Engineered yeast genomes accurately assembled from pure and mixed samples

The cost and complexity of whole genome sequencing limits its use in identifying and validating sequences used for genetic engineering and synthetic biology. Here the authors present Prymetime, an integrated workflow to sequence engineered strains and identify engineering in metagenomes.

Bibliographic Details
Main Authors: Joseph H. Collins, Kevin W. Keating, Trent R. Jones, Shravani Balaji, Celeste B. Marsan, Marina Çomo, Zachary J. Newlon, Tom Mitchell, Bryan Bartley, Aaron Adler, Nicholas Roehner, Eric M. Young
Format: Article
Language:English
Published: Nature Publishing Group 2021-03-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-21656-9
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spelling doaj-a84252f6c5bb479cb7fcefe72ee9704b2021-03-11T11:32:29ZengNature Publishing GroupNature Communications2041-17232021-03-0112111510.1038/s41467-021-21656-9Engineered yeast genomes accurately assembled from pure and mixed samplesJoseph H. Collins0Kevin W. Keating1Trent R. Jones2Shravani Balaji3Celeste B. Marsan4Marina Çomo5Zachary J. Newlon6Tom Mitchell7Bryan Bartley8Aaron Adler9Nicholas Roehner10Eric M. Young11Department of Chemical Engineering, Worcester Polytechnic InstituteDepartment of Chemical Engineering, Worcester Polytechnic InstituteDepartment of Chemical Engineering, Worcester Polytechnic InstituteDepartment of Chemical Engineering, Worcester Polytechnic InstituteDepartment of Chemical Engineering, Worcester Polytechnic InstituteDepartment of Chemical Engineering, Worcester Polytechnic InstituteDepartment of Chemical Engineering, Worcester Polytechnic InstituteSynthetic Biology, Raytheon BBN TechnologiesSynthetic Biology, Raytheon BBN TechnologiesSynthetic Biology, Raytheon BBN TechnologiesSynthetic Biology, Raytheon BBN TechnologiesDepartment of Chemical Engineering, Worcester Polytechnic InstituteThe cost and complexity of whole genome sequencing limits its use in identifying and validating sequences used for genetic engineering and synthetic biology. Here the authors present Prymetime, an integrated workflow to sequence engineered strains and identify engineering in metagenomes.https://doi.org/10.1038/s41467-021-21656-9
collection DOAJ
language English
format Article
sources DOAJ
author Joseph H. Collins
Kevin W. Keating
Trent R. Jones
Shravani Balaji
Celeste B. Marsan
Marina Çomo
Zachary J. Newlon
Tom Mitchell
Bryan Bartley
Aaron Adler
Nicholas Roehner
Eric M. Young
spellingShingle Joseph H. Collins
Kevin W. Keating
Trent R. Jones
Shravani Balaji
Celeste B. Marsan
Marina Çomo
Zachary J. Newlon
Tom Mitchell
Bryan Bartley
Aaron Adler
Nicholas Roehner
Eric M. Young
Engineered yeast genomes accurately assembled from pure and mixed samples
Nature Communications
author_facet Joseph H. Collins
Kevin W. Keating
Trent R. Jones
Shravani Balaji
Celeste B. Marsan
Marina Çomo
Zachary J. Newlon
Tom Mitchell
Bryan Bartley
Aaron Adler
Nicholas Roehner
Eric M. Young
author_sort Joseph H. Collins
title Engineered yeast genomes accurately assembled from pure and mixed samples
title_short Engineered yeast genomes accurately assembled from pure and mixed samples
title_full Engineered yeast genomes accurately assembled from pure and mixed samples
title_fullStr Engineered yeast genomes accurately assembled from pure and mixed samples
title_full_unstemmed Engineered yeast genomes accurately assembled from pure and mixed samples
title_sort engineered yeast genomes accurately assembled from pure and mixed samples
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2021-03-01
description The cost and complexity of whole genome sequencing limits its use in identifying and validating sequences used for genetic engineering and synthetic biology. Here the authors present Prymetime, an integrated workflow to sequence engineered strains and identify engineering in metagenomes.
url https://doi.org/10.1038/s41467-021-21656-9
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