The genetic basis for the production of toxic quinolizidine alkaloids in lupins

Lupins ( Lupinus spp.) are promising protein crops that accumulate bitter and toxic quinolizidine alkaloids (QAs). The effective removal of QAs through new breeding technologies is hampered by a poor understanding of their biosynthesis. In this study, we used pathway reconstruction and mutant analysis to elucidate the full QA pathway in L. angustifolius [narrow-leafed lupin (NLL)] comprising 15 enzymatic steps. Major latex protein–like proteins play a prominent role in the pathway by accelerating spontaneous chemical equilibria, and an oxidoreductase-like protein ensures stereoselectivity. We also engineered a new low-alkaloid NLL line and identified the causal mutation in an existing low-alkaloid line of L. albus. Our work reveals the genetic and biochemical basis of toxic QA production and streamlines the de novo domestication of wild lupins and other QA-containing legumes.

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Publication Details

Journal
Science
Published
2026-10-08
DOI
https://doi.org/10.1126/science.aei5520
Citations
1
Primary Topic
Botanical Research and Chemistry
Type
article
Field-Weighted Citation Impact
8.16
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article

The genetic basis for the production of toxic quinolizidine alkaloids in lupins

Hajar Golshadi Ghalehshahi, Davide Mancinotti, Ting Yang, Fernando Geu‐Flores et al.
1 citations
Science
Botanical Research and Chemistry
8.16
article

The genetic basis for the production of toxic quinolizidine alkaloids in lupins

Hajar Golshadi Ghalehshahi, Davide Mancinotti, Ting Yang, Fernando Geu‐Flores, Dan Stærk, Isabella Kruse-Andersen, Louise Kjærulff
article en
1 citations

Abstract

Lupins ( Lupinus spp.) are promising protein crops that accumulate bitter and toxic quinolizidine alkaloids (QAs). The effective removal of QAs through new breeding technologies is hampered by a poor understanding of their biosynthesis. In this study, we used pathway reconstruction and mutant analysis to elucidate the full QA pathway in L. angustifolius [narrow-leafed lupin (NLL)] comprising 15 enzymatic steps. Major latex protein–like proteins play a prominent role in the pathway by accelerating spontaneous chemical equilibria, and an oxidoreductase-like protein ensures stereoselectivity. We also engineered a new low-alkaloid NLL line and identified the causal mutation in an existing low-alkaloid line of L. albus. Our work reveals the genetic and biochemical basis of toxic QA production and streamlines the de novo domestication of wild lupins and other QA-containing legumes.

ScienceVol. 394(6820)
University of Copenhagen (DK)
Openalex Percentile: Top 2%
Botanical Research and Chemistry
8.16
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The genetic basis for the production of toxic quinolizidine alkaloids in lupins — Hajar Golshadi Ghalehshahi, Davide Mancinotti, et al. · Science (2026) | TGRS Research Map | TGRS