Short Read Sequencing

Short-read sequencing is a high-throughput method for determining the nucleotide order of fragmented DNA or RNA by generating and analyzing millions of relatively short sequences, making it central to modern genetics. In typical workflows, nucleic acids are fragmented, adapter-ligated, and amplified into library molecules, then sequenced through repeated cycles of nucleotide incorporation and signal detection; computational tools align the resulting reads to a reference genome or assemble them de novo. Researchers use short-read sequencing to identify genetic variants, quantify gene expression, study microbial and human genomes, and investigate disease-associated mutations. Its accuracy and scalability support large studies, although repetitive regions and complex structural changes can be difficult to resolve.

Short Read Sequencing - Related Videos

Research

JoVE Journal - Biochemistry

Amplicon Sequencing using the Long-Read Sequencing Technologies

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2025

This protocol was optimized for targeted deep sequencing of 18 drug-resistance regions in Mycobacterium tuberculosis using a long-read sequencing platform, followed by analysis with a tuberculosis-specific bioinformatics pipeline designed for long-read data.

Research

JoVE Journal - Genetics
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Hybrid De Novo Genome Assembly for the Generation of Complete Genomes of Urinary Bacteria using Short- and Long-read Sequencing Technologies

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Cited by 9 •

2021

This protocol details a comprehensive approach for the culturing, sequencing, and de novo hybrid genome assembly of urinary bacteria. It provides a reproducible procedure for the generation of complete, circular genome sequences useful in studying both chromosomal and extrachromosomal genetic elements contributing to urinary colonization, pathogenesis, and antimicrobial resistance dissemination.

Purification of High Molecular Weight Genomic DNA from Powdery Mildew for Long-Read Sequencing

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Cited by 17 •

2017

Described here is a method for the extraction, purification, and quality control of genomic DNA from the obligate biotrophic fungal pathogen, powdery mildew, for use in long-read genome sequencing.

Ultra-long Read Sequencing for Whole Genomic DNA Analysis

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Cited by 28 •

2019

Long-read sequences greatly facilitate the assembly of complex genomes and characterization of structural variation. We describe a method to generate ultra-long sequences by nanopore-based sequencing platforms. The approach adopts an optimized DNA extraction followed by modified library preparations to generate hundreds of kilobase reads with moderate coverage from human cells.

Stretching Short Sequences of DNA with Constant Force Axial Optical Tweezers

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Cited by 5 •

2011

We illustrate the use of a constant force axial optical tweezers to explore the mechanical properties of short DNA molecules. By stretching DNA axially, we minimize steric hindrances and artifacts arising in conventional lateral manipulation, allowing us to study DNA molecules as short as ~100 nm.

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