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  4. Transcriptomic analysis of deceptively pollinated Arum maculatum (Araceae) reveals association between terpene synthase expression in floral trap chamber and species-specific pollinator attraction

Transcriptomic analysis of deceptively pollinated Arum maculatum (Araceae) reveals association between terpene synthase expression in floral trap chamber and species-specific pollinator attraction

Author(s)
Szenteczki, Mark  
Faculté des sciences  
Godschalx, Adrienne  
Laboratoire d'écologie fonctionnelle  
Gauthier, Jérémy
Gibernau, Marc
Rasmann, Sergio  
Laboratoire d'écologie fonctionnelle  
Alvarez, Nadir
Date issued
July 21, 2022
In
G3 Genes
Genomes
Genetics
Vol
9
No
12
From page
1
To page
14
Subjects
Chemical ecology GC–MS molecular ecology plant-pollinator interactions RNA-seq sesquiterpenes
Abstract
Deceptive pollination often involves volatile organic compound emissions that mislead insects into performing nonrewarding pollination. Among deceptively pollinated plants, Arum maculatum is particularly well-known for its potent dung-like volatile organic compound emissions and specialized floral chamber, which traps pollinators—mainly Psychoda phalaenoides and Psychoda grisescens—overnight. However, little is known about the genes underlying the production of many Arum maculatum volatile organic compounds, and their influence on variation in pollinator attraction rates. Therefore, we performed de novo transcriptome sequencing of Arum maculatum appendix and male floret tissue collected during anthesis and postanthesis, from 10 natural populations across Europe. These RNA-seq data were paired with gas chromatography–mass spectrometry analyses of floral scent composition and pollinator data collected from the same inflorescences. Differential expression analyses revealed candidate transcripts in appendix tissue linked to malodourous volatile organic compounds including indole, p-cresol, and 2-heptanone. In addition, we found that terpene synthase expression in male floret tissue during anthesis significantly covaried with sex- and species-specific attraction of Psychoda phalaenoides and Psychoda grisescens. Taken together, our results provide the first insights into molecular mechanisms underlying pollinator attraction patterns in Arum maculatum and highlight floral chamber sesquiterpene (e.g. bicyclogermacrene) synthases as interesting candidate genes for further study.
Publication type
journal article
Identifiers
https://libra.unine.ch/handle/20.500.14713/63224
DOI
10.1093/g3journal/jkac175/6647843
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2022-08-01_2943_2408.pdf

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