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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

Terpene synthases and their contribution to herbivore-induced volatile emission in western balsam poplar ( Populus trichocarpa )

TL;DR: The data indicate that the formation of herbivore-induced volatile terpenes in P. trichocarpa is mainly regulated by transcript accumulation of multiple TPS genes and is likely mediated by jasmonates.
Journal ArticleDOI

RNA-seq discovery, functional characterization, and comparison of sesquiterpene synthases from Solanum lycopersicum and Solanum habrochaites trichomes

TL;DR: These data provide a foundation to study the evolution of terpene synthases in cultivated and wild tomato and do not completely explain the differences in sesquiterpene production between the two tomato plants.
Journal ArticleDOI

Integrative Analyses of Nontargeted Volatile Profiling and Transcriptome Data Provide Molecular Insight into VOC Diversity in Cucumber Plants (Cucumis sativus).

TL;DR: Qualitatively and quantitatively analyzed 85 volatile chemicals, including 36 volatile terpenes, in 23 different tissues of cucumber plants using solid-phase microextraction combined with gas chromatography-mass spectrometry and found most volatile chemicals were found to occur in a highly tissue-specific manner.
Journal ArticleDOI

UV-B irradiation differentially regulates terpene synthases and terpene content of peach.

TL;DR: TPS gene expression and volatile terpenoid production in field experiments, using bags transmitting high UV-B radiation, showed similar effects on peach volatiles to those from laboratory experiments, indicating that flavour components of peach fruits can be modulated by selecting an appropriate source of environmental screening material.
Journal ArticleDOI

Expression of terpene synthase genes associated with the formation of volatiles in different organs of Vitis vinifera

TL;DR: Real-time RT-PCR results revealed that the majority of TPS genes analysed exhibited detectable transcripts in all the organs investigated, while only some were found to be expressed specifically in one or just a few organs, which confirmed the subfunctionalization events and a specialization on the basis of the organs in which they are mostly expressed.
References
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Journal ArticleDOI

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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 - 
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