Ergot Alkaloids and their Hallucinogenic Potential in Morning Glories
Ulrike Steiner, Eckhard Leistner
Planta Medica March 2, 2018 DOI: 10.1055/a-0577-8049 via OpenAlex
Summary
AI-generated from the abstractErgot alkaloids from Central American morning glory species (Turbina corymbosa, Ipomoea violacea, Ipomoea asarifolia) are produced by fungi of the newly described genus Periglandula, which colonize peltate glandular trichomes on the leaves. These fungi cannot yet be cultured in vitro but synthesize ergot alkaloids that are translocated into the plant host. The symbiosis benefits both partners. Evolutionarily, the alkaloid gene cluster in this symbiosis likely has a conserved basic structure, whereas clusters in Claviceps and Epichloe fungi underwent ecological selection for alkaloid diversification.
Study at a glance
| Characteristics | Review Peer reviewed |
|---|---|
| Keywords | Morning Hallucinogen Traditional medicine Art Pharmacology |
| Citations | 28 |
| Key finding | Ergot alkaloids in Central American Convolvulaceae are produced by symbiotic Periglandula fungi associated with leaf glandular trichomes, with a conserved gene cluster structure compared to diversified clusters in other fungal genera. |
Abstract
Abstract Naturally occurring and semisynthetic ergot alkaloids play a role in health care or as recreational drugs in Western and indigenous Mexican societies. Evidence is summarized that ergot alkaloids present in Central American Convolvulaceae like Turbina corymbosa, Ipomoea violacea, and Ipomoea asarifolia are colonized by different species of a newly described clavicipitaceous fungal genus named Periglandula. The fungi are associated with peltate glandular trichomes on the adaxial leaf surface of its host plants. The Periglandula fungi are not yet culturable in vitro but were demonstrated to have the capacity to synthesize ergot alkaloids. The alkaloids do not remain in the fungal mycelium but are translocated via the glandular trichomes into their plant host. Both fungi and host benefit from a symbiotic lifestyle. In evolutionary terms the alkaloid biosynthetic gene cluster in the Periglandula/Ipomoea symbiosis is likely to have a conserved (basic) structure while biosynthetic ergot gene clusters within the genera Claviceps and Epichloe were under ecological selection for alkaloid diversification.