Bidirectional Sequencing

Bidirectional sequencing is a genetic analysis strategy that determines the nucleotide sequence of a DNA region from both directions, improving confidence in the resulting sequence and variant calls. In practice, researchers use primers that initiate separate sequencing reactions on opposite sides or strands of a target, then align the forward and reverse reads to identify overlapping bases, resolve ambiguous signals, and distinguish true changes from read artifacts. This approach is especially useful for validating mutations, confirming engineered constructs, and interpreting difficult regions in diagnostic or research samples, making sequence results more reliable for downstream genetic analysis.

Bidirectional Sequencing - Related Videos

Research

JoVE Journal - Bioengineering
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Bidirectional Electrical and Optoelectronic Interfaces in Healthy and Ischemic Ex Vivo Rat Hearts

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2025

This protocol outlines advanced material fabrication and ex vivo rat heart methods for optical and electrical bidirectional biointerfacing, enabling precise cardiac stimulation, recording, and infarction modeling for bioelectronics research.

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.

Implanting a Wireless Bidirectional Microelectrode System in a Rat Brain

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2025

The video demonstrates a procedure for implanting a wireless bidirectional multichannel electrode unit into a rat brain to record and stimulate multichannel neural networks.

Bidirectional Retroviral Integration Site PCR Methodology and Quantitative Data Analysis Workflow

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Cited by 5 •

2017

This manuscript describes the experimental procedure and software analysis for a bidirectional integration site assay that can simultaneously analyze upstream and downstream vector-host junction DNA. Bidirectional PCR products can be used for any downstream sequencing platform. The resulting data are useful for a high-throughput, quantitative comparison of integrated DNA targets.

Wild-type Blocking PCR Combined with Direct Sequencing as a Highly Sensitive Method for Detection of Low-Frequency Somatic Mutations

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Cited by 5 •

2017

Wild-type blocking PCR followed by direct sequencing offers a highly sensitive method of detection for low frequency somatic mutations in a variety of sample types.

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