首页> 外文期刊>Clinical Genetics: An International Journal of Genetics in Medicine >Clinical application of whole-genome low-coverage next-generation sequencing to detect and characterize balanced chromosomal translocations
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Clinical application of whole-genome low-coverage next-generation sequencing to detect and characterize balanced chromosomal translocations

机译:全基因组低覆盖下一代测序检测和表征平衡染色体易位的临床应用

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摘要

Individuals carrying balanced translocations have a high risk of birth defects, recurrent spontaneous abortions and infertility. Thus, the detection and characterization of balanced translocations is important to reveal the genetic background of the carriers and to provide proper genetic counseling. Next-generation sequencing (NGS), which has great advantages over other methods such as karyotyping and fluorescence in situ hybridization (FISH), has been used to detect disease-associated breakpoints. Herein, to evaluate the application of this technology to detect balanced translocations in the clinic, we performed a parental study for prenatal cases with unbalanced translocations. Eight candidate families with potential balanced translocations were investigated using two strategies in parallel, low-coverage whole-genome sequencing (WGS) followed-up by Sanger sequencing and G-banding karyotype coupled with FISH. G-banding analysis revealed three balanced translocations, and FISH detected two cryptic submicroscopic balanced translocations. Consistently, WGS detected five balanced translocations and mapped all the breakpoints by Sanger sequencing. Analysis of the breakpoints revealed that six genes were disrupted in the four apparently healthy carriers. In summary, our result suggested low-coverage WGS can detect balanced translocations reliably and can map breakpoints precisely compared with conventional procedures. WGS may replace cytogenetic methods in the diagnosis of balanced translocation carriers in the clinic.
机译:携带平衡易位性的个体具有高患儿缺陷的风险,复发性自发性堕胎和不孕症。因此,平衡易位的检测和表征对于揭示载体的遗传背景并提供适当的遗传咨询是很重要的。下一代测序(NGS),其与其他方法(如核型化和荧光)原位杂交(鱼类)的荧光相比具有很大的优点,用于检测疾病相关的断裂点。在此,为了评估该技术的应用来检测临床中的平衡易位,我们对不平衡易位的产前病例进行了父母研究。通过Sanger测序和G-带状核型与鱼类,使用两种策略进行了两次并行,低覆盖的全基因组测序(WGS)的两种策略来研究具有潜在平衡易位的八个候选家族。 G型分析显示出三种平衡的易位性,鱼类检测到两个隐蔽的亚颌骨镜平衡易位。始终如一地,WGS检测到五个平衡易位,并通过Sanger测序映射所有断点。对断点的分析显示,在四个明显健康的携带者中扰乱了六种基因。总之,我们的结果建议低覆盖WG可以可靠地检测平衡易位性,并且可以与传统程序相比,可以将断点映射。 WGS可以取代细胞遗传学方法在诊断诊断诊断中的平衡易位载体。

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  • 作者单位

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    BGI Clin Lab BGI Hlth Shenzhen Peoples R China;

    BGI Shenzhen BGI Tianjin Binhai Genom Inst Tianjin Peoples R China;

    BGI Shenzhen BGI Tianjin Binhai Genom Inst Tianjin Peoples R China;

    BGI Shenzhen BGI Tianjin Binhai Genom Inst Tianjin Peoples R China;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

    Nanjing Med Univ Obstet &

    Gynecol Hosp Dept Prenatal Diag State Key Lab Reprod Med Nanjing;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

    balanced chromosomal translocation; chromosomal microarray; fluorescence in situ hybridization; high-throughput nucleotide sequencing; karyotyping; prenatal diagnosis;

    机译:平衡染色体易位;染色体微阵列;荧光原位杂交;高通量核苷酸测序;核型化;产前诊断;

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