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Biomedical subjects

Ilia J Leitch

Publications and source records attributed to Ilia J Leitch.

7 recordsLinked to original sources

Divergent trajectories of genome architecture and chromosome evolution in ferns and angiosperms.

Ferns and angiosperms represent the two largest vascular plant lineages but exhibit striking genomic and ecological contrasts. We investigated whether differences in genome size, chromosome architecture, GC content, and stomatal traits reveal divergent evolutionary trajectories between these lineages. We assembled the most comprehensive dataset to date, integrating genome size, chromosome number and size, GC content, and stomatal traits for over 1100 fern species and compared it with an extensive angiosperm dataset. Ferns exhibited markedly lower variability and c. 16-fold slower rates of chromosome size evolution than angiosperms. A persistent positive relationship between genome size and chromosome number in ferns suggests limited cytological post-polyploid diploidization. While ferns generally possess larger stomata, this difference disappears after accounting for genome size, indicating that nucleotypic constraints, rather than lineage-specific physiology, dictate stomatal dimensions. Both groups share a unimodal GC-genome size relationship peaking at c. 14 Gbp. Larger fern chromosomes imply lower genome-wide recombination rates, potentially limiting genetic reshuffling and adaptive potential. Our results highlight fundamentally divergent evolutionary trajectories, likely shaped by meiotic symmetry in ferns and meiotic asymmetry, possibly centromere drive, and post-polyploid diploidization in angiosperms, defining the functional and genomic landscapes of these lineages across deep evolutionary timescales.

Genome, Plant

The genome sequence of Veronica verna L., 1753 (Lamiales: Plantaginaceae).

We present a genome assembly of Veronica verna (Spring Speedwell; Streptophyta; Magnoliopsida; Lamiales; Plantaginaceae). The genome sequence has a total length of 463.88 megabases. Most of the assembly (98.85%) is scaffolded into 8 chromosomal pseudomolecules. The mitochondrial sequence has a length of 311.81 kilobases and the plastid genome assembly has a length of 149.82 kilobases. Gene annotation of this assembly on Ensembl identified 22 903 protein-coding genes. This assembly was generated as part of the Darwin Tree of Life project, which produces reference genomes for eukaryotic species found in Britain and Ireland.

Asterales

The genome sequence of Schoenoplectus triqueter (L.) Palla, 1888 (Poales: Cyperaceae).

We present a genome assembly of Schoenoplectus triqueter (Triangular Club-rush; Streptophyta; Magnoliopsida; Poales; Cyperaceae). The genome sequence has a total length of 580.26 megabases. Most of the assembly (98.75%) is scaffolded into 21 chromosomal pseudomolecules. Five mitochondrial sequences and the plastid genome were also assembled. Gene annotation of this assembly on Ensembl identified 31 746 protein-coding genes. This assembly was generated as part of the Darwin Tree of Life project, which produces reference genomes for eukaryotic species found in Britain and Ireland.

Poales

The genome sequence of Quercus cerris L., 1753 (Fagales: Fagaceae).

We present a genome assembly of Quercus cerris (Turkey oak; Streptophyta; Magnoliopsida; Fagales; Fagaceae). The genome sequence has a total length of 777.39 megabases. Most of the assembly (99.89%) is scaffolded into 12 chromosomal pseudomolecules. The mitochondrial sequences have lengths of 380.47 and 15.0 kilobases and the plastid genome assembly has a length of 161.2 kilobases. Gene annotation of this assembly on Ensembl identified 25 805 protein-coding genes. This assembly was generated as part of the Darwin Tree of Life project, which produces reference genomes for eukaryotic species found in Britain and Ireland.

Fagales

The genome sequence of Euphorbia lathyris L., 1753 (Malpighiales: Euphorbiaceae).

We present a genome assembly of Euphorbia lathyris (caper spurge; Streptophyta; Magnoliopsida; Malpighiales; Euphorbiaceae). The genome sequence has a total length of 1 020.39 megabases. Most of the assembly (99.88%) is scaffolded into 10 chromosomal pseudomolecules. The mitochondrial sequences have lengths of 886.36, 41.02, 86.31 and 32.73 kilobases and the plastid genome assembly has a length of 163.75 kilobases. Gene annotation of this assembly on Ensembl identified 26 361 protein-coding genes. This assembly was generated as part of the Darwin Tree of Life project, which produces reference genomes for eukaryotic species found in Britain and Ireland.

Euphorbia lathyris

Nucleolar dominance arises in Spartina homoploid hybrids and persists after allopolyploidization.

Allopolyploid Spartina anglica C.E. Hubbard (2n = 120-124) has become recognized as a model system of recent allopolyploid speciation. It arose by interspecific hybridization between S. alterniflora (2n = 62) introduced from North America and the native European S. maritima (2n = 60) about 150 years ago. In addition, sterile first-generation homoploid hybrids S. × townsendii and S. × neyrautii (both 2n = 62) are still extant. In this study, we carried out a population-level study of epigenetic silencing of 35S rDNA loci, also known as nucleolar dominance. Using molecular, genomic, and cytogenetic methods, we analyzed 75 individuals of S. anglica (collected from 11 French populations and 5 UK populations), 34 individuals of S. × townsendii (3 populations, all from the UK), and 2 individuals of S. × neyrautii from the south of France. We observed strong transcriptional dominance of S. alterniflora-inherited rDNA in all hybrid and allopolyploid individuals. The dominant rDNA units were nearly devoid of methylation at CWG sites, in contrast to those of the silenced S. maritima-inherited rDNA (M-loci), which exhibited hypermethylation. At the DNA level, few (2%) S. anglica individuals have completely lost M-loci, indicating that rDNA diploidization proceeds extremely fast in Spartina, and such a process may be influenced by preceding epigenetic processes. We conclude that nucleolar dominance is already present in extant homoploid hybrid lineages and is largely maintained in S. anglica, with occasional partial relaxation.

DNA, Ribosomal

The genome sequence of Greek sea-spurrey, Spergularia bocconei (Scheele) Graebn. (Caryophyllaceae).

We present a genome assembly from a specimen of Spergularia bocconei (Greek sea-spurrey; Streptophyta; Magnoliopsida; Caryophyllales; Caryophyllaceae). The genome sequence has a total length of 466.20 megabases. Most of the assembly is scaffolded into 18 chromosomal pseudomolecules suggesting the individual is an allotetraploid (2 n = 4 x = 36). The mitochondrial and plastid genome assemblies have lengths of 327.07 kilobases and 152.41 kilobases, respectively.

Boccone's sea-spurrey