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Complete mitochondrial DNA sequence of the East Asian minnow, Pungtungia herzi (Actinopterygii: Cypriniformes)

Some populations of the East Asian minnow Pungtungia herzi Herzenstein, 1892, which are naturally distributed in western Japan, have declined and are considered endangered. However, P. herzi has become a domestic invasive species in eastern Japan. Thus, knowledge of genetic features and phylogenetic...

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Autores principales: Taniwaki, Teppei, Hiroshima, Misaki, Imakita, Mihiro, Kishimoto, Yuu, Okuyama, Hisashi, Takahashi, Jun-ichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7782132/
https://www.ncbi.nlm.nih.gov/pubmed/33458083
http://dx.doi.org/10.1080/23802359.2020.1800423
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author Taniwaki, Teppei
Hiroshima, Misaki
Imakita, Mihiro
Kishimoto, Yuu
Okuyama, Hisashi
Takahashi, Jun-ichi
author_facet Taniwaki, Teppei
Hiroshima, Misaki
Imakita, Mihiro
Kishimoto, Yuu
Okuyama, Hisashi
Takahashi, Jun-ichi
author_sort Taniwaki, Teppei
collection PubMed
description Some populations of the East Asian minnow Pungtungia herzi Herzenstein, 1892, which are naturally distributed in western Japan, have declined and are considered endangered. However, P. herzi has become a domestic invasive species in eastern Japan. Thus, knowledge of genetic features and phylogenetic relationships of P. herzi is important for conservation of this species and understanding its impact on ecosystems. We analyzed the complete mitochondrial genome using next generation sequencing of the East Asian minnow P. herzi from Yodo River, Osaka Prefecture, Japan. The mitochondrial genome of P. herzi consists of a circular molecule of 16,599 bp that includes 13 protein-coding genes (PCGs), 22 tRNA genes, two rRNA genes, and one control region. The heavy (H)-strand was predicted to have 12 PCGs, 14 tRNA, and two rRNA genes, while the light (L)-strand was predicted to contain one PCGs and eight tRNA genes. The average AT content was 57.68%. The genes ATP8 and ATP6, ATP6 and COIII, ND4L and ND4, and ND5 and ND6 shared seven, one, seven, and four nucleotides, respectively. The initiation codons ATG and GTG were found in 12 and one genes, respectively. The termination codons TAA, TAG, incomplete TA–, and single T–– were observed in nine, one, one, and two genes, respectively. All the tRNA genes possessed a cloverleaf secondary structure. The phylogenetic relationships inferred using 13 PCGs (based on the maximum likelihood) were consistent with previous studies that predicted interrelationships of Cypriniformes.
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spelling pubmed-77821322021-01-14 Complete mitochondrial DNA sequence of the East Asian minnow, Pungtungia herzi (Actinopterygii: Cypriniformes) Taniwaki, Teppei Hiroshima, Misaki Imakita, Mihiro Kishimoto, Yuu Okuyama, Hisashi Takahashi, Jun-ichi Mitochondrial DNA B Resour Mitogenome Announcement Some populations of the East Asian minnow Pungtungia herzi Herzenstein, 1892, which are naturally distributed in western Japan, have declined and are considered endangered. However, P. herzi has become a domestic invasive species in eastern Japan. Thus, knowledge of genetic features and phylogenetic relationships of P. herzi is important for conservation of this species and understanding its impact on ecosystems. We analyzed the complete mitochondrial genome using next generation sequencing of the East Asian minnow P. herzi from Yodo River, Osaka Prefecture, Japan. The mitochondrial genome of P. herzi consists of a circular molecule of 16,599 bp that includes 13 protein-coding genes (PCGs), 22 tRNA genes, two rRNA genes, and one control region. The heavy (H)-strand was predicted to have 12 PCGs, 14 tRNA, and two rRNA genes, while the light (L)-strand was predicted to contain one PCGs and eight tRNA genes. The average AT content was 57.68%. The genes ATP8 and ATP6, ATP6 and COIII, ND4L and ND4, and ND5 and ND6 shared seven, one, seven, and four nucleotides, respectively. The initiation codons ATG and GTG were found in 12 and one genes, respectively. The termination codons TAA, TAG, incomplete TA–, and single T–– were observed in nine, one, one, and two genes, respectively. All the tRNA genes possessed a cloverleaf secondary structure. The phylogenetic relationships inferred using 13 PCGs (based on the maximum likelihood) were consistent with previous studies that predicted interrelationships of Cypriniformes. Taylor & Francis 2020-08-03 /pmc/articles/PMC7782132/ /pubmed/33458083 http://dx.doi.org/10.1080/23802359.2020.1800423 Text en © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Mitogenome Announcement
Taniwaki, Teppei
Hiroshima, Misaki
Imakita, Mihiro
Kishimoto, Yuu
Okuyama, Hisashi
Takahashi, Jun-ichi
Complete mitochondrial DNA sequence of the East Asian minnow, Pungtungia herzi (Actinopterygii: Cypriniformes)
title Complete mitochondrial DNA sequence of the East Asian minnow, Pungtungia herzi (Actinopterygii: Cypriniformes)
title_full Complete mitochondrial DNA sequence of the East Asian minnow, Pungtungia herzi (Actinopterygii: Cypriniformes)
title_fullStr Complete mitochondrial DNA sequence of the East Asian minnow, Pungtungia herzi (Actinopterygii: Cypriniformes)
title_full_unstemmed Complete mitochondrial DNA sequence of the East Asian minnow, Pungtungia herzi (Actinopterygii: Cypriniformes)
title_short Complete mitochondrial DNA sequence of the East Asian minnow, Pungtungia herzi (Actinopterygii: Cypriniformes)
title_sort complete mitochondrial dna sequence of the east asian minnow, pungtungia herzi (actinopterygii: cypriniformes)
topic Mitogenome Announcement
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7782132/
https://www.ncbi.nlm.nih.gov/pubmed/33458083
http://dx.doi.org/10.1080/23802359.2020.1800423
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