Lepidopteran herbivory and oral factors induce transcripts encoding novel terpene synthases in Medicago truncatula
- 19 January 2005
- journal article
- research article
- Published by Wiley in Archives of Insect Biochemistry and Physiology
- Vol. 58 (2) , 114-127
- https://doi.org/10.1002/arch.20037
Abstract
Terpenes are an important class of defense compounds that accumulate in plants after pathogen infection or arthropod injury. Sequences predicted to encode terpene synthases were selected from an expressed sequence tag (EST) database of Medicago truncatula. Four putative terpene synthase clones (MtTps1–MtTps4), originating from a chewing insect-damaged M. truncatula leaf cDNA library, were isolated. Transcript levels of each gene examined increased in response to artificial wounding, Spodoptera exigua herbivory, and treatment with volatile methyl jasmonate (meJA). Addition of S. exigua regurgitant to wound sites triggered transcript accumulation of MtTps1 and levels increased with higher concentrations of regurgitant. Furthermore, induction of MtTps1 occurred after application of N-linolenoyl-glutamate or N-linoleoyl-glutamate, factors found in lepidopteran regurgitant. Genomic DNA blots indicate that each of the putative proteins is encoded by a single-copy gene or a small gene family. Proteins encoded by MtTps3 and MtTps4 are imported into the soluble fraction of chloroplasts in in vitro assays, whereas proteins encoded by MtTps1 and MtTps2 are not imported into chloroplasts. Combined with sequence comparisons of multiple plant terpene synthases, the import data indicate that MtTps1 and MtTps2 likely encode sesquiterpene synthases and that MtTps3 and MtTps4 encode mono- or di-terpene synthases. In addition to serving as a valuable model legume species for genomic studies, M. truncatula should prove a valuable source of novel terpene-producing enzymes. Induction of wound-responsive genes by insect oral factors suggests that M. truncatula senses biotic damage through the presence of elicitors originating in the herbivore. Arch. Insect Biochem. Physiol. 58:114–127, 2005.Keywords
This publication has 40 references indexed in Scilit:
- Herbivore-Induced Defense Response in a Model Legume. Two-Spotted Spider Mites Induce Emission of (E)-β-Ocimene and Transcript Accumulation of (E)-β-Ocimene Synthase in Lotus japonicusPlant Physiology, 2004
- Differential Activity and Degradation of Plant Volatile Elicitors in Regurgitant of Tobacco Hornworm (Manduca sexta) LarvaeJournal of Chemical Ecology, 2003
- Identification and Synthesis of Volicitin and Related Components from Beet Armyworm Oral SecretionsJournal of Chemical Ecology, 2000
- Spider Mite-Induced (3S)-(E)-Nerolidol Synthase Activity in Cucumber and Lima Bean. The First Dedicated Step in Acyclic C11-Homoterpene BiosynthesisPlant Physiology, 1999
- Medicago truncatula — a model in the making!Current Opinion in Plant Biology, 1999
- Plant terpenoid synthases: Molecular biology and phylogenetic analysisProceedings of the National Academy of Sciences, 1998
- BIOSYNTHESIS AND ACTION OF JASMONATES IN PLANTSAnnual Review of Plant Biology, 1997
- An Elicitor of Plant Volatiles from Beet Armyworm Oral SecretionScience, 1997
- The Biochemistry and Molecular Biology of Isoprenoid MetabolismPlant Physiology, 1995
- Genomic sequencing.Proceedings of the National Academy of Sciences, 1984