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Tissue-Specific Emission of (E)-α-Bergamotene Helps Resolve the Dilemma When Pollinators Are Also Herbivores

  • Wenwu Zhou
  • , Anke Kügler
  • , Erica McGale
  • , Alexander Haverkamp
  • , Markus Knaden
  • , Han Guo
  • , Franziska Beran
  • , Felipe Yon
  • , Ran Li
  • , Nathalie Lackus
  • , Tobias G. Köllner
  • , Julia Bing
  • , Meredith C. Schuman
  • , Bill S. Hansson
  • , Danny Kessler
  • , Ian T. Baldwin
  • , Shuqing Xu
  • Max Planck Institute for Chemical Ecology
  • University of Hawaii at Manoa
  • German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig

Research output: Contribution to journalArticlepeer-review

76 Scopus citations

Abstract

More than 87% of flowering plant species are animal-pollinated [1] and produce floral scents and other signals to attract pollinators. These floral cues may however also attract antagonistic visitors, including herbivores [2]. The dilemma is exacerbated when adult insects pollinate the same plant that their larvae consume. It remains largely unclear how plants maximize their fitness under these circumstances. Here we show that in the night-flowering wild tobacco Nicotiana attenuata, the emission of a sesquiterpene, (E)-α-bergamotene, in flowers increases adult Manduca sexta moth-mediated pollination success, while the same compound in leaves is known to mediate indirect defense against M. sexta larvae [3, 4]. Forward and reverse genetic analyses demonstrated that both herbivory-induced and floral (E)-α-bergamotene are regulated by the expression of a monoterpene-synthase-derived sesquiterpene synthase (NaTPS38). The expression pattern of NaTPS38 also accounts for variation in (E)-α-bergamotene emission among natural accessions. These results highlight that differential expression of a single gene that results in tissue-specific emission of one compound contributes to resolving the dilemma for plants when their pollinators are also herbivores. Furthermore, this study provides genetic evidence that pollinators and herbivores interactively shape the evolution of floral signals and plant defense.

Original languageEnglish
Pages (from-to)1336-1341
Number of pages6
JournalCurrent Biology
Volume27
Issue number9
DOIs
StatePublished - 8 May 2017
Externally publishedYes

Keywords

  • (E)-α-bergamotene
  • Manduca sexta
  • Nicotiana attenuata
  • floral signal
  • herbivory-induced indirect defense
  • plant-herbivore interaction
  • plant-pollinator interaction
  • terpene synthase

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