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Contrasting pattern of subtelomeric satellites in the Cannabaceae family

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HORÁKOVÁ Lucie BACOVSKY Vaclav CEGAN Radim JANOUSEK Bohuslav PATZAK Josef HOBZA Roman

Rok publikování 2025
Druh Recenzovaný odborný článek
Časopis / Zdroj Frontiers in Plant Science
Fakulta / Pracoviště MU

Přírodovědecká fakulta

Citace
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Doi https://doi.org/10.3389/fpls.2025.1631369
Klíčová slova subtelomeric repeats; <italic>Humulus</italic>; satellite divergence; phylogenetics; metaphase chromosomes
Popis Introduction Satellite DNA (satDNA) is a rapidly evolving component of plant genomes, typically found in (peri)centromeric, (sub)telomeric, and other heterochromatic regions. Due to their variability and species- or population-specific distribution, satDNA serves as valuable cytogenetic markers for studying chromosomal rearrangements and karyotype evolution among closely related species. Previous studies have identified species-specific subtelomeric repeats CS-1 in Cannabis sativa, HSR1 in Humulus lupulus, and HJSR in Humulus japonicus. These satellites have been used to differentiate sex chromosomes from autosomes, however, their evolutionary origins, sequence variation and conservation pattern across related species remain largely unexplored. Methods In this study, we analyze sequence similarity among these satellites and assess their interspecific chromosomal localization using fluorescence in situ hybridization (FISH). Results Our results reveal that the HSR1 and HJSR satellites are shared across all studied species, suggesting their common origin from a shared pool of satDNA in their common ancestor. In contrast, the CS-1 satellite exhibits higher sequence divergence. Discussion Although all three satellites are predominantly localized in subtelomeric regions, we identified species-specific exceptions. These findings provide new insight into the evolutionary dynamics of satDNA within the Cannabaceae family and offer further support for the divergence of Humulus species.

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