Identification of Genes in Thuja plicata Foliar Terpenoid Defenses

Author:

Foster Adam J.1,Hall Dawn E.2,Mortimer Leanne1,Abercromby Shelley1,Gries Regine1,Gries Gerhard1,Bohlmann Jörg2,Russell John3,Mattsson Jim1

Affiliation:

1. Department of Biological Sciences, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6 (A.J.F., L.M., S.A., R.G., G.G., J.M.)

2. Michael Smith Laboratories, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4 (D.E.H., J.B.); and

3. British Columbia Forest Service, Cowichan Lake Research Station, Mesachie Lake, British Columbia, Canada V0R 2N0 (J.R.)

Abstract

Abstract Thuja plicata (western redcedar) is a long-lived conifer species whose foliage is rarely affected by disease or insect pests, but can be severely damaged by ungulate browsing. Deterrence to browsing correlates with high foliar levels of terpenoids, in particular the monoterpenoid α-thujone. Here, we set out to identify genes whose products may be involved in the production of α-thujone and other terpenoids in this species. First, we generated a foliar transcriptome database from which to draw candidate genes. Second, we mapped the storage of thujones and other terpenoids to foliar glands. Third, we used global expression profiling to identify more than 600 genes that are expressed at high levels in foliage with glands, but can either not be detected or are expressed at low levels in a natural variant lacking foliar glands. Fourth, we used in situ RNA hybridization to map the expression of a putative monoterpene synthase to the epithelium of glands and used enzyme assays with recombinant protein of the same gene to show that it produces sabinene, the monoterpene precursor of α-thujone. Finally, we identified candidate genes with predicted enzymatic functions for the conversion of sabinene to α-thujone. Taken together, this approach generated both general resources and detailed functional characterization in the identification of genes of foliar terpenoid biosynthesis in T. plicata.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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