一个令人惊讶的排列模式和系统发育的考虑:Belanger的croker Johnius belangerii的完整线粒体基因组(Percoidei: Sciaenidae)

Mitochondrial Dna Pub Date : 2015-08-01 Epub Date: 2013-10-24 DOI:10.3109/19401736.2013.843077
Tianjun Xu, Da Tang, Xiaoxiao Jin
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引用次数: 3

摘要

本文首次测定了贝兰杰Johnius belangerii的线粒体全基因组。全长19154个碱基对,由37个基因(13个蛋白质编码基因、22个tRNA基因和2个核糖体RNA基因)组成。共观察到5个显著的非编码区,根据其位置和AT丰富度,确定了1091 bp的非编码区为对照区。在第5个非编码区鉴定出800 bp串联重复序列。我们对线粒体基因排列模式进行了研究,发现belangerii有丝分裂基因组的tRNA(Val)、12SrRNA、16SrRNA和tRNA(Phe)基因有序地位于重链的起始位置。这个次序与其他的花鱼不同。结合线粒体基因组的系统发育重建和基因排列模式,我们认为belangerii是Sciaenidae科中最古老的属。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A surprising arrangement pattern and phylogenetic consideration: the complete mitochondrial genome of Belanger's croaker Johnius belangerii (Percoidei: Sciaenidae).

The complete mitochondrial genome of Johnius belangerii has been determined for the first time in this article. It was 19,154 base pairs in length, and is composed of 37 genes (13 protein-coding genes, 22 tRNA genes and 2 ribosomal RNA genes). Totally, 5 notable non-coding regions were observed, and a non-coding of 1091 bp was identified as control region based on its location and AT richness. An 800 bp tandem repeat sequence was identified in the fifth non-coding region. We investigated the mitochondrial gene arrangement pattern and found that that the tRNA(Val), 12SrRNA, 16SrRNA and tRNA(Phe) genes of J. belangerii mitogenome were orderly placed at the beginning of heavy strand. This order is different from other croakers. Combine with the phylogenetic reconstruction and genes arrangement pattern of J. belangerii mitochondrial genome, we consider J. belangerii is the most ancient genus within family Sciaenidae.

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来源期刊
Mitochondrial Dna
Mitochondrial Dna 生物-遗传学
自引率
0.00%
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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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