Evolutionary history and polyploidization lead to rapid shifts in chemodiversity of Hypericum
Xiao, X.; Schweiger, R.; Stein, E. R.; Dussarrat, T.; Koch, M. A.; Mueller, C.
Show abstract
Polyploidization can profoundly affect plant metabolite biosynthesis, yet its influence on chemodiversity remains poorly understood, despite the central role of chemodiversity in mediating plant interactions with the environment. The coexistence of facultative apomictic and sexual reproductive systems across ploidy levels in Hypericum provides an excellent model for investigating the evolution of chemodiversity following polyploidization. We analyzed ploidy levels and leaf metabolic fingerprints across selected populations of three Hypericum taxa, H. maculatum, H. perforatum subsp. perforatum and H. perforatum subsp. veronense. Polyploidization was common across all three taxa. Leaf metabolic fingerprints were more pronouncedly differentiated by the ploidy level of the mother plant (F0) than that of the offspring (F1). Although unique metabolic features emerged in plants of most ploidy levels, diploid plants exhibited fewer metabolic features than polyploid plants. Higher Shannon diversity, functional Hill diversity, and intensities of features belonging to specific chemical families were associated with higher F0 ploidy levels in H. perforatum subsp. perforatum, but not in H. maculatum and H. perforatum subsp. veronense. Our findings demonstrate that polyploidization can lead to rapid shifts in chemodiversity across generations in Hypericum. The fast divergence in chemodiversity associated with polyploidization in H. perforatum may contribute to its remarkable invasive potential.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A reference genome and transcriptome of haustorial development in Pedicularis groenlandica reveal diverse trajectories of haustoria-associated gene evolution in parasitic plants 94%
- Leaf anatomy is not correlated to CAM function in a C3+CAM hybrid species, Yucca gloriosa 93%
- Elevated CO2, Warming and Drought Differentially Impact Reproductive and Vegetative Economic Traits in Two Grassland Species 93%
Similar papers in this journal
- The architecture of resilience: a genome assembly of Myrothamnus flabellifolia sheds light on desiccation tolerance and sex determination 93%
- On the hybrid origin of the C2 Salsola divaricata agg. (Amaranthaceae) from C3 and C4 parental lineages 93%
- Vegetative Phase Change Causes Age-Dependent Changes in Phenotypic Plasticity 93%
Similar papers in this journal
- Increases in vein length compensate for leaf area lost to lobing in grapevine 92%
- Quantitative trait locus mapping reveals an independent genetic basis for joint divergence in leaf function, life-history, and floral traits between scarlet monkeyflower (Mimulus cardinalis) populations 92%
- The shared genetic basis of leaf morphology and tensile resistance underlies the effect of growing season length in a widespread perennial grass 92%
Similar papers in this journal
- Common, species-specific, and accession-specific responses of foliar phytohormones and morphological traits to drought and herbivory 94%
- Functional characterization of genes mediating cell wall metabolism and responses to plant cell wall integrity impairment 94%
- Transcriptional changes suggest a major involvement of Gibberellins in Trifolium pratense regrowth after mowing 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.