Molecular cytogenetic characterization of a de novo derivative chromosome X with an unbalanced t(X;9) translocation in a fetus and literature review.

IF 1.3 4区 生物学 Q4 GENETICS & HEREDITY
Qiong Wu, Hui Kong, Yanyan Shen, Jing Chen
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引用次数: 0

Abstract

Partial trisomy 9p is one of the most frequent autosome anomalies in newborn infants featured by craniofacial dysmorphism, intellectual disability and psychomotor growth. Female patients carrying monosomy Xq usually show mild symptoms due to skewed X-chromosome inactivation (XCI). Unbalanced translocation between chromosome X and chromosome 9 is rare in prenatal diagnosis. The skewed inactivation of abnormal X would spread into the extra segment of chromosome 9 presented in the der(X) leading to mild phenotypes. We reported on a fetus with high risk of trisomy 9p(13.32 Mb 9p23-p24.3 duplication)suggested by noninvasive prenatal testing (NIPT), the fetus was normal by ultrasonography. G-banding with trypsin-giemsa (GTG), copy number variations sequencing (CNV-seq) and fluorescence in situ hybridization (FISH) were carried out to delineate the nature of rearrangement. Final karyotype of the fetus was identified as 46,X,der(X)t(X;9)(q27;p23)dn. An unbalanced X-autosome translocation with a deletion of Xqter-q27.2 and a duplication of 9pter-p23 led to mild phenotypes with no obvious alteration by prenatal ultrasonography, or obvious pathological alterations after pregnancy termination.

Abstract Image

胎儿t(X;9)易位不平衡的新生衍生染色体X的分子细胞遗传学特征及文献综述。
9p部分三体是新生儿中最常见的常染色体异常之一,表现为颅面畸形、智力残疾和精神运动性生长。携带单体Xq的女性患者通常表现为轻微的症状,这是由于x染色体失活(XCI)偏斜所致。在产前诊断中,X染色体和9染色体之间的不平衡易位是罕见的。异常X的偏失活会扩散到der(X)中呈现的9号染色体的额外片段,导致轻度表型。我们报告了一个无创产前检查(NIPT)提示的9p三体(13.32 Mb 9p23-p24.3重复)高危胎儿,超声检查显示胎儿正常。用胰蛋白酶-吉姆萨(GTG)的g带、拷贝数变异测序(CNV-seq)和荧光原位杂交(FISH)来描述重排的性质。胎儿最终核型鉴定为46,x,der(X)t(X;9)(q27;p23)dn。不平衡的x常染色体易位,缺失Xqter-q27.2和重复9pter-p23,导致表型轻微,产前超声检查无明显改变,终止妊娠后无明显病理改变。
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来源期刊
Molecular Cytogenetics
Molecular Cytogenetics GENETICS & HEREDITY-
CiteScore
2.60
自引率
7.70%
发文量
49
审稿时长
>12 weeks
期刊介绍: Molecular Cytogenetics encompasses all aspects of chromosome biology and the application of molecular cytogenetic techniques in all areas of biology and medicine, including structural and functional organization of the chromosome and nucleus, genome variation, expression and evolution, chromosome abnormalities and genomic variations in medical genetics and tumor genetics. Molecular Cytogenetics primarily defines a large set of the techniques that operate either with the entire genome or with specific targeted DNA sequences. Topical areas include, but are not limited to: -Structural and functional organization of chromosome and nucleus- Genome variation, expression and evolution- Animal and plant molecular cytogenetics and genomics- Chromosome abnormalities and genomic variations in clinical genetics- Applications in preimplantation, pre- and post-natal diagnosis- Applications in the central nervous system, cancer and haematology research- Previously unreported applications of molecular cytogenetic techniques- Development of new techniques or significant enhancements to established techniques. This journal is a source for numerous scientists all over the world, who wish to improve or introduce molecular cytogenetic techniques into their practice.
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