Genes, enzymes and chemicals of terpenoid diversity in the constitutive and induced defence of conifers against insects and pathogens*
Top Cited Papers
- 9 May 2006
- journal article
- review article
- Published by Wiley in New Phytologist
- Vol. 170 (4) , 657-675
- https://doi.org/10.1111/j.1469-8137.2006.01716.x
Abstract
Summary: Insects select their hosts, but trees cannot select which herbivores will feed upon them. Thus, as long‐lived stationary organisms, conifers must resist the onslaught of varying and multiple attackers over their lifetime. Arguably, the greatest threats to conifers are herbivorous insects and their associated pathogens. Insects such as bark beetles, stem‐ and wood‐boring insects, shoot‐feeding weevils, and foliage‐feeding budworms and sawflies are among the most devastating pests of conifer forests. Conifer trees produce a great diversity of compounds, such as an enormous array of terpenoids and phenolics, that may impart resistance to a variety of herbivores and microorganisms. Insects have evolved to specialize in resistance to these chemicals – choosing, feeding upon, and colonizing hosts they perceive to be best suited to reproduction. This review focuses on the plant–insect interactions mediated by conifer‐produced terpenoids. To understand the role of terpenoids in conifer–insect interactions, we must understand how conifers produce the wide diversity of terpenoids, as well as understand how these specific compounds affect insect behaviour and physiology. This review examines what chemicals are produced, the genes and proteins involved in their biosynthesis, how they work, and how they are regulated. It also examines how insects and their associated pathogens interact with, elicit, and are affected by conifer‐produced terpenoids. Contents Summary 657 I. Introduction 658 II. Identification and functional characterization of terpenoid pathway genes 658 III. Insect interactions with conifers 667 IV. Conclusions and outlook 670 Acknowledgements 671 References 671Keywords
This publication has 155 references indexed in Scilit:
- Robust simple sequence repeat markers for spruce (Picea spp.) from expressed sequence tagsTheoretical and Applied Genetics, 2004
- Density‐mediated responses of bark beetles to host allelochemicals: a link between individual behaviour and population dynamicsEcological Entomology, 2002
- Prior encounters modulate subsequent choices in host acceptance behavior by the bark beetle Ips piniEntomologia Experimentalis et Applicata, 2002
- The biosynthesis of C5–C25 terpenoid compoundsNatural Product Reports, 2002
- Patterns of induced and constitutive monoterpene production in conifer needles in relation to insect herbivoryOecologia, 1998
- Interactions of ecologically similar saprogenic fungi with healthy and abiotically stressed conifersForest Ecology and Management, 1996
- Metabolic costs of terpenoid accumulation in higher plantsJournal of Chemical Ecology, 1994
- Isolation and identification of allelochemicals that attract the larval parasitoid,Cotesia marginiventris (Cresson), to the microhabitat of one of its hostsJournal of Chemical Ecology, 1991
- Limonene inhibits attraction to ?-pinene in the pine weevilsHylobius abietis andH. pinastriJournal of Chemical Ecology, 1990
- Mechanism of feeding discrimination between matured and juvenile foliage by two species of pine sawfliesJournal of Chemical Ecology, 1977