Related Experiment Video
Updated: Jan 2, 2026

A Wind Tunnel for Odor Mediated Insect Behavioural Assays
Published on: November 30, 2018
Evolution of a Novel and Adaptive Floral Scent in Wild Tobacco
Han Guo1, Nathalie D Lackus2, Tobias G Köllner2
1Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, Jena, Germany.
Abstract:
Many plants emit diverse floral scents that mediate plant-environment interactions and attain reproductive success. However, how plants evolve novel and adaptive biosynthetic pathways for floral volatiles remains unclear. Here, we show that in the wild tobacco, Nicotiana attenuata, a dominant species-specific floral volatile (benzyl acetone, BA) that attracts pollinators and deters florivore is synthesized by phenylalanine ammonia-lyase 4 (NaPAL4), isoflavone reductase 3 (NaIFR3), and chalcone synthase 3 (NaCHAL3). Transient expression of NaFIR3 alone in N. attenuata leaves is sufficient and necessary for ectopic foliar BA emissions, and coexpressing NaIFR3 with NaPAL4 and NaCHAL3 increased the BA emission levels. Independent changes in transcription of NaPAL4 and NaCHAL3 contributed to intraspecific variations of floral BA emission. However, among species, the gain of expression of NaIFR3 resulted in the biosynthesis of BA, which was only found in N. attenuata. This study suggests that novel metabolic pathways associated with adaptation can arise via reconfigurations of gene expression.
Related Concept Videos
Pollination and Flower Structure
Non-vascular Seedless Plants
What is Natural Selection?
Olfaction
The olfactory receptors are embedded in the cilia of the...
Genetics of Speciation
Transduction

