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  4. Belowground Chemical Signaling in Maize: When Simplicity Rhymes with Efficiency
 
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Belowground Chemical Signaling in Maize: When Simplicity Rhymes with Efficiency

Auteur(s)
Hiltpold, Ivan 
PRN Biologie 
Turlings, Ted 
Institut de biologie 
Date de parution
2008
In
Journal of Chemical Ecology, Wiley, 2008/34/5/628-635
Mots-clés
  • Belowground tritrophic interactions
  • (<i>E</i>)-β-caryophyllene
  • Roots
  • Diffusion
  • Entomopathogenic nematodes
  • Indirect plant defense
  • Plant–insect interactions
  • Belowground tritrophi...

  • (<i>E</i>)-β-caryophy...

  • Roots

  • Diffusion

  • Entomopathogenic nema...

  • Indirect plant defens...

  • Plant–insect interact...

Résumé
Maize roots respond to feeding by larvae of the beetle <i>Diabrotica virgifera virgifera</i> by releasing (<i>E</i>)-β-caryophyllene. This sesquiterpene, which is not found in healthy maize roots, attracts the entomopathogenic nematode <i>Heterorhabditis megidis</i>. In sharp contrast to the emission of virtually only this single compound by damaged roots, maize leaves emit a blend of numerous volatile organic compounds in response to herbivory. To try to explain this difference between roots and leaves, we studied the diffusion properties of various maize volatiles in sand and soil. The best diffusing compounds were found to be terpenes. Only one other sesquiterpene known for maize, α-copaene, diffused better than (<i>E</i>)-β-caryophyllene, but biosynthesis of the former is far more costly for the plant than the latter. The diffusion of (<i>E</i>)-β-caryophyllene occurs through the gaseous rather than the aqueous phase, as it was found to diffuse faster and further at low moisture level. However, a water layer is needed to prevent complete loss through vertical diffusion, as was found for totally dry sand. Hence, it appears that maize has adapted to emit a readily diffusing and cost-effective belowground signal from its insect-damaged roots.
Identifiants
https://libra.unine.ch/handle/123456789/14810
_
10.1007/s10886-008-9467-6
Type de publication
journal article
Dossier(s) à télécharger
 main article: Hiltpold_Ivan_-_Belowground_Chemical_Signaling_in_Maize_20091109.pdf (431.66 KB)
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