Bedoukian   RussellIPM   RussellIPM   Piezoelectric Micro-Sprayer


Home
Animal Taxa
Plant Taxa
Semiochemicals
Floral Compounds
Semiochemical Detail
Semiochemicals & Taxa
Synthesis
Control
Invasive spp.
References

Abstract

Guide

Alphascents
Pherobio
InsectScience
E-Econex
Counterpart-Semiochemicals
Print
Email to a Friend
Kindly Donate for The Pherobase

« Previous AbstractThe Complexity of Background Clutter Affects Nectar Bat Use of Flower Odor and Shape Cues    Next AbstractModulation of exploratory behavior in female mice by protein-borne male urinary molecules »

Front Plant Sci


Title:Biosynthesis and Emission of Stress-Induced Volatile Terpenes in Roots and Leaves of Switchgrass (Panicum virgatum L.)
Author(s):Muchlinski A; Chen X; Lovell JT; Kollner TG; Pelot KA; Zerbe P; Ruggiero M; Callaway L; Laliberte S; Chen F; Tholl D;
Address:"Department of Biological Sciences, Virginia Tech, Blacksburg, VA, United States. Department of Plant Sciences, University of Tennessee, Knoxville, TN, United States. Genome Sequencing Center, Hudson Alpha Institute for Biotechnology, Huntsville, AL, United States. Department of Biochemistry, Max Planck Institute for Chemical Ecology, Jena, Germany. Department of Plant Biology, University of California, Davis, Davis, CA, United States"
Journal Title:Front Plant Sci
Year:2019
Volume:20190919
Issue:
Page Number:1144 -
DOI: 10.3389/fpls.2019.01144
ISSN/ISBN:1664-462X (Print) 1664-462X (Electronic) 1664-462X (Linking)
Abstract:"Switchgrass (Panicum virgatum L.), a perennial C4 grass, represents an important species in natural and anthropogenic grasslands of North America. Its resilience to abiotic and biotic stress has made switchgrass a preferred bioenergy crop. However, little is known about the mechanisms of resistance of switchgrass against pathogens and herbivores. Volatile compounds such as terpenes have important activities in plant direct and indirect defense. Here, we show that switchgrass leaves emit blends of monoterpenes and sesquiterpenes upon feeding by the generalist insect herbivore Spodoptera frugiperda (fall armyworm) and in a systemic response to the treatment of roots with defense hormones. Belowground application of methyl jasmonate also induced the release of volatile terpenes from roots. To correlate the emission of terpenes with the expression and activity of their corresponding biosynthetic genes, we identified a gene family of 44 monoterpene and sesquiterpene synthases (mono- and sesqui-TPSs) of the type-a, type-b, type-g, and type-e subfamilies, of which 32 TPSs were found to be functionally active in vitro. The TPS genes are distributed over the K and N subgenomes with clusters occurring on several chromosomes. Synteny analysis revealed syntenic networks for approximately 30-40% of the switchgrass TPS genes in the genomes of Panicum hallii, Setaria italica, and Sorghum bicolor, suggesting shared TPS ancestry in the common progenitor of these grass lineages. Eighteen switchgrass TPS genes were substantially induced upon insect and hormone treatment and the enzymatic products of nine of these genes correlated with compounds of the induced volatile blends. In accordance with the emission of volatiles, TPS gene expression was induced systemically in response to belowground treatment, whereas this response was not observed upon aboveground feeding of S. frugiperda. Our results demonstrate complex above and belowground responses of induced volatile terpene metabolism in switchgrass and provide a framework for more detailed investigations of the function of terpenes in stress resistance in this monocot crop"
Keywords:defense herbivory switchgrass terpene synthase volatile;
Notes:"PubMed-not-MEDLINEMuchlinski, Andrew Chen, Xinlu Lovell, John T Kollner, Tobias G Pelot, Kyle A Zerbe, Philipp Ruggiero, Meredith Callaway, LeMar 3rd Laliberte, Suzanne Chen, Feng Tholl, Dorothea eng Switzerland 2019/10/15 Front Plant Sci. 2019 Sep 19; 10:1144. doi: 10.3389/fpls.2019.01144. eCollection 2019"

 
Back to top
 
Citation: El-Sayed AM 2024. The Pherobase: Database of Pheromones and Semiochemicals. <http://www.pherobase.com>.
© 2003-2024 The Pherobase - Extensive Database of Pheromones and Semiochemicals. Ashraf M. El-Sayed.
Page created on 29-06-2024