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1474 results

Full text 2024

Targeted long-read sequencing to quantify methylation of the C9orf72 repeat expansion

Udine E, Finch NA, DeJesus-Hernandez M, et al.

<h4>Background</h4>The gene C9orf72 harbors a non-coding hexanucleotide repeat expansion known to cause amyotrophic lateral sclerosis and frontotemporal dementia. While previous studies have estimated the length of this repeat expansion in multiple tissues, technological limitations have …

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Epigenetics Nanopore Sequencing
Full text 2025

The rate and spectrum of new mutations in mice inferred by long-read sequencing

López-Cortegano E, Chebib J, Jonas A, et al.

All forms of genetic variation originate from new mutations, making it crucial to understand their rates and mechanisms. Here, we use long-read sequencing from Pacific Biosciences (PacBio) to investigate de novo mutations that accumulated in …

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Nanopore Sequencing Structural Variants
Full text 2025

DNA metabarcoding of mites from small soil samples: limited agreement with morphological identifications but improved results from long-read sequencing

Varusk S, Sammet K, Ariyan M, et al.

The characterization of soil mite (Acari) communities traditionally follows morphological identifications of specimens extracted from soil, which is a highly laborious and time-consuming process. Metabarcoding has become an increasingly utilized approach for species identification from …

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Nanopore Sequencing
Full text 2025

Notable challenges posed by long-read sequencing for the study of transcriptional diversity and genome annotation

Monzó C, Frankish A, Conesa A.

Long-read sequencing (LRS) technologies have revolutionized transcriptomic research by enabling the comprehensive sequencing of full-length transcripts. Using these technologies, researchers have reported tens of thousands of novel transcripts, even in well-annotated genomes, while developing new …

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Nanopore Sequencing Transcriptomics
Full text 2025

Long-read sequencing transforms the diagnosis of congenital adrenal hyperplasia: resolving pseudogene interference and structural variations

Zeng J, Huang X, Li Y, et al.

<h4>Background</h4>Congenital adrenal hyperplasia (CAH) is an autosomal recessive disorder primarily caused by defects in adrenal steroidogenesis. Conventional genetic methods struggle to resolve complex structural variations and pseudogene interference in key genes like <i>CYP21A2</i>. Our study …

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Bioinformatics Nanopore Sequencing Structural Variants
Full text 2025

Long-read sequencing analysis of non-classical congenital adrenal hyperplasia prevalence and carrier frequency in Chinese polycystic ovarian syndrome patients

Huang Y, Jiang H, Zhu X, et al.

<h4>Background</h4>Adrenocortical hyperplasia is an autosomal recessive disorder characterized by congenital metabolic dysfunction, resulting in endocrine disturbances and abnormal sexual development (such as female masculinity), requiring lifelong hormonal therapy. Notably, non-classical congenital adrenal hyperplasia (NCCAH) exhibits …

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Nanopore Sequencing