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Author Spotlight: Optimization of Performance Parameters of the TAGGG Telomere Length Assay
Published on: April 21, 2023
Efficient near-telomere-to-telomere assembly of nanopore simplex reads
Haoyu Cheng1, Han Qu2, Sean McKenzie3
1Department of Biomedical Informatics and Data Science, Yale School of Medicine, New Haven, CT, USA. haoyu.cheng@yale.edu.
Abstract:
Telomere-to-telomere (T2T) assembly is the ultimate goal for de novo genome assembly. Existing algorithms1,2 capable of near-T2T assembly all require Oxford Nanopore Technologies (ONT) ultra-long reads, which are costly and experimentally challenging to obtain and are thus often unavailable for samples without established cell lines3. Here we introduce hifiasm (ONT), an algorithm that can produce near-T2T assemblies from standard ONT simplex reads, eliminating the need for ultra-long sequencing. Compared with existing methods, hifiasm (ONT) reduces computational demands by an order of magnitude and reconstructs more chromosomes from telomere to telomere on the same datasets. This advance substantially broadens the feasibility of T2T assembly for applications previously limited by the high cost and experimental requirement of ultra-long reads.
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