Majka Joanna, Zwierzykowski Zbigniew, Majka Maciej, Kosmala Arkadiusz
Institute of Plant Genetics, Polish Academy of Sciences, Strzeszyńska 34, 60-479, Poznań, Poland.
Protoplasma. 2018 Mar;255(2):451-458. doi: 10.1007/s00709-017-1161-5. Epub 2017 Sep 7.
Many different processes have an impact on the shape of plant karyotype. Recently, cytogenetic examination of Lolium species has revealed the occurrence of spontaneous fragile sites (FSs) associated with 35S rDNA regions. The FSs are defined as the chromosomal regions that are sensitive to forming gaps or breaks on chromosomes. The shape of karyotype can also be determined by interstitial telomeric sequences (ITSs), what was recognized for the first time in this paper in chromosomes of Festuca pratensis × Lolium perenne hybrids. Both FSs and ITSs can contribute to genome instabilities and chromosome rearrangements. To evaluate whether these cytogenetic phenomena have an impact on karyotype reshuffling observed in Festuca × Lolium hybrids, we examined F F. pratensis × L. perenne plants and generated F-F progeny by fluorescent in situ hybridization (FISH) using rDNA sequences, telomere and centromere probes, as well as by genomic in situ hybridization (GISH). Analyses using a combination of FISH and GISH revealed that intergenomic rearrangements did not correspond to FSs but overlapped with ITSs for several analyzed genotypes. It suggests that internal telomeric repeats can affect the shape of F. pratensis × L. perenne karyotypes. However, other factors that are involved in rearrangements and have a more crucial impact could exist, but they are still unknown.
许多不同的过程都会对植物核型的形态产生影响。最近,黑麦草属物种的细胞遗传学检查揭示了与35S rDNA区域相关的自发脆性位点(FSs)的存在。FSs被定义为对染色体上形成间隙或断裂敏感的染色体区域。核型的形态也可以由间插端粒序列(ITSs)决定,本文首次在草地羊茅×多年生黑麦草杂种的染色体中发现了这一现象。FSs和ITSs都可能导致基因组不稳定和染色体重排。为了评估这些细胞遗传学现象是否对在羊茅×黑麦草杂种中观察到的核型重排有影响,我们检查了草地羊茅×多年生黑麦草植株,并通过使用rDNA序列、端粒和着丝粒探针的荧光原位杂交(FISH)以及基因组原位杂交(GISH)产生了F-F后代。结合FISH和GISH的分析表明,对于几种分析的基因型,基因组间重排与FSs不对应,但与ITSs重叠。这表明内部端粒重复序列可以影响草地羊茅×多年生黑麦草核型的形态。然而,可能存在其他参与重排且具有更关键影响的因素,但它们仍然未知。