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 Abstract'Infotaxis' as a strategy for searching without gradients    Next Abstract"Electrophysiological and behavioral activity of secondary metabolites in the confused flour beetle, Tribolium confusum" »

Oecologia


Title:Compensation and resistance to herbivory in seagrasses: induced responses to simulated consumption by fish
Author(s):Verges A; Perez M; Alcoverro T; Romero J;
Address:"Centre d'Estudis Avancats de Blanes, CSIC, Acces a la Cala Sant Francesc, 14, 17300, Blanes, Girona, Spain. adriana@ceab.csic.es"
Journal Title:Oecologia
Year:2008
Volume:20080110
Issue:4
Page Number:751 - 760
DOI: 10.1007/s00442-007-0943-4
ISSN/ISBN:0029-8549 (Print) 0029-8549 (Linking)
Abstract:"Herbivory can induce changes in plant traits that may involve both tolerance mechanisms that compensate for biomass loss and resistance traits that reduce herbivore preference. Seagrasses are marine vascular plants that possess many attributes that may favour tolerance and compensatory growth, and they are also defended with mechanisms of resistance such as toughness and secondary metabolites. We quantified phenotypic changes induced by herbivore damage on the temperate seagrass Posidonia oceanica in order to identify specific compensatory and resistance mechanisms in this plant, and to assess any potential trade-offs between these two strategies of defence. We simulated three natural levels of fish herbivory by repeatedly clipping seagrass leaves during the summer period of maximum herbivory. Compensatory responses were determined by measuring shoot-specific growth, photosynthetic rate, and the concentration of nitrogen and carbon resources in leaves and rhizomes. Induced resistance was determined by measuring the concentration of phenolic secondary metabolites and by assessing the long-term effects of continued clipping on herbivore feeding preferences using bioassays. Plants showed a significant ability to compensate for low and moderate losses of leaf biomass by increasing aboveground growth of damaged shoots, but this was not supported by an increase in photosynthetic capacity. Low levels of herbivory induced compensatory growth without any measurable effects on stored resources. In contrast, nitrogen reserves in the rhizomes played a crucial role in the plant's ability to compensate and survive herbivore damage under moderate and high levels of herbivory, respectively. We found no evidence of inducibility of long-term resistance traits in response to herbivory. The concentration of phenolics decreased with increasing compensatory growth despite all treatments having similar carbon leaf content, suggesting reallocation of these compounds towards primary functions such as cell-wall construction"
Keywords:"Adaptation, Physiological/*physiology Alismatales/chemistry/*growth & development/*physiology Animals Carbon/analysis Eating/physiology Fishes/physiology *Models, Biological Nitrogen/analysis Phenols/analysis Photosynthesis/physiology Plant Leaves/chemist;"
Notes:"MedlineVerges, Adriana Perez, Marta Alcoverro, Teresa Romero, Javier eng Research Support, Non-U.S. Gov't Germany 2008/01/15 Oecologia. 2008 Apr; 155(4):751-60. doi: 10.1007/s00442-007-0943-4. Epub 2008 Jan 10"

 
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