Spatial chemistry of citrus reveals molecules bactericidal to Candidatus Liberibacter asiaticus
Aksenov, A. A.; Blacutt, A.; Ginnan, N.; Rolshausen, P.; Melnik, A. V.; Lotfi, A.; Gentry, E. C.; Ramasamy, M.; Zuniga, C.; Zengler, K.; Mandadi, K.; Dorrestein, P. C.; Roper, C.
Show abstract
Huanglongbing (HLB), associated with the psyllid-vectored phloem-limited bacterium, Candidatus Liberibacter asiaticus (CLas), is a disease threat to all citrus production worldwide. Currently, there are no sustainable curative or prophylactic treatments available. In this study, we utilized mass spectrometry (MS)-based metabolomics in combination with 3D molecular mapping to visualize complex chemistries within plant tissues to explore how these chemistries change in vivo in HLB-impacted trees. We demonstrate how spatial information from molecular maps of branches and single leaves yields insight into the biology not accessible otherwise. In particular, we found evidence that flavonoid biosynthesis is disrupted in HLB-impacted trees, and an increase in the polyamine, feruloylputrescine, is highly correlated with an increase in disease severity. Based on mechanistic details revealed by these molecular maps, followed by metabolic modeling, we formulated and tested the hypothesis that CLas infection either directly or indirectly converts the precursor compound, ferulic acid, to feruloylputrescine to suppress the antimicrobial effects of ferulic acid and biosynthetically downstream flavonoids. Using in vitro bioassays, we demonstrated that ferulic acid and bioflavonoids are indeed highly bactericidal to CLas, with the activity on par with a reference antibiotic, oxytetracycline, recently approved for HLB management. We propose these compounds should be evaluated as therapeutics alternatives to the antibiotics for HLB treatment. Overall, the utilized 3D metabolic mapping approach provides a promising methodological framework to identify pathogen-specific inhibitory compounds in planta for potential prophylactic or therapeutic applications.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Phylogenomics and metabolic engineering reveal a conserved gene cluster in Solanaceae plants for withanolide biosynthesis 95%
- Streptomyces alleviate abiotic stress in plant by producing pteridic acids 95%
- Resin acids play key roles in shaping microbial communities during degradation of spruce bark 95%
Similar papers in this journal
Similar papers in this journal
- LPMO-oxidized cellulose oligosaccharides evoke immunity in Arabidopsis conferring resistance towards necrotrophic fungus B. cinerea 95%
- Identification of anti-fungal bioactive terpenoids from the bioenergy crop switchgrass (Panicum virgatum) 94%
- Structural and Functional Analyses Explain Pea KAI2 Receptor Diversity and Reveal Stereoselective Catalysis During Signal Perception 93%
Similar papers in this journal
- A unique sulfotransferase-involving strigolactone biosynthetic route in Sorghum 94%
- Unravelling Induced Resistance in Strawberry: Distinct Metabolomic Signatures Define Cultivar-Specific Resistance to Botrytis cinerea 94%
- Floral scents of a deceptive plant are hyperdiverse and under population-specific phenotypic selection 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.