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Generation and Isolation of Cell Cycle-arrested Cells with Complex Karyotypes
Published on: April 13, 2018
Euchromatic Supernumerary Chromosomal Segments-Remnants of Ongoing Karyotype Restructuring in the Prospero autumnale
Tae-Soo Jang1,2, John S Parker3, Hanna Weiss-Schneeweiss4
1Department of Botany and Biodiversity Research, University of Vienna, A-1030 Vienna, Austria. jangts@cnu.ac.kr.
Abstract:
Supernumerary chromosomal segments (SCSs) represent additional chromosomal material that, unlike B chromosomes, is attached to the standard chromosome complement. The Prospero autumnale complex (Hyacinthaceae) is polymorphic for euchromatic large terminal SCSs located on the short arm of chromosome 1 in diploid cytotypes AA and B⁷B⁷, and tetraploid AAB⁷B⁷ and B⁶B⁶B⁷B⁷, in addition to on the short arm of chromosome 4 in polyploid B⁷B⁷B⁷B⁷ and B⁷B⁷B⁷B⁷B⁷B⁷ cytotypes. The genomic composition and evolutionary relationships among these SCSs have been assessed using fluorescence in situ hybridisation (FISH) with 5S and 35S ribosomal DNAs (rDNAs), satellite DNA PaB6, and a vertebrate-type telomeric repeat TTAGGG. Neither of the rDNA repeats were detected in SCSs, but most contained PaB6 and telomeric repeats, although these never spanned whole SCSs. Genomic in situ hybridisation (GISH) using A, B⁶, and B⁷ diploid genomic parental DNAs as probes revealed the consistently higher genomic affinity of SCSs in diploid hybrid B⁶B⁷ and allopolyploids AAB⁷B⁷ and B⁶B⁶B⁷B⁷ to genomic DNA of the B⁷ diploid cytotype. GISH results suggest a possible early origin of SCSs, especially that on chromosome 1, as by-products of the extensive genome restructuring within a putative ancestral P. autumnale B⁷ genome, predating the complex diversification at the diploid level and perhaps linked to B-chromosome evolution.
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