Two high-quality rose genomes underpin a novel Rosa pangenome to advance rose genomics, phylogenetics, and breeding
Yang, Z.; Schijlen, E. G. W. M.; Schranz, E.; Zwaan, B. J.; de Ridder, D.; Visser, R. G. F.; Arens, P. F. P.; Smulders, M. J. M.; van Velzen, R.; Keurentjes, J. J. B.; Bourke, P. M.; Smit, S.
Show abstract
Rosa, belonging to the family Rosaceae, encompasses more than 150 species which are widely distributed in the northern hemisphere. Renowned for their beauty, roses are cultivated throughout the world for ornamental purposes and the production of essential oils and perfumes. Despite their cultural and commercial significance, the genomic resources of wild Rosa species have not been studied comprehensively, hampering the understanding of their genetic diversity, evolutionary history, and breeding potential. Here we report on high-quality de novo genomes for Rosa sericea and Rosa rugosa. By integrating these two de novo genomes with existing public genomic resources, we have built a Rosaceae panproteome and a Rosa pangenome (spanning wild, traditional garden, and modern rose lineages) using a De Bruijn graph (DBG)-based approach. A maximum likelihood (ML) phylogeny of 18 Rosa haplotypes based on 4,367 single-copy core homology groups (genes) provided robust evolutionary inference, confirming the basal position of R. sericea, and enabled a gene-based macrosynteny analysis across the pangenome. Our analyses revealed significant genomic diversity among species, extensive variation in core gene content, and lineage-specific transposable element (TE) expansion patterns that contribute to the variation in Rosa genome size and to species-specific adaptations. The pangenome also revealed biased diversification of homology groups potentially linked to phenotypic plasticity in Rosa. Specifically, our analysis of the rose scent-related gene family, NUDX1, uncovered its evolutionary trajectory in Rosa, in which TEs insertions provided putative novel regulatory elements that facilitated adaptive evolution in metabolic pathways. This pangenomic study deepens our understanding of the genetic diversity and evolution of traits within the Rosa genus. In addition, the findings lay the foundation for future efforts to understand the genetic mechanisms driving trait evolution, which can support rose breeding.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A high-quality genome of the mangrove Aegiceras corniculatum aids investigation of molecular adaptation to intertidal environments 98%
- Nuclear phylogenomics of grasses (Poaceae) supports current classification and reveals repeated reticulation 97%
- Impact of parasitic lifestyle and different types of centromere organization on chromosome and genome evolution in the plant genus Cuscuta 96%
Similar papers in this journal
- Evolutionary analysis of conserved non-coding elements subsequent to whole-genome duplication in opium poppy 97%
- Whole Genome Assembly and Annotation of Northern Wild Rice, Zizania palustris L., Supports a Whole Genome Duplication in the Zizania Genus 96%
- A gap-free tomato genome built from complementary PacBio and Nanopore long DNA sequences reveals extensive linkage drag during breeding 96%
Similar papers in this journal
- The genome of Gynandropsis gynandra provides insights into whole-genome duplications and the evolution of C4 photosynthesis in Cleomaceae 98%
- NRC immune receptor networks show diversified hierarchical genetic architecture across plant lineages 95%
- Species-specific gene duplication in Arabidopsis thaliana evolved novel phenotypic effects on morphological traits under strong positive selection 95%
Similar papers in this journal
- A Citrullus genus super-pangenome reveals extensive variations in wild and cultivated watermelons and sheds light on watermelon evolution and domestication 97%
- Chromosome-level Thlaspi arvense genome provides new tools for translational research and for a newly domesticated cash cover crop of the cooler climates 97%
- A reference genome assembly of the alpine forage grass Elymus nutans 96%
Similar papers in this journal
- Telomere-to-telomere, gap-free genome of mung beans (Vigna radiata) provides insights into domestication under structural variation 97%
- Deciphering octoploid strawberry evolution with serial LTR similarity matrices for subgenome partition 97%
- A wild Cucurbita genome reveals the role of structural variants and introgression in domestication 94%
"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.