Itoh Yuichiro, Kampf Kathy, Balakrishnan Christopher N, Arnold Arthur P
Department of Integrative Biology and Physiology, University of California, Los Angeles, CA 90095-1606, USA.
Chromosoma. 2011 Jun;120(3):255-64. doi: 10.1007/s00412-010-0308-3. Epub 2011 Jan 11.
We describe a karyotypic polymorphism on the zebra finch Z chromosome. This polymorphism was discovered because of a difference in the position of the centromere and because it occurs at varying frequencies in domesticated colonies in the USA and Germany and among two zebra finch subspecies. Using DNA fluorescent in situ hybridization to map specific Z genes and measurements of DNA replication, we show that this polymorphism is the result of a large pericentric inversion involving the majority of the chromosome. We sequenced a likely breakpoint for the inversion and found many repetitive sequences. Around the breakpoint, there are numerous repetitive sequences and several copies of PAK3 (p21-activated kinase 3)-related sequences (PAK3Z) which showed testes-specific expression by RT-PCR. Our findings further suggest that the sequenced genome of the zebra finch may be derived from a male heterozygote for the Z chromosome polymorphism. This finding, in combination with regional differences in the frequency of the polymorphism, has important consequences for future studies using zebra finches.
我们描述了斑胸草雀Z染色体上的一种核型多态性。发现这种多态性是由于着丝粒位置的差异,并且它在美国和德国的家养群体以及两个斑胸草雀亚种中出现的频率不同。通过使用DNA荧光原位杂交来定位特定的Z基因并测量DNA复制,我们表明这种多态性是一个涉及染色体大部分区域的大型臂间倒位的结果。我们对该倒位的一个可能断点进行了测序,发现了许多重复序列。在断点周围,有大量重复序列以及几个PAK3(p21激活激酶3)相关序列(PAK3Z)的拷贝,通过逆转录聚合酶链反应显示其具有睾丸特异性表达。我们的发现进一步表明,斑胸草雀的测序基因组可能来自Z染色体多态性的雄性杂合子。这一发现,结合多态性频率的区域差异,对未来使用斑胸草雀的研究具有重要意义。