Abstract Satellite DNA families are excellent markers in evolutionary studies of plant karyotypes. Together with phylogenetic background, they can provide additonal information on different scenarios accompanying the speciation and diversification of related species. The Lagoseris lineage of Crepis sensu lato constitutes an interesting model in such studies, mainly due to: (i) the presence of large chromosomes; (ii) several base chromosome numbers; and (iii) variation in genome sizes. We aimed to characterize the satellite families and compare their genomic and chromosomal organization to better understand the evolutionary pathways that shaped the genomes of the Lagoseris lineage. Eight different families of satellite repeats were identified in Crepis palaestina based on RepeatExplorer raw Illumina read analyses. Most of these satellites were present in five species studied from the Lagoseris lineage and organized in tandem arrays. If the particular repeat was present in the genome of the related species, its genomic organization showed similarity to the one observed in C. palaestina. This similar genomic organization was not often reflected at the chromosomal level, where many distinct distribution patterns were shown, from several major loci to numerous minor ones spread throughout the chromosomal arms. The evolution of satellite repeats is discussed in phylogenetic context.