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Genome Assembly and Annotation of the Trichoplusia ni Tni-FNL Insect Cell Line Enabled by Long-Read Technologies

Background: Trichoplusia ni derived cell lines are commonly used to enable recombinant protein expression via baculovirus infection to generate materials approved for clinical use and in clinical trials. In order to develop systems biology and genome engineering tools to improve protein expression i...

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Autores principales: Talsania, Keyur, Mehta, Monika, Raley, Castle, Kriga, Yuliya, Gowda, Sujatha, Grose, Carissa, Drew, Matthew, Roberts, Veronica, Cheng, Kwong Tai, Burkett, Sandra, Oeser, Steffen, Stephens, Robert, Soppet, Daniel, Chen, Xiongfeng, Kumar, Parimal, German, Oksana, Smirnova, Tatyana, Hautman, Christopher, Shetty, Jyoti, Tran, Bao, Zhao, Yongmei, Esposito, Dominic
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6409714/
https://www.ncbi.nlm.nih.gov/pubmed/30678108
http://dx.doi.org/10.3390/genes10020079
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author Talsania, Keyur
Mehta, Monika
Raley, Castle
Kriga, Yuliya
Gowda, Sujatha
Grose, Carissa
Drew, Matthew
Roberts, Veronica
Cheng, Kwong Tai
Burkett, Sandra
Oeser, Steffen
Stephens, Robert
Soppet, Daniel
Chen, Xiongfeng
Kumar, Parimal
German, Oksana
Smirnova, Tatyana
Hautman, Christopher
Shetty, Jyoti
Tran, Bao
Zhao, Yongmei
Esposito, Dominic
author_facet Talsania, Keyur
Mehta, Monika
Raley, Castle
Kriga, Yuliya
Gowda, Sujatha
Grose, Carissa
Drew, Matthew
Roberts, Veronica
Cheng, Kwong Tai
Burkett, Sandra
Oeser, Steffen
Stephens, Robert
Soppet, Daniel
Chen, Xiongfeng
Kumar, Parimal
German, Oksana
Smirnova, Tatyana
Hautman, Christopher
Shetty, Jyoti
Tran, Bao
Zhao, Yongmei
Esposito, Dominic
author_sort Talsania, Keyur
collection PubMed
description Background: Trichoplusia ni derived cell lines are commonly used to enable recombinant protein expression via baculovirus infection to generate materials approved for clinical use and in clinical trials. In order to develop systems biology and genome engineering tools to improve protein expression in this host, we performed de novo genome assembly of the Trichoplusia ni-derived cell line Tni-FNL. Methods: By integration of PacBio single-molecule sequencing, Bionano optical mapping, and 10X Genomics linked-reads data, we have produced a draft genome assembly of Tni-FNL. Results: Our assembly contains 280 scaffolds, with a N50 scaffold size of 2.3 Mb and a total length of 359 Mb. Annotation of the Tni-FNL genome resulted in 14,101 predicted genes and 93.2% of the predicted proteome contained recognizable protein domains. Ortholog searches within the superorder Holometabola provided further evidence of high accuracy and completeness of the Tni-FNL genome assembly. Conclusions: This first draft Tni-FNL genome assembly was enabled by complementary long-read technologies and represents a high-quality, well-annotated genome that provides novel insight into the complexity of this insect cell line and can serve as a reference for future large-scale genome engineering work in this and other similar recombinant protein production hosts.
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spelling pubmed-64097142019-03-26 Genome Assembly and Annotation of the Trichoplusia ni Tni-FNL Insect Cell Line Enabled by Long-Read Technologies Talsania, Keyur Mehta, Monika Raley, Castle Kriga, Yuliya Gowda, Sujatha Grose, Carissa Drew, Matthew Roberts, Veronica Cheng, Kwong Tai Burkett, Sandra Oeser, Steffen Stephens, Robert Soppet, Daniel Chen, Xiongfeng Kumar, Parimal German, Oksana Smirnova, Tatyana Hautman, Christopher Shetty, Jyoti Tran, Bao Zhao, Yongmei Esposito, Dominic Genes (Basel) Article Background: Trichoplusia ni derived cell lines are commonly used to enable recombinant protein expression via baculovirus infection to generate materials approved for clinical use and in clinical trials. In order to develop systems biology and genome engineering tools to improve protein expression in this host, we performed de novo genome assembly of the Trichoplusia ni-derived cell line Tni-FNL. Methods: By integration of PacBio single-molecule sequencing, Bionano optical mapping, and 10X Genomics linked-reads data, we have produced a draft genome assembly of Tni-FNL. Results: Our assembly contains 280 scaffolds, with a N50 scaffold size of 2.3 Mb and a total length of 359 Mb. Annotation of the Tni-FNL genome resulted in 14,101 predicted genes and 93.2% of the predicted proteome contained recognizable protein domains. Ortholog searches within the superorder Holometabola provided further evidence of high accuracy and completeness of the Tni-FNL genome assembly. Conclusions: This first draft Tni-FNL genome assembly was enabled by complementary long-read technologies and represents a high-quality, well-annotated genome that provides novel insight into the complexity of this insect cell line and can serve as a reference for future large-scale genome engineering work in this and other similar recombinant protein production hosts. MDPI 2019-01-23 /pmc/articles/PMC6409714/ /pubmed/30678108 http://dx.doi.org/10.3390/genes10020079 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Talsania, Keyur
Mehta, Monika
Raley, Castle
Kriga, Yuliya
Gowda, Sujatha
Grose, Carissa
Drew, Matthew
Roberts, Veronica
Cheng, Kwong Tai
Burkett, Sandra
Oeser, Steffen
Stephens, Robert
Soppet, Daniel
Chen, Xiongfeng
Kumar, Parimal
German, Oksana
Smirnova, Tatyana
Hautman, Christopher
Shetty, Jyoti
Tran, Bao
Zhao, Yongmei
Esposito, Dominic
Genome Assembly and Annotation of the Trichoplusia ni Tni-FNL Insect Cell Line Enabled by Long-Read Technologies
title Genome Assembly and Annotation of the Trichoplusia ni Tni-FNL Insect Cell Line Enabled by Long-Read Technologies
title_full Genome Assembly and Annotation of the Trichoplusia ni Tni-FNL Insect Cell Line Enabled by Long-Read Technologies
title_fullStr Genome Assembly and Annotation of the Trichoplusia ni Tni-FNL Insect Cell Line Enabled by Long-Read Technologies
title_full_unstemmed Genome Assembly and Annotation of the Trichoplusia ni Tni-FNL Insect Cell Line Enabled by Long-Read Technologies
title_short Genome Assembly and Annotation of the Trichoplusia ni Tni-FNL Insect Cell Line Enabled by Long-Read Technologies
title_sort genome assembly and annotation of the trichoplusia ni tni-fnl insect cell line enabled by long-read technologies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6409714/
https://www.ncbi.nlm.nih.gov/pubmed/30678108
http://dx.doi.org/10.3390/genes10020079
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