The Plastid Genome of the Cryptomonad Teleaulax amphioxeia.

Teleaulax amphioxeia is a photosynthetic unicellular cryptophyte alga that is distributed throughout marine habitats worldwide. This alga is an important plastid donor to the dinoflagellate Dinophysis caudata through the ciliate Mesodinium rubrum in the marine food web. To better understand the geno...

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Main Authors: Jong Im Kim, Hwan Su Yoon, Gangman Yi, Hyung Seop Kim, Wonho Yih, Woongghi Shin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0129284
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spelling doaj-35dacad9d9c740139cf7ac78f4d2eeaa2021-03-03T20:02:46ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01106e012928410.1371/journal.pone.0129284The Plastid Genome of the Cryptomonad Teleaulax amphioxeia.Jong Im KimHwan Su YoonGangman YiHyung Seop KimWonho YihWoongghi ShinTeleaulax amphioxeia is a photosynthetic unicellular cryptophyte alga that is distributed throughout marine habitats worldwide. This alga is an important plastid donor to the dinoflagellate Dinophysis caudata through the ciliate Mesodinium rubrum in the marine food web. To better understand the genomic characteristics of T. amphioxeia, we have sequenced and analyzed its plastid genome. The plastid genome sequence of T. amphioxeia is similar to that of Rhodomonas salina, and they share significant synteny. This sequence exhibits less similarity to that of Guillardia theta, the representative plastid genome of photosynthetic cryptophytes. The gene content and order of the three photosynthetic cryptomonad plastid genomes studied is highly conserved. The plastid genome of T. amphioxeia is composed of 129,772 bp and includes 143 protein-coding genes, 2 rRNA operons and 30 tRNA sequences. The DNA polymerase III gene (dnaX) was most likely acquired via lateral gene transfer (LGT) from a firmicute bacterium, identical to what occurred in R. salina. On the other hand, the psbN gene was independently encoded by the plastid genome without a reverse transcriptase gene as an intron. To clarify the phylogenetic relationships of the algae with red-algal derived plastids, phylogenetic analyses of 32 taxa were performed, including three previously sequenced cryptophyte plastid genomes containing 93 protein-coding genes. The stramenopiles were found to have branched out from the Chromista taxa (cryptophytes, haptophytes, and stramenopiles), while the cryptophytes and haptophytes were consistently grouped into sister relationships with high resolution.https://doi.org/10.1371/journal.pone.0129284
collection DOAJ
language English
format Article
sources DOAJ
author Jong Im Kim
Hwan Su Yoon
Gangman Yi
Hyung Seop Kim
Wonho Yih
Woongghi Shin
spellingShingle Jong Im Kim
Hwan Su Yoon
Gangman Yi
Hyung Seop Kim
Wonho Yih
Woongghi Shin
The Plastid Genome of the Cryptomonad Teleaulax amphioxeia.
PLoS ONE
author_facet Jong Im Kim
Hwan Su Yoon
Gangman Yi
Hyung Seop Kim
Wonho Yih
Woongghi Shin
author_sort Jong Im Kim
title The Plastid Genome of the Cryptomonad Teleaulax amphioxeia.
title_short The Plastid Genome of the Cryptomonad Teleaulax amphioxeia.
title_full The Plastid Genome of the Cryptomonad Teleaulax amphioxeia.
title_fullStr The Plastid Genome of the Cryptomonad Teleaulax amphioxeia.
title_full_unstemmed The Plastid Genome of the Cryptomonad Teleaulax amphioxeia.
title_sort plastid genome of the cryptomonad teleaulax amphioxeia.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Teleaulax amphioxeia is a photosynthetic unicellular cryptophyte alga that is distributed throughout marine habitats worldwide. This alga is an important plastid donor to the dinoflagellate Dinophysis caudata through the ciliate Mesodinium rubrum in the marine food web. To better understand the genomic characteristics of T. amphioxeia, we have sequenced and analyzed its plastid genome. The plastid genome sequence of T. amphioxeia is similar to that of Rhodomonas salina, and they share significant synteny. This sequence exhibits less similarity to that of Guillardia theta, the representative plastid genome of photosynthetic cryptophytes. The gene content and order of the three photosynthetic cryptomonad plastid genomes studied is highly conserved. The plastid genome of T. amphioxeia is composed of 129,772 bp and includes 143 protein-coding genes, 2 rRNA operons and 30 tRNA sequences. The DNA polymerase III gene (dnaX) was most likely acquired via lateral gene transfer (LGT) from a firmicute bacterium, identical to what occurred in R. salina. On the other hand, the psbN gene was independently encoded by the plastid genome without a reverse transcriptase gene as an intron. To clarify the phylogenetic relationships of the algae with red-algal derived plastids, phylogenetic analyses of 32 taxa were performed, including three previously sequenced cryptophyte plastid genomes containing 93 protein-coding genes. The stramenopiles were found to have branched out from the Chromista taxa (cryptophytes, haptophytes, and stramenopiles), while the cryptophytes and haptophytes were consistently grouped into sister relationships with high resolution.
url https://doi.org/10.1371/journal.pone.0129284
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