ArticlePlant communications2024
Genomes of Meniocus linifolius and Tetracme quadricornis reveal the ancestral karyotype and genomic features of core Brassicaceae.
Article in Plant communications, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 11 citations in OpenAlex.
- The Brassicaceae then and now: advancements in the past three decades, a review.Annals of botany · 2026Review
- Dynamic evolution of FLC/MAF-like genes accompanying Brassicaceae radiation.Annals of botany · 2026Article
- Article
- Pan-family pollen signals control an interspecific stigma barrier across Brassicaceae species.Science (New York, N.Y.) · 2026Article
- Article
- LGRPv2: A high-value platform for the advancement of Fabaceae genomics.Plant biotechnology journal · 2025Article
- Largest genome assembly in Brassicaceae: retrotransposon-driven genome expansion and karyotype evolution in Matthiola incana.Plant biotechnology journal · 2025Article
- Construction of Ancestral Chromosomes in Gymnosperms and the Application in Comparative Genomic Analysis.Plants (Basel, Switzerland) · 2025Article
- Chromosome fusions shaped karyotype evolution and evolutionary relationships in the model family Brassicaceae.Nature communications · 2025Article
- Comparative plastome analyses and evolutionary relationships of 25 East Asian species within the medicinal plant genusFrontiers in plant science · 2024Article
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Authors and funding
16 authors at 2 institutions in 1 country.
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Abstract
Brassicaceae represents an important plant family from both a scientific and economic perspective. However, genomic features related to the early diversification of this family have not been fully characterized, especially upon the uplift of the Tibetan Plateau, which was followed by increasing aridity in the Asian interior, intensifying monsoons in Eastern Asia, and significantly fluctuating daily temperatures. Here, we reveal the genomic architecture that accompanied early Brassicaceae diversification by analyzing two high-quality chromosome-level genomes for Meniocus linifolius (Arabodae; clade D) and Tetracme quadricornis (Hesperodae; clade E), together with genomes representing all major Brassicaceae clades and the basal Aethionemeae. We reconstructed an ancestral core Brassicaceae karyotype (CBK) containing 9 pseudochromosomes with 65 conserved syntenic genomic blocks and identified 9702 conserved genes in Brassicaceae. We detected pervasive conflicting phylogenomic signals accompanied by widespread ancient hybridization events, which correlate well with the early divergence of core Brassicaceae. We identified a successive Brassicaceae-specific expansion of the class I TREHALOSE-6-PHOSPHATE SYNTHASE 1 (TPS1) gene family, which encodes enzymes with essential regulatory roles in flowering time and embryo development. The TPS1s were mainly randomly amplified, followed by expression divergence. Our results provide fresh insights into historical genomic features coupled with Brassicaceae evolution and offer a potential model for broad-scale studies of adaptive radiation under an ever-changing environment.
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