Genome-wide association identifies a missing hydrolase for tocopherol synthesis in plants

Author:

Albert Elise1ORCID,Kim Sungsoo1ORCID,Magallanes-Lundback Maria1ORCID,Bao Yan1,Deason Nicholas1ORCID,Danilo Benoit1ORCID,Wu Di2ORCID,Li Xiaowei2ORCID,Wood Joshua C.3ORCID,Bornowski Nolan3ORCID,Gore Michael A.2ORCID,Buell C. Robin3ORCID,DellaPenna Dean1ORCID

Affiliation:

1. Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI 48824

2. Plant Breeding and Genetics Section, School of Integrative Plant Science, Cornell University, Ithaca, NY 14853

3. Department of Plant Biology, Michigan State University, East Lansing, MI 48824

Abstract

Significance Tocopherols (vitamin E) are plant-synthesized, lipid-soluble antioxidants whose dietary intake, primarily from seed oils, is essential for human health. Tocopherols contain a phytol-derived hydrophobic tail whose in vivo source has been elusive. The most significant genome-wide association signal for Arabidopsis seed tocopherols identified an uncharacterized, seed-specific esterase (VTE7) localized to the chloroplast envelope, where tocopherol synthesis occurs. VTE7 disruption and overexpression had large impacts on tissue tocopherol contents with metabolic phenotypes consistent with release of prenyl alcohols, including phytol, during chlorophyll synthesis, rather than from the bulk degradation of thylakoid chlorophylls as has long been assumed. Understanding the source of phytol for tocopherols will enable breeding and engineering plants for vitamin E biofortification and enhanced stress resilience.

Funder

National Science Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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