Nanopore Third-Generation Sequencing for Comprehensive Analysis of Hemoglobinopathy Variants

Author:

Huang Weilun1,Qu Shoufang2,Qin Qiongzhen1,Yang Xu3,Han Wanqing3,Lai Yongli1,Chen Jiaqi4,Zhou Shihao5,Yang Xuexi6,Zhou Wanjun17ORCID

Affiliation:

1. Department of Medical Genetics, School of Basic Medical Sciences, Southern Medical University , Guangzhou , China

2. Division of In Vitro Diagnostics for Non-infectious diseases, National Institutes for Food and Drug Control , Beijing , China

3. Guangzhou Darui Biotechnology Co., Ltd. , Guangzhou , China

4. Department of Pediatrics, Southern Medical University Nanfang Hospital , Guangzhou , China

5. Department of Genetics, Changsha Hospital for Maternal and Child Health Care , Changsha , China

6. Institute of Antibody Engineering, School of Laboratory Medicine and Biotechnology, Southern Medical University , Guangzhou , China

7. Department of Laboratory Medicine, Southern Medical University Nanfang Hospital , Guangzhou , China

Abstract

Abstract Background Oxford Nanopore Technology (ONT) third-generation sequencing (TGS) is a versatile genetic diagnostic platform. However, it is nonetheless challenging to prepare long-template libraries for long-read TGS, particularly the ONT method for analysis of hemoglobinopathy variants involving complex structures and occurring in GC-rich and/or homologous regions. Methods A multiplex long PCR was designed to prepare library templates, including the whole-gene amplicons for HBA2/1, HBG2/1, HBD, and HBB, as well as the allelic amplicons for targeted deletions and special structural variations. Library construction was performed using long-PCR products, and sequencing was conducted on an Oxford Nanopore MinION instrument. Genotypes were identified based on integrative genomics viewer (IGV) plots. Results This novel long-read TGS method distinguished all single nucleotide variants and structural variants within HBA2/1, HBG2/1, HBD, and HBB based on the whole-gene sequence reads. Targeted deletions and special structural variations were also identified according to the specific allelic reads. The result of 158 α-/β-thalassemia samples showed 100% concordance with previously known genotypes. Conclusions This ONT TGS method is high-throughput, which can be used for molecular screening and genetic diagnosis of hemoglobinopathies. The strategy of multiplex long PCR is an efficient strategy for library preparation, providing a practical reference for TGS assay development.

Funder

National Natural Science Foundation of China

Basic and Applied Basic Research Foundation of Guangdong Province

Publisher

Oxford University Press (OUP)

Subject

Biochemistry (medical),Clinical Biochemistry

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1. Diagnosis and screening of abnormal hemoglobins;Clinica Chimica Acta;2024-01

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