Cross-species chromosome painting among camel, cattle, pig and human: further insights into the putative Cetartiodactyla ancestral karyotype.

Gabriel Balmus, Vladimir A Trifonov, Larisa S Biltueva, Patricia C M O'Brien, Elena S Alkalaeva, Beiyuan Fu, Julian A Skidmore, Twink Allen, Alexander S Graphodatsky, Fengtang Yang, Malcolm A Ferguson-Smith
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引用次数: 93

Abstract

The great karyotypic differences between camel, cattle and pig, three important domestic animals, have been a challenge for comparative cytogenetic studies based on conventional cytogenetic approaches. To construct a genome-wide comparative chromosome map among these artiodactyls, we made a set of chromosome painting probes from the dromedary camel (Camelus dromedarius) by flow sorting and degenerate oligonucleotide primed-PCR. The painting probes were first used to characterize the karyotypes of the dromedary camel (C. dromedarius), the Bactrian camel (C. bactrianus), the guanaco (Lama guanicoe), the alpaca (L. pacos) and dromedary x guanaco hybrid karyotypes (all with 2n = 74). These FISH experiments enabled the establishment of a high-resolution GTG-banded karyotype, together with chromosome nomenclature and idiogram for C. dromedarius, and revealed that these camelid species have almost identical karyotypes, with only slight variations in the amount and distribution patterns of heterochromatin. Further cross-species chromosome painting between camel, cattle, pig and human with painting probes from the camel and human led to the establishment of genome-wide comparative maps. Between human and camel, pig and camel, and cattle and camel 47, 53 and 53 autosomal conserved segments were detected, respectively. Integrated analysis with previously published comparative maps of human/pig/cattle enabled us to propose a Cetartiodactyla ancestral karyotype and to discuss the early karyotype evolution of Cetartiodactyla. Furthermore, these maps will facilitate the positional cloning of genes by aiding the cross-species transfer of mapping information.

骆驼、牛、猪和人类之间的跨物种染色体绘制:对鲸鱼类祖先核型的进一步了解。
骆驼、牛和猪这三种重要的家畜之间的巨大核型差异对基于传统细胞遗传学方法的比较细胞遗传学研究提出了挑战。为了构建这些偶蹄动物的全基因组比较染色体图谱,我们利用流式分选和退化寡核苷酸引物pcr技术,从单峰骆驼(Camelus dromedarius)中制备了一组染色体染色探针。该探针首次用于单峰骆驼(C. dromedarius)、双峰驼(C. bactrianus)、瓜纳科骆驼(Lama guanicoe)、羊驼(L. pacos)和单峰与瓜纳科骆驼杂交核型(均为2n = 74)的鉴定。这些FISH实验建立了高分辨率的gtg带状核型,以及染色体命名法和特征图,揭示了这些骆驼物种几乎具有相同的核型,只有异染色质的数量和分布模式略有不同。利用骆驼和人类的绘制探针进一步绘制骆驼、牛、猪和人类的跨物种染色体图谱,建立了全基因组比较图谱。人与骆驼、猪与骆驼、牛与骆驼分别检测到47、53和53个常染色体保守片段。通过与先前发表的人/猪/牛的比较图谱的综合分析,我们提出了鲸形趾类祖先的核型,并讨论了鲸形趾类早期核型的进化。此外,这些图谱将通过帮助图谱信息的跨物种转移,促进基因的位置克隆。
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