The complete mitochondrial genome of the Zacco platypus, Huangshan, China (Cypriniformes: Cyprinidae, subfamily Daninninae). 2015

Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
a College of Life Science, Anhui Normal University , Wuhu , P.R. China .

The mitochondrial genome of Zacco platypus (Cypriniformes: Cyprinidae, subfamily Daninninae) is a circular molecule of 16,611 bp in length, containing 37 typical animal mitochondrial genes: 13 protein-coding genes (PCGs), 2 ribosomal RNAs, 22 transfer RNAs and a D-loop region. Its gene order and arrangement are identical to the common type found in most fish mitogenomes. All PCGs start with a typical ATG codon except for COI which use GTG as start codon; all PCGs terminate in the common stop codon TAA or TAG, except for the COII which use single T as stop codon. The D-loop region is 928 bp long, located between tRNAPro and tRNAPhe genes. It contains some structures of repeated motifs and microsatellite-like elements characteristic of the Cyprinidae.

UI MeSH Term Description Entries
D008969 Molecular Sequence Data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as GENBANK, European Molecular Biology Laboratory (EMBL), National Biomedical Research Foundation (NBRF), or other sequence repositories. Sequence Data, Molecular,Molecular Sequencing Data,Data, Molecular Sequence,Data, Molecular Sequencing,Sequencing Data, Molecular
D003530 Cyprinidae A family of freshwater fish comprising the minnows or CARPS. Barbels,Chub,Dace,Minnows,Roach (Fish),Shiner,Tench,Tinca,Barbus,Rutilus rutilus,Tinca tinca,Chubs,Shiners,Tinca tincas,tinca, Tinca
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001482 Base Composition The relative amounts of the PURINES and PYRIMIDINES in a nucleic acid. Base Ratio,G+C Composition,Guanine + Cytosine Composition,G+C Content,GC Composition,GC Content,Guanine + Cytosine Content,Base Compositions,Base Ratios,Composition, Base,Composition, G+C,Composition, GC,Compositions, Base,Compositions, G+C,Compositions, GC,Content, G+C,Content, GC,Contents, G+C,Contents, GC,G+C Compositions,G+C Contents,GC Compositions,GC Contents,Ratio, Base,Ratios, Base
D017422 Sequence Analysis, DNA A multistage process that includes cloning, physical mapping, subcloning, determination of the DNA SEQUENCE, and information analysis. DNA Sequence Analysis,Sequence Determination, DNA,Analysis, DNA Sequence,DNA Sequence Determination,DNA Sequence Determinations,DNA Sequencing,Determination, DNA Sequence,Determinations, DNA Sequence,Sequence Determinations, DNA,Analyses, DNA Sequence,DNA Sequence Analyses,Sequence Analyses, DNA,Sequencing, DNA
D054629 Genome, Mitochondrial The genetic complement of MITOCHONDRIA as represented in their DNA. Mitochondrial Genome,Genomes, Mitochondrial,Mitochondrial Genomes
D059646 Genome Size The amount of DNA (or RNA) in one copy of a genome. Genome Sizes,Size, Genome,Sizes, Genome
D023061 Gene Order The sequential location of genes on a chromosome. Gene Arrangement,Gene Position,Arrangement, Gene,Arrangements, Gene,Gene Arrangements,Gene Positions,Order, Gene,Position, Gene,Positions, Gene

Related Publications

Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
April 2015, Mitochondrial DNA,
Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
November 2016, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
May 2016, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
January 2017, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
June 2013, Mitochondrial DNA,
Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
April 2013, Mitochondrial DNA,
Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
July 2016, Mitochondrial DNA. Part B, Resources,
Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
January 2015, Mitochondrial DNA,
Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
October 2014, Mitochondrial DNA,
Shuang-Huai Cheng, and Jin-Jin Yan, and Yun-Zhi Yan, and Yi Zhang, and Meng-Ning Xia, and Ying-Long Liu, and Yan-Mei Lu
April 2015, Mitochondrial DNA,
Copied contents to your clipboard!