• Software
  • NOVA APPLICATIONS
    Protein Modeling
  • Molecular Biology
  • Automated Virtual Cloning
  • Clone Sequence Verification
  • Gel Electrophoresis Simulation
  • Multiple Sequence Alignment
  • Pairwise Sequence Alignment
  • PCR Site-Directed Mutagenesis
  • PCR Primer Design
  • Sanger Sequence Assembly
  • Protein Analysis
  • Protein Docking
  • Protein Structure Prediction
  • Genomics
  • Clinical Research
  • De Novo Genome Assembly
  • Variant Analysis
  • Whole Genome/Whole Exome
  • Transcriptomics
  • ChIP-seq Data Analysis
  • RNA-Seq Alignment and Analysis
  • Services
  • COVID-19
  • Product Updates
  • Product Notifications
  • Educational Software Request
  • Help + Tutorials
  • About
  • Contact

QUESTIONS? CALL 866.511.5090

DOWNLOAD FREE TRIAL
SHOPPING CART
MY ACCOUNT
DNASTAR DNASTAR
  • Software
  • NOVA APPLICATIONS
    Protein Modeling
  • Molecular Biology
  • Automated Virtual Cloning
  • Clone Sequence Verification
  • Gel Electrophoresis Simulation
  • Multiple Sequence Alignment
  • Pairwise Sequence Alignment
  • PCR Site-Directed Mutagenesis
  • PCR Primer Design
  • Sanger Sequence Assembly
  • Protein Analysis
  • Protein Docking
  • Protein Structure Prediction
  • Genomics
  • Clinical Research
  • De Novo Genome Assembly
  • Variant Analysis
  • Whole Genome/Whole Exome
  • Transcriptomics
  • ChIP-seq Data Analysis
  • RNA-Seq Alignment and Analysis
  • Services
  • COVID-19
  • Product Updates
  • Product Notifications
  • Educational Software Request
  • Help + Tutorials
  • About
  • Contact

Genome Polishing Benchmarks: SeqMan NGen vs. Three Open-Source Tools

Genome Polishing Benchmarks: SeqMan NGen vs. Three Open-Source Tools

April 23, 2020 DNASTAR News, Next-Gen Sequencing

What is “genome polishing”?

“Genome polishing,” sometimes referred to as “genome finishing,” is a workflow in which assembly software searches for local misassemblies and other inconsistencies in a draft genome assembly and then corrects them. Genome polishing can be used to create hybrid assemblies with Illumina data and long read sequencing data and is especially valuable for enhancing assembly results where there are concerns about single molecule or nanopore sequencing accuracy.

Our benchmarking test

This week, we published a white paper showing accuracy and other statistical benchmarks for SeqMan NGen’s genome polishing workflow versus several open-source tools. The SeqMan NGen workflow is called “Short read polishing of a long-read draft genome” and was released earlier this year as part of Lasergene 17.0.

The “Workflow” screen is the starting point for SeqMan NGen’s genome polishing workflow.

The first step in the genome polishing workflow was to use Canu to create draft genome assemblies for six eukaryotic and prokaryotic species from long-read sequencing data. These data sets were composed of PacBio reads or Oxford Nanopore Technologies “MinION” sequencing reads.

Illumina reads were then utilized to polish the assembly using one of three tools: SeqMan NGen, Pilon or SPAdes. This created either a PacBio-Illumina hybrid assembly or a MinION-Illumina hybrid assembly, depending on the sequencing technology used in each data set. The assemblies were then evaluated on various metrics for accuracy and genome coverage using This was done using QUAST 5.0.2, a quality assessment tool for evaluating and comparing genome assemblies. The unpolished Canu assemblies were also included in the QUAST analysis.

What did we learn?

What were the strengths and weaknesses of each tool? Which tool was the overall “winner” for genome finishing accuracy and ease of use? Which tool provides the ability to do downstream analysis of the completed hybrid assemblies?

To find out, view the white paper using the link below.

Try it yourself!

Try DNASTAR’s genome polishing workflow yourself with a fully-functional free trial of Lasergene. Use SeqMan NGen to create the hybrid assembly, then use SeqMan Pro and/or SeqMan Ultra to do downstream analysis, as shown in the image below.

Click the button below to get started.

SEE THE WHITE PAPER
TRY LASERGENE FREE
Viewing a hybrid assembly in SeqMan Ultra. The Scaffold Strategy view for two adjacent contigs is shown on top, while the Alignment views for the contigs are displayed below.
0
Share

Leave a Reply

Your email is safe with us.
Cancel Reply

Search Blog Posts

Categories

  • Blog
    • Best Practices
    • Clinical Research
    • DNASTAR Customer Stories
    • DNASTAR News
    • Newsletters
    • Next-Gen Sequencing
    • Press Releases
    • Product Notifications
    • Product Updates
    • Publications
    • Resources
    • Sequence Analysis
    • Structural Biology
    • Webinars
    • Workflows
  • featured post
  • Uncategorized

Recent Posts

  • Lasergene 17.3.3 Release Notes June 28, 2022
  • Why Structure Prediction Matters June 14, 2022
  • Expert Guided Protein Structure Prediction Webinar June 14, 2022
  • Why Structure Prediction Matters June 13, 2022
  • Why Structure Prediction Matters June 13, 2022

Tags

assembling sequences cloud Cloud Assemblies customers De Novo Assembly DNASTAR Genomics Lasergene Metagenomics Metagenomic Sequencing NCBI GenBank newsletters next-gen NGS NGS Sequence Alignment NGS Sequence Asembly publications seqbuilder pro SeqMan NGen sequence assembly Webinar

Archives

Find us on

Most Commented Posts

  • Eppley Institute Adopts DNASTAR Software By toms on March 13, 2013 0
  • Clustal Omega alignment does not complete and results in a “fatal error” message By Sharon Page on June 17, 2014 0
  • DNASTAR Lasergene Software Now Available on the Amazon Cloud By toms on September 4, 2014 0

Would you like to receive technical tips and special offers straight to your inbox?

  • About

Get a 14-Day free trial of our complete Lasergene package. Try before you buy!

FREE TRIAL DOWNLOAD

© 2026 — DNASTAR Privacy Policy

Prev Next
This website uses cookies to improve user experience and understand our web usage. By continuing to use our website, you consent to our use of cookies. Accept
Privacy & Cookies Policy

Privacy Overview

This website uses cookies to improve your experience while you navigate through the website. Out of these cookies, the cookies that are categorized as necessary are stored on your browser as they are essential for the working of basic functionalities of the website. We also use third-party cookies that help us analyze and understand how you use this website. These cookies will be stored in your browser only with your consent. You also have the option to opt-out of these cookies. But opting out of some of these cookies may have an effect on your browsing experience.
Necessary
Always Enabled

Necessary cookies are absolutely essential for the website to function properly. This category only includes cookies that ensures basic functionalities and security features of the website. These cookies do not store any personal information.

Non-necessary

Any cookies that may not be particularly necessary for the website to function and is used specifically to collect user personal data via analytics, ads, other embedded contents are termed as non-necessary cookies. It is mandatory to procure user consent prior to running these cookies on your website.