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一例表型影响轻微的纯种母马复杂不平衡性 X 染色体双着丝粒易位

Novel Complex Unbalanced Dicentric X-Autosome Rearrangement in a Thoroughbred Mare with a Mild Effect on the Phenotype.

机构信息

Estación Experimental Agraria Chincha, Dirección de Recursos Genéticos y Biotecnología, Instituto Nacional de Innovación Agraria, Ica, Peru.

Hagyard Equine Medical Institute, Lexington, Kentucky, USA.

出版信息

Cytogenet Genome Res. 2020;160(10):597-609. doi: 10.1159/000511236. Epub 2020 Nov 5.

Abstract

Complex structural X chromosome abnormalities are rare in humans and animals, and not recurrent. Yet, each case provides a fascinating opportunity to evaluate X chromosome content and functional status in relation to the effect on the phenotype. Here, we report the first equine case of a complex unbalanced X-autosome rearrangement in a healthy but short in stature Thoroughbred mare. Studies of about 200 cells by chromosome banding and FISH revealed an abnormal 2n = 63,X,der(X;16) karyotype with a large dicentric derivative chromosome (der). The der was comprised of normal Xp material, a palindromic duplication of Xq12q21, and a translocation of chromosome 16 to the inverted Xq12q21 segment by the centromere, whereas the distal Xq22q29 was deleted from the der. Microsatellite genotyping determined a paternal origin of the der. While there was no option to experimentally investigate the status of X chromosome inactivation (XCI), the observed mild phenotype of this case suggested the following scenario to retain an almost normal genetic balance: active normal X, inactivated X-portion of the der, but without XCI spreading into the translocated chromosome 16. Cases like this present unique resources to acquire information about species-specific features of X regulation and the role of X-linked genes in development, health, and disease.

摘要

复杂的结构性 X 染色体异常在人类和动物中较为罕见,且不具有复发性。然而,每一例都为评估 X 染色体的内容和功能状态及其对表型的影响提供了一个引人入胜的机会。在这里,我们报告了首例在一匹健康但身材矮小的纯种马里有一个复杂的不平衡 X-常染色体重排的马属动物病例。通过染色体带型和 FISH 对约 200 个细胞的研究显示,存在一个异常的 2n = 63,X,der(X;16) 核型,其中包括一个大型双着丝粒衍生染色体 (der)。der 由正常的 Xp 材料、Xq12q21 的回文重复和 16 号染色体的着丝粒易位到倒置的 Xq12q21 片段组成,而 der 的远端 Xq22q29 缺失。微卫星基因分型确定了 der 的父系来源。虽然没有办法对 X 染色体失活 (XCI) 的状态进行实验性研究,但这种情况下观察到的轻微表型表明了以下保留几乎正常遗传平衡的情况:正常的 X 染色体是活跃的,der 的 X 染色体部分是失活的,但 XCI 并没有扩散到易位的 16 号染色体中。像这样的病例为获得有关 X 调控物种特异性特征以及 X 连锁基因在发育、健康和疾病中的作用的信息提供了独特的资源。

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