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Next-Generation Sequencing of Haematococcus lacustris Reveals an Extremely Large 1.35-Megabase Chloroplast Genome

is an industrially relevant microalga that is used for the production of the carotenoid astaxanthin. Here, we report the use of PacBio long-read sequencing to assemble the chloroplast genome of strain UTEX:2505. At 1.35 Mb, this is the largest assembled chloroplast of any plant or alga known to date...

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Published in:Genome announcements (Washington, DC) DC), 2018-03, Vol.6 (12)
Main Authors: Bauman, Nicholas, Akella, Srividya, Hann, Elizabeth, Morey, Robert, Schwartz, Ariel S, Brown, Rob, Richardson, Toby H
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cited_by cdi_FETCH-LOGICAL-c490t-3f8cab5194dca4aee301fc31e7faf0bddf2484d6d7d75f1292e9d13bffd4390c3
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container_issue 12
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container_title Genome announcements (Washington, DC)
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creator Bauman, Nicholas
Akella, Srividya
Hann, Elizabeth
Morey, Robert
Schwartz, Ariel S
Brown, Rob
Richardson, Toby H
description is an industrially relevant microalga that is used for the production of the carotenoid astaxanthin. Here, we report the use of PacBio long-read sequencing to assemble the chloroplast genome of strain UTEX:2505. At 1.35 Mb, this is the largest assembled chloroplast of any plant or alga known to date.
doi_str_mv 10.1128/genomeA.00181-18
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source American Society for Microbiology Journals; PubMed Central
subjects Chloroplasts
Deoxyribonucleic acid
DNA
Eukaryotes
Genomes
Genomics
title Next-Generation Sequencing of Haematococcus lacustris Reveals an Extremely Large 1.35-Megabase Chloroplast Genome
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