Population genetic diversity of the northern snakehead (Channa argus) in China based on the mitochondrial DNA control region and adjacent regions sequences.

Mitochondrial Dna Pub Date : 2015-06-01 Epub Date: 2014-04-14 DOI:10.3109/19401736.2014.908355
Aiguo Zhou, Xiaolei Zhuo, Qing Zou, Jintao Chen, Jixing Zou
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引用次数: 7

Abstract

Genetic variation and population structure of northern snakehead (Channa argus) from eight locations in China were investigated using mitochondrial DNA control region and adjacent regions sequences. Sequence analysis showed that there were 105 haplotypes in 260 individuals, 48 unique haplotypes and 57 shared haplotypes, but no common haplotype shared by all populations. As a whole, the haplotype diversity was high (h=0.989), while the nucleotide diversity was low (π=0.00482). AMOVA analysis detected significant genetic differentiation among all eight populations (FST=0.328, p<0.01) and 66.17% of the total variance was resulted from intra-population differentiation. UPGMA analysis indicated that the eight populations could be divided into four major clusters, which was consistent with that the eight sampled locations were belonged to four isolated river systems. The neutrality and mismatch distribution tests suggested that the eight populations of C. argus in the sampling locations underwent recent population expansion. Among the eight populations, the Erhai Lake population may represent a unique genetic resource and therefore needs to be conserved.

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基于线粒体DNA控制区和邻区序列的中国北方黑鱼种群遗传多样性研究
利用线粒体DNA控制区和邻区序列分析了中国8个地点北方黑鱼(Channa argus)的遗传变异和种群结构。序列分析表明,260个个体存在105个单倍型,其中48个为独特单倍型,57个为共有单倍型,未发现所有群体共有的共同单倍型。整体上,单倍型多样性高(h=0.989),核苷酸多样性低(π=0.00482)。AMOVA分析发现8个群体间存在显著的遗传分化(FST=0.328, p
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Mitochondrial Dna
Mitochondrial Dna 生物-遗传学
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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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