沙子岭猪的完整线粒体基因组。

Mitochondrial Dna Pub Date : 2015-08-01 Epub Date: 2013-09-19 DOI:10.3109/19401736.2013.834431
Dong Xu, Qing-Hui Li, Chang-Qing He, Ling-Yu Wang, Hai-Ming Ma
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引用次数: 8

摘要

本研究报道了人类省沙子岭猪线粒体全基因组序列,并采用基于pcr的方法进行了测定。有丝分裂基因组全长16690 bp。它具有与大多数脊椎动物相同的典型结构,包括2个核糖体RNA基因、13个蛋白质编码基因、22个转移RNA基因和1个非编码控制区(D-loop区)。结果表明,沙子岭猪有丝分裂基因组的A、T、C和G的总组成分别为34.67%、25.84%、26.17%和13.32%,具有A + T(60.51%)富集的特征。蛋白起始密码子除ND2外均为ATG, ND3和ND5为ATA, ND4L为GTG, ND6为TTA。人省沙子岭猪线粒体全基因组序列为研究遗传机制提供了重要的数据集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The complete mitochondrial genome of the Shaziling pig.

In this study, the complete mitochondrial genome sequence of the Shaziling pig was reported in Human Province, which was determined through PCR-based method. The total length of the mitogenome is 16,690 bp. It contains the typical structure, including 2 ribosomal RNA genes, 13 protein-coding genes, 22 transfer RNA genes and 1 non-coding control region (D-loop region) as that of most other vertebrates. The overall composition of the mitogenome was estimated to be 34.67% for A, 25.84% for T, 26.17% for C and 13.32% for G, with an A + T (60.51%)-rich feature in the Shaziling pig. All the protein initiation codons are ATG, except for ND2, ND3 and ND5 are ATA, ND4L is GTG, ND6 is TTA. The complete mitochondrial genome sequence of the Shaziling pig in Human Province provides an important data set for the study in genetic mechanism.

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来源期刊
Mitochondrial Dna
Mitochondrial Dna 生物-遗传学
自引率
0.00%
发文量
0
审稿时长
2.4 months
期刊介绍: Previously published under the title DNA Sequence (Vols 1-19.3), Mitochondrial DNA accepts original high-quality reports based on mapping, sequencing and analysis of mitochondrial DNA and RNA. Descriptive papers on DNA sequences from mitochondrial genomes, and also analytical papers in the areas of population genetics, medical genetics, phylogenetics and human evolution that use mitochondrial DNA as a source of evidence for studies will be considered for publication. The editorial board will also consider manuscripts that examine population genetic and systematic theory that specifically address the use of mitochondrial DNA sequences.
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