del Priore Lucía, Pigozzi María I
INBIOMED (CONICET-UBA), Facultad de Medicina, Universidad de Buenos Aires, Buenos Aires, Argentina.
Cytogenet Genome Res. 2015;147(2-3):154-60. doi: 10.1159/000442656. Epub 2015 Dec 24.
In the zebra finch, 2 alternative morphs regarding centromere position were described for chromosome 6. This polymorphism was interpreted to be the result of a pericentric inversion, but other causes of the centromere repositioning were not ruled out. We used immunofluorescence localization to examine the distribution of MLH1 foci on synaptonemal complexes to test the prediction that pericentric inversions cause synaptic irregularities and/or crossover suppression in heterozygotes. We found complete suppression of crossing over in the region involved in the rearrangement in male and female heterozygotes. In contrast, the same region showed high levels of crossing over in homozygotes for the acrocentric form of this chromosome. No inversion loops or synaptic irregularities were detected along bivalent 6 in heterozygotes suggesting that heterologous pairing is achieved during zygotene or early pachytene. Altogether these findings strongly indicate that the polymorphic chromosome 6 originated by a pericentric inversion. Since inversions are common rearrangements in karyotypic evolution in birds, it seems likely that early heterologous pairing could help to fix these rearrangements, preventing crossing overs in heterozygotes and their deleterious effects on fertility.
在斑胸草雀中,已描述了6号染色体着丝粒位置的两种不同形态。这种多态性被解释为臂间倒位的结果,但并未排除着丝粒重新定位的其他原因。我们使用免疫荧光定位来检查联会复合体上MLH1位点的分布,以验证臂间倒位会导致杂合子出现突触不规则和/或交叉抑制这一预测。我们发现,在雄性和雌性杂合子中,重排所涉及区域的交叉完全受到抑制。相比之下,在该染色体近端着丝粒形式的纯合子中,同一区域显示出高水平的交叉。在杂合子的6号二价体上未检测到倒位环或突触不规则现象,这表明在偶线期或早粗线期实现了异源配对。总之,这些发现有力地表明,多态性6号染色体起源于臂间倒位。由于倒位是鸟类核型进化中常见的重排,早期异源配对似乎可能有助于固定这些重排,防止杂合子中的交叉及其对育性的有害影响。