Chemotaxonomic Map of Labdane Diterpenoids in Acanthaceae

Abstract Terpenoids are among the most chemically diverse natural product classes in the plant kingdom and are a source of numerous nature-inspired human medicines. One specific subclass, diterpenoids, defined by a C20 skeleton, includes attractive compounds such as the anticancer drug Taxol, the sweetener steviol, and the plant hormone gibberellin. One specialized group of ent-labdane (bicyclic) diterpenoids, primarily reported from the genus Andrographis (Acanthaceae), is the source of andrographolides, a diverse array of bioactive scaffolds with anti-inflammatory, antioxidant, anticancer, antimicrobial, and antihyperglycemic properties. Using high-throughput metabolomics, we set out to examine the molecular diversity within the Acanthaceae family, alongside other taxonomic lineages reported to accumulate diterpenoids. In a combined metabolomic investigation of 31 genera spanning Acanthaceae, Lamiaceae, and Poaceae, we annotated several reported andrographolide-type labdane diterpenoids and characteristic compounds unique to Acanthaceae. Integration of chemical, geographic, and taxonomic metadata with literature-driven assessments helped paint a chemotaxonomic and phylogeographic distribution map of andrographolide-type labdane diterpenoids across 163 countries. We found several species accumulate at least seven andrographolide-type compounds and another 17 labdane diterpenoids in our analysis. We conclude that labdane diterpenoid accumulation is more widespread, with multicontinental and shared evolutionary origins, than previously recognized.

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Publication Details

Journal
Journal of Natural Products
Published
2026-09-11
DOI
https://doi.org/10.1021/acs.jnatprod.6c00498
Primary Topic
Andrographolide Research and Applications
Type
article
Field-Weighted Citation Impact
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article

Chemotaxonomic Map of Labdane Diterpenoids in Acanthaceae

Andrew Katz, Biswapriya B. Misra, Daniel Domingo‐Fernándéz, António J. Preto et al.
Journal of Natural Products
Andrographolide Research and Applications
article

Chemotaxonomic Map of Labdane Diterpenoids in Acanthaceae

Andrew Katz, Biswapriya B. Misra, Daniel Domingo‐Fernándéz, António J. Preto, Adam M. Bayless, Ifra Saifi, Daniel Wee, Viswa Colluru, William Wen, Erik DeBloois, Tendai Chisowa, Slack Patrick, August Allen, Shipp Jennifer
article en

Abstract

Abstract Terpenoids are among the most chemically diverse natural product classes in the plant kingdom and are a source of numerous nature-inspired human medicines. One specific subclass, diterpenoids, defined by a C20 skeleton, includes attractive compounds such as the anticancer drug Taxol, the sweetener steviol, and the plant hormone gibberellin. One specialized group of ent-labdane (bicyclic) diterpenoids, primarily reported from the genus Andrographis (Acanthaceae), is the source of andrographolides, a diverse array of bioactive scaffolds with anti-inflammatory, antioxidant, anticancer, antimicrobial, and antihyperglycemic properties. Using high-throughput metabolomics, we set out to examine the molecular diversity within the Acanthaceae family, alongside other taxonomic lineages reported to accumulate diterpenoids. In a combined metabolomic investigation of 31 genera spanning Acanthaceae, Lamiaceae, and Poaceae, we annotated several reported andrographolide-type labdane diterpenoids and characteristic compounds unique to Acanthaceae. Integration of chemical, geographic, and taxonomic metadata with literature-driven assessments helped paint a chemotaxonomic and phylogeographic distribution map of andrographolide-type labdane diterpenoids across 163 countries. We found several species accumulate at least seven andrographolide-type compounds and another 17 labdane diterpenoids in our analysis. We conclude that labdane diterpenoid accumulation is more widespread, with multicontinental and shared evolutionary origins, than previously recognized.

Journal of Natural Products
Enveda Therapeutics (United States) (US)
Openalex Percentile: Top 43%
Andrographolide Research and Applications
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