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菲氏叶猴核型的首次全面表征

First Comprehensive Characterization of Phayre's Leaf-Monkey () Karyotype.

作者信息

Fan Xiaobo, Pinthong Krit, de Oliveira Edivaldo H C, Tanomtong Alongklod, Chen Hongwei, Weise Anja, Liehr Thomas

机构信息

Bioengineering School, Xuzhou University of Technology, Xuzhou, China.

Jena University Hospital, Friedrich Schiller University, Institute of Human Genetics, Jena, Germany.

出版信息

Front Genet. 2022 Mar 11;13:841681. doi: 10.3389/fgene.2022.841681. eCollection 2022.

Abstract

The chromosomal homologies of human (-HSA) and (TPH-Phayre's leaf-monkey, family Cercopithecidae) have previously been studied by using classical chromosome staining/banding and fluorescence hybridization (FISH) from the 1970s to 1990s. In this study, we carried out molecular cytogenetics applying human multicolor banding (MCB), locus-specific, and human heterochromatin-specific probes to establish the first detailed chromosomal map of TPH, which was not available until now. Accordingly, it was possible to precisely determine evolutionary-conserved breakpoints (ECBs) and the orientation of evolutionary-conserved segments compared to HSA. It could be shown that five chromosomes remained completely unchanged between these two species, and 16 chromosomes underwent only intrachromosomal changes. In addition, 50 ECBs that failed to be resolved in previous reports were exactly identified and characterized in this study. It could also be shown that 43.5% of TPH centromere positions were conserved and 56.5% were altered compared to HSA. Interestingly, 82% ECBs in TPH corresponded to human fragile sites. Overall, this study is an essential contribution to future studies and reviews on chromosomal evolution in Cercopithecidae.

摘要

人类(-HSA)和叶猴(TPH,猕猴科)的染色体同源性此前在20世纪70年代至90年代期间通过经典染色体染色/显带和荧光原位杂交(FISH)进行了研究。在本研究中,我们应用人类多色带(MCB)、位点特异性和人类异染色质特异性探针进行分子细胞遗传学研究,以建立TPH的首张详细染色体图谱,该图谱此前并不存在。因此,与HSA相比,能够精确确定进化保守断点(ECB)和进化保守区段的方向。结果表明,这两个物种之间有五条染色体完全未发生变化,16条染色体仅发生了染色体内变化。此外,本研究准确鉴定并描述了50个在先前报告中未得到解决的ECB。与HSA相比,还发现TPH的着丝粒位置43.5%是保守的,56.5%发生了改变。有趣的是,TPH中82%的ECB对应于人类脆性位点。总体而言,本研究对猕猴科染色体进化的未来研究和综述做出了重要贡献。

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