Variation of terpene alkaloids in Daphniphyllum macropodum across plants and tissues

Author:

Eljounaidi Kaouthar1ORCID,Radzikowska Barbara A.12ORCID,Whitehead Caragh B.1,Taylor Danielle J.1,Conde Susana3,Davis William1ORCID,Dowle Adam A.4ORCID,Langer Swen4ORCID,James Sally4ORCID,Unsworth William P.2ORCID,Ezer Daphne3ORCID,Larson Tony R.4ORCID,Lichman Benjamin R.1ORCID

Affiliation:

1. Centre for Novel Agricultural Products, Department of Biology University of York York YO10 5DD UK

2. Department of Chemistry University of York York YO10 5DD UK

3. Department of Biology University of York York YO10 5DD UK

4. Biosciences Technology Facility, Department of Biology University of York York YO10 5DD UK

Abstract

Summary Daphniphyllum macropodum produces alkaloids that are structurally complex with polycyclic, stereochemically rich carbon skeletons. Understanding how these compounds are formed by the plant may enable exploration of their biological function and bioactivities. We employed multiple metabolomics techniques, including a workflow to annotate compounds in the absence of standards, to compare alkaloid content across plants and tissues. Different alkaloid structural types were found to have distinct distributions between genotypes, between tissues and within tissues. Alkaloid structural types also showed different isotope labelling enrichments that matched their biosynthetic relationships. The work suggests that mevalonate derived 30‐carbon alkaloids are formed in the phloem region before their conversion to 22‐carbon alkaloids which accumulate in the epidermis. This sets the stage for further investigation into the biosynthetic pathway.

Funder

Biotechnology and Biological Sciences Research Council

UK Research and Innovation

Publisher

Wiley

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