| Literature DB >> 23410024 |
Radka Symonová1, Zuzana Majtánová, Alexandr Sember, Georg B O Staaks, Jörg Bohlen, Jörg Freyhof, Marie Rábová, Petr Ráb.
Abstract
BACKGROUND: Sympatric species pairs are particularly common in freshwater fishes associated with postglacial lakes in northern temperate environments. The nature of divergences between co-occurring sympatric species, factors contributing to reproductive isolation and modes of genome evolution is a much debated topic in evolutionary biology addressed by various experimental tools. To the best of our knowledge, nobody approached this field using molecular cytogenetics. We examined chromosomes and genomes of one postglacial species pair, sympatric European winter-spawning Coregonus albula and the local endemic dwarf-sized spring-spawning C. fontanae, both originating in Lake Stechlin. We have employed molecular cytogenetic tools to identify the genomic differences between the two species of the sympatric pair on the sub-chromosomal level of resolution.Entities:
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Year: 2013 PMID: 23410024 PMCID: PMC3585787 DOI: 10.1186/1471-2148-13-42
Source DB: PubMed Journal: BMC Evol Biol ISSN: 1471-2148 Impact factor: 3.260
Figure 1Schematic representation of the 45S rDNA unit and FISH probes construction including primers nesting sites. (not to scale).
Figure 2Giemsa-stained metaphase plates and corresponding karyogram of (a, c) and (b, d). Bar = 5 μm.
Figure 3Metaphase plates and karyograms of and showing Chromomycin A/DAPI staining, FISH and CGH experiments. Chromomycin A3 (CMA3) fluorescent staining (green) and DAPI (blue) staining in C. albula (a) and C. fontanae (b). FISH with the 28S rDNA (300 bp probe) (red), DAPI counterstaining (blue) in C. albula (c). FISH with the 28S rDNA (800 bp probe) (red), DAPI counterstaining (blue) in C. fontanae (d). A set of reciprocal comparative genomic hybridization (CGH) experiments to C. albula chromosomes (e) and C. fontanae chromosomes (f). In both (e, f), the C. albula genomic DNA was labelled in red and the C. fontanae genomic DNA in green. Bar = 5 μm.
Figure 4Metaphase plates and selected chromosomes of and showing FISH experiments. FISH with ITS2 (red) as probe hybridized to C. albula (a) and to C. fontanae (b), counterstained with DAPI. Double-FISH analysis with the Rex1 retrotransposon (red) and the 800 bp 28S rDNA (green) to C. albula (c), detail of the chromosome with Rex1 and 28S rDNA co-localization in inset. FISH with the 18S rDNA (red) to C. fontanae chromosomes (d) counterstained with DAPI. Chromosomes bearing the ITS2 (red) signal in C. albula (e). Chromosomes bearing the 18S rDNA signals (red) in C. fontanae (f). Chromosomes on (f) represent the hypothetically ancestral condition of rDNA distribution prior to its multiplication in C. fontanae. Bar = 5 μm.
PCR primers used in this study
| 28S A | 3′ end of the 28S rDNA involving the regions A and B, F primer | AAA CTC TGG TGG AGG TCC GT | [ |
| 28S B | Internally nested in the regions A and B of the 28S rDNA, R primer | CTT ACC AAA AGT GGC CCA CTA | [ |
| 28S C1 | 5′ end of the 28S rDNA adjacent to the ITS2, F primer | ACC CGC TGA ATT TAA GCA T | [ |
| 28S D2 | Internally nested in the region C3 involving D2, C2, D1, C1, R primer | TCC GTG TTT CAA GAC GGG | [ |
| ITS1 | 3′ end of the 18S rDNA adjacent to the ITS1, F primer | TCC GTA GGT GAA CCT GCG G | [ |
| ITS2 | 3′ end of the 5.8S rDNA adjacent to the ITS2, R primer | GCT GCG TTC TTC ATC GAT GC | [ |
| ITS3 | 5′ end of the 5.8S rDNA adjacent to the ITS1, F primer | GCA TCG ATG AAG AAC GCA GC | [ |
| ITS4 | 5′ end of the 28S rDNA adjacent to the ITS2, R primer | TCC TCC GCT TAT TGA TAT GC | [ |
| NS1 | 5′ end of the 18S rDNA F primer | GTA GTC ATA TGC TTG TCT | [ |
| NS2 | 18 S rDNA R primer | GGC TGC TGG CAC CAG ACT TGC | [ |
| NS3 | 18 S rDNA F primer | GCA AGT CTG GTG CCA GCA GCC | [ |
| NS4 | 18 S rDNA R primer | CTT CCG TCA ATT CCT TTA AG | [ |
| NS5 | 18 S rDNA F primer | AAC TTA AAG GAA TTG ACG GAA G | [ |
| NS6 | 18 S rDNA R primer | GCA TCA CAG ACC TGT TAT TGC CTC | [ |
| NS7 | 18 S rDNA F primer | GAG GCA ATA ACA GGT CTG TGA TGC | [ |
| NS8 | 3′ end of the 18S rDNA R primer | TCC GCA GGT TCA CCT ACG GA | [ |
| RTX1F1 | Rex1 F primer | TTC TCC AGT GCC TTC AAC ACC | [ |
| RTX1R3 | Rex1 R primer | TCC CTC AGC AGA AAG AGT CTG CTC | [ |
| RTX3F1 | Rex3 F primer | TAC GGA GAA AAC CCA TTT CG | [ |
| RTX3F2 | Rex3 F primer | AAC ACC TTG GCT GCG CCT AG | [ |
| RTX3F3 | Rex3 F primer | CGG TGA YAA AGG GCA GCC CTG | [ |
| RTX3R1 | Rex3 R primer | AAA GTT CCT CGG TGG CAA GG | [ |
| RTX3R2 | Rex3 R primer | CCR GGG GTG GAT GAR RTC CGC CC | [ |
| RTX3R3 | Rex3 R primer | TGG CAG ACN GGG GTG GTG GT | [ |
| RTX6F | Rex6 F primer | TAA AGC ATA CAT GGA GCG CCA C | [ |
| RTX6R | Rex6 R primer | GGT CCT CTA CCA GAG GCC TGG G | [ |