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Open AccessJournal ArticleDOI

The Tomato Terpene Synthase Gene Family

TLDR
In this paper, it was shown that the tomato genome contains 44 terpene synthase (TPS) genes, including 29 that are functional or potentially functional in at least some organs or tissues of the plant.
Abstract
Compounds of the terpenoid class play numerous roles in the interactions of plants with their environment, such as attracting pollinators and defending the plant against pests. We show here that the genome of cultivated tomato (Solanum lycopersicum) contains 44 terpene synthase (TPS) genes, including 29 that are functional or potentially functional. Of these 29 TPS genes, 26 were expressed in at least some organs or tissues of the plant. The enzymatic functions of eight of the TPS proteins were previously reported, and here we report the specific in vitro catalytic activity of 10 additional tomato terpene synthases. Many of the tomato TPS genes are found in clusters, notably on chromosomes 1, 2, 6, 8, and 10. All TPS family clades previously identified in angiosperms are also present in tomato. The largest clade of functional TPS genes found in tomato, with 12 members, is the TPS-a clade, and it appears to encode only sesquiterpene synthases, one of which is localized to the mitochondria, while the rest are likely cytosolic. A few additional sesquiterpene synthases are encoded by TPS-b clade genes. Some of the tomato sesquiterpene synthases use z,z-farnesyl diphosphate in vitro as well, or more efficiently than, the e,e-farnesyl diphosphate substrate. Genes encoding monoterpene synthases are also prevalent, and they fall into three clades: TPS-b, TPS-g, and TPS-e/f. With the exception of two enzymes involved in the synthesis of ent-kaurene, the precursor of gibberellins, no other tomato TPS genes could be demonstrated to encode diterpene synthases so far.

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Journal ArticleDOI

Susceptibility to Verticillium longisporum is linked to monoterpene production by TPS23/27 in Arabidopsis

TL;DR: Results show that TPS23/27-produced monoterpenes stimulate germination and subsequent invasion of V. longisporum in Arabidopsis roots and significantly altered levels of all identified TPS 23/27 monoterpene products were significantly altered in the transgenic plants.
Journal ArticleDOI

Production of trans-chrysanthemic acid, the monoterpene acid moiety of natural pyrethrin insecticides, in tomato fruit.

TL;DR: It is concluded that the tomato fruit is an alternative platform for the biosynthesis of trans-chrysanthemic acid by metabolic engineering.
Book ChapterDOI

Finding and analyzing plant metabolic gene clusters.

TL;DR: Approaches for the identification of secondary metabolic gene clusters in plants through forward and reverse genetics, map-based cloning, and genome mining are described and examples of methods used for the analysis and functional confirmation of new clusters are given.
Journal ArticleDOI

Proteomic snapshot of spearmint (Mentha spicata L.) leaf trichomes: A genuine terpenoid factory

TL;DR: This proteome analysis of M. spicata peltate trichomes has identified several candidate proteins that might be involved in terpenoid synthesis and transport.
Journal ArticleDOI

Intraspecific diversity of terpenes of Eucalyptus camaldulensis (Myrtaceae) at a continental scale

TL;DR: In this article, the authors studied variation in foliar terpenes in Eucalyptus camaldulensis and found that the concentration of terpene is highly variable among subspecies.
References
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Journal ArticleDOI

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Journal ArticleDOI

The genome of black cottonwood, Populus trichocarpa (Torr. & Gray)

Gerald A. Tuskan, +115 more
- 15 Sep 2006 - 
TL;DR: The draft genome of the black cottonwood tree, Populus trichocarpa, has been reported in this paper, with more than 45,000 putative protein-coding genes identified.
Journal ArticleDOI

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Takashi Matsumoto, +265 more
- 11 Aug 2005 - 
TL;DR: A map-based, finished quality sequence that covers 95% of the 389 Mb rice genome, including virtually all of the euchromatin and two complete centromeres, and finds evidence for widespread and recurrent gene transfer from the organelles to the nuclear chromosomes.
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