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Biology subjects

Seregin, A. P.

Publications and source records attributed to Seregin, A. P..

2 recordsLinked to original sources

Integrating target capture with whole genome sequencing of recent and natural history collections to explain the phylogeography of wild-growing and cultivated Cannabis

O_LICannabis has provided important and versatile services to humans for millennia. Domestication and subsequent dispersal have resulted in various landraces and cultivars. Unravelling the phylogeography of this genus poses considerable challenges due to its complex history. C_LIO_LIWe relied on a Hyb-Seq approach (combining target capture with shotgun sequencing), with the universal Angiosperms353 enrichment panel, to explore the genetic structure of wild-growing accessions and cultivars by implementing phylogenomic and population genomic workflows on the same Hyb-Seq data. C_LIO_LIOur findings support the treatment of Cannabis as a monotypic genus (C. sativa L.), structured into three main genetic groups--E Asia, Paleotropis, and Boreal--with clear phylogeographic signal despite significant levels of admixture. The E Asia group was sister to the Paleotropis and the Boreal groups. Individuals within the Paleotropis group could be further structured into three subgroups: Iranian Plateau, C & S China and Himalayas, and Indoafrica. Individuals from the Boreal group split into two subgroups: Eurosiberia and W Mongolia and Caucasus and Mediterranean. Hemp and drug-type landraces and cultivars consistently matched their putative geographic origin. C_LIO_LIThese findings enhance our understanding of the genetic patterns in Cannabis and provide a framework for future research into its current and past genetic diversity. C_LI

genomics↗

Multiple polyploidizations in Arabidopsis lyrata stabilized by long-range adaptive introgression across Eurasia

Abundance of polyploidy varies across lineages, evolutionary time and geography, suggesting both genetics and environment play a role in polyploid persistence. Arabidopsis lyrata appears to be the most polyploidy-rich species-complex in the Arabidopsis genus, with multiple origins of autotetraploidy. This is revealed by genomic data from over 400 samples across Eurasia. We found over 30 previously undescribed autotetraploid populations in Siberia with a minimum of two separate origins, independent of those previously reported in Central Europe. The establishment of Siberian tetraploids is mediated by meiotic adaptation at the same genes as in European tetraploid A. lyrata and Arabidopsis arenosa, despite high divergence and geographical separation. Haplotype analysis based on synthetic long-read assemblies supports the long-range introgression of adaptive alleles from the tetraploid interspecific pool of European A. lyrata and A. arenosa to tetraploid Siberian A. lyrata. Once evolved, adaptation to polyploidy promotes the establishment of new polyploid lineages through adaptive inter- and intraspecific introgression.

genomics↗