The complete mitochondrial genome of Xinong Saanen dairy goat (Capra hircus). 2016

Cunling Jia, and Zehui Wei
a College of Animal Science and Technology, Northwest A & F University , Yangling , China.

Xinong Saanen dairy goat (Capra hircus), a breed distributed widely and adapted highly in China, has the characteristics of high milk production and high litter size. Our research revealed that the complete mitochondrial genome of Xinong Saanen dairy goat was 16,639 bp in length. The contents of A, C, G and T in the mitochondrial genome were 33.6%, 26.0%, 13.1% and 27.3%, respectively. It had a typical mitogenome structure, containing 13 protein-coding genes (PCGs), 2 rRNA genes, 22 tRNA genes and 1 control region. Most of the PCGs have ATG initiation codons, whereas ND2, ND3 and ND5 start with ATA. These results provide essential information for phylogeographic history and population genetic structure, genetic diversity of domestic goats and mitochondrial genome editing based on the goat model.

UI MeSH Term Description Entries
D009245 NADH Dehydrogenase A flavoprotein and iron sulfur-containing oxidoreductase that catalyzes the oxidation of NADH to NAD. In eukaryotes the enzyme can be found as a component of mitochondrial electron transport complex I. Under experimental conditions the enzyme can use CYTOCHROME C GROUP as the reducing cofactor. The enzyme was formerly listed as EC 1.6.2.1. NADH Cytochrome c Reductase,Diaphorase (NADH Dehydrogenase),NADH (Acceptor) Oxidoreductase,NADH Cytochrome c Oxidoreductase,Dehydrogenase, NADH
D006041 Goats Any of numerous agile, hollow-horned RUMINANTS of the genus Capra, in the family Bovidae, closely related to the SHEEP. Capra,Capras,Goat
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
D012335 RNA, Ribosomal The most abundant form of RNA. Together with proteins, it forms the ribosomes, playing a structural role and also a role in ribosomal binding of mRNA and tRNAs. Individual chains are conventionally designated by their sedimentation coefficients. In eukaryotes, four large chains exist, synthesized in the nucleolus and constituting about 50% of the ribosome. (Dorland, 28th ed) Ribosomal RNA,15S RNA,RNA, 15S
D012343 RNA, Transfer The small RNA molecules, 73-80 nucleotides long, that function during translation (TRANSLATION, GENETIC) to align AMINO ACIDS at the RIBOSOMES in a sequence determined by the mRNA (RNA, MESSENGER). There are about 30 different transfer RNAs. Each recognizes a specific CODON set on the mRNA through its own ANTICODON and as aminoacyl tRNAs (RNA, TRANSFER, AMINO ACYL), each carries a specific amino acid to the ribosome to add to the elongating peptide chains. Suppressor Transfer RNA,Transfer RNA,tRNA,RNA, Transfer, Suppressor,Transfer RNA, Suppressor,RNA, Suppressor Transfer
D016366 Open Reading Frames A sequence of successive nucleotide triplets that are read as CODONS specifying AMINO ACIDS and begin with an INITIATOR CODON and end with a stop codon (CODON, TERMINATOR). ORFs,Protein Coding Region,Small Open Reading Frame,Small Open Reading Frames,sORF,Unassigned Reading Frame,Unassigned Reading Frames,Unidentified Reading Frame,Coding Region, Protein,Frame, Unidentified Reading,ORF,Open Reading Frame,Protein Coding Regions,Reading Frame, Open,Reading Frame, Unassigned,Reading Frame, Unidentified,Region, Protein Coding,Unidentified Reading Frames
D054629 Genome, Mitochondrial The genetic complement of MITOCHONDRIA as represented in their DNA. Mitochondrial Genome,Genomes, Mitochondrial,Mitochondrial Genomes
D018387 Codon, Initiator A codon that directs initiation of protein translation (TRANSLATION, GENETIC) by stimulating the binding of initiator tRNA (RNA, TRANSFER, MET). In prokaryotes, the codons AUG or GUG can act as initiators while in eukaryotes, AUG is the only initiator codon. Codon, Start,Initiator Codon,Codon, Initiation,Start Codon,Codons, Initiation,Codons, Initiator,Codons, Start,Initiation Codon,Initiation Codons,Initiator Codons,Start Codons

Related Publications

Cunling Jia, and Zehui Wei
June 2003, DNA sequence : the journal of DNA sequencing and mapping,
Cunling Jia, and Zehui Wei
January 2016, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Cunling Jia, and Zehui Wei
November 2016, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Cunling Jia, and Zehui Wei
May 2016, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Cunling Jia, and Zehui Wei
January 2016, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Cunling Jia, and Zehui Wei
January 2016, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Cunling Jia, and Zehui Wei
July 2019, Mitochondrial DNA. Part B, Resources,
Cunling Jia, and Zehui Wei
January 2016, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Cunling Jia, and Zehui Wei
September 2016, Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis,
Cunling Jia, and Zehui Wei
October 2020, Mitochondrial DNA. Part B, Resources,
Copied contents to your clipboard!