council/BBSRC [BB/L014130/1]
  10. Research Foundation Flanders [G008417N]
  11. European Commission Marie Sklodowska-Curie Individual Fellowship [H2020-MSCA-IF-EF-ST-702478-TRIGEM]
  12. UK BBSRC Institute Strategic Programme Grant Molecules from Nature [BB/P012523/1]
  13. John Innes Foundation
  14. China Scholarship Council (CSC)
  15. Thousand Youth Talents Plan [2060299]
  16. Royal Society University Research Fellowship [UF160138]
  17. BBSRC [BB/T004363/1, BBS/E/J/000PR9790, BB/L014130/1, BBS/E/J/000CA533, BBS/E/J/000PR9794] Funding Source: UKRI

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Plant specialized metabolites have ecological functions, yet the presence of numerous uncharacterized biosynthetic genes in plant genomes suggests that many molecules remain unknown. We discovered a triterpene biosynthetic network in the roots of the small mustard plant Arabidopsis thaliana. Collectively, we have elucidated and reconstituted three divergent pathways for the biosynthesis of root triterpenes, namely thalianin (seven steps), thalianyl medium-chain fatty acid esters (three steps), and arabidin (five steps). A. thaliana mutants disrupted in the biosynthesis of these compounds have altered root microbiota. In vitro bioassays with purified compounds reveal selective growth modulation activities of pathway metabolites toward root microbiota members and their biochemical transformation and utilization by bacteria, supporting a role for this biosynthetic network in shaping an Arabidopsis-specific root microbial community.

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