2004•Fisheries ScienceOpen access

Genetic structure of Chinese sucker population Myxocyprinus asiaticus in the Yangtze River based on mitochondrial DNA marker

Yuhua Sun, SiYang Maggie Liu, Gang Zhao, Shunping He, Qingjiang Wu, Nobuhiko Taniguchi, YU Qi-xin

Open full text 13 citations

Abstract

The sequencing analysis of the mitochondrial DNA control region (mtCR DNA) was performed to assess the genetic divergence and population structure of the Chinese sucker Myxocyprinus asiaticus (Cypriniformes Catostomidae) using four sample lots from natural populations of the Yangtze River.The mtCR DNA sequences of approximately 920 base pairs were obtained.A total of 223 nucleotide positions were polymorphic, and these defined 39 haplotypes.Of the 39 haplotypes, 37 (90%) were not shared, and among the populations as a whole there was little sharing of haplotypes.The average haplotype diversity (0.958) and the average nucleotide diversity (0.052) indicated a higher level of genetic diversity of Chinese sucker through the river.Analysis of molecular variation ( AMOVA ) of data revealed significant partitioning of variance ( P < 0.001) among populations (60.29%), and within populations (39.71%).The topology according to the neighbor joining and maximum parsimony methods showed mosaic composition of the 39 haplotypes, suggesting that the populations were not completely divergent.The pairwise F statistic values, however, indicated that the population structuring existed to some extent among the geographic populations.There was a positive relationship between the aquatic distance and the genetic distance (Fst) among the populations ( P < 0.05).Based on our data, it is suggested that genetic drift, gene flow, and stochastic events are the possible factors influencing the population structure and genetic variation.

Open-access reader

About this research paper

What this paper is about

The sequencing analysis of the mitochondrial DNA control region (mtCR DNA) was performed to assess the genetic divergence and population structure of the Chinese sucker Myxocyprinus asiaticus (Cypriniformes Catostomidae) using four sample lots from natural populations of the Yangtze River.The mtCR DNA sequences of approximately 920 base pairs were obtained.A total of 223 nucleotide positions were polymorphic, and these defined 39 haplotypes.Of the 39 haplotypes, 37 (90%) were not shared, and among the populations as a whole there was little sharing of haplotypes.The average haplotype diversity (0.958) and the average nucleotide diversity (0.052) indicated a higher level of genetic diversity of Chinese sucker through the river.Analysis of molecular variation ( AMOVA ) of data revealed significant partitioning of variance ( P < 0.001) among populations (60.29%), and within populations (39.71%).The topology according to the neighbor joining and maximum parsimony methods showed mosaic composition of the 39 haplotypes, suggesting that the populations were not completely divergent.The pairwise F statistic values, however, indicated that the population structuring existed to some extent among the geographic populations.There was a positive relationship between the aquatic distance and the genetic distance (Fst) among the populations ( P < 0.05).Based on our data, it is suggested that genetic drift, gene flow, and stochastic events are the possible factors influencing the population structure and genetic variation.

Why it matters

OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The sequencing analysis of the mitochondrial DNA control region (mtCR DNA) was performed to assess the genetic divergence and population structure of the Chinese sucker Myxocyprinus asiaticus (Cypriniformes Catostomidae) using four sample lots from natural populations of the Yangtze River.The mtCR DNA sequences of approximately 920 base pairs were obtained.A total of 223 nucleotide positions were polymorphic, and these defined 39 haplotypes.Of the 39 haplotypes, 37 (90%) were not shared, and among the populations as a whole there was little sharing of haplotypes.The average haplotype diversity (0.958) and the average nucleotide diversity (0.052) indicated a higher level of genetic diversity of Chinese sucker through the river.Analysis of molecular variation ( AMOVA ) of data revealed significant partitioning of variance ( P < 0.001) among populations (60.29%), and within populations (39.71%).The topology according to the neighbor joining and maximum parsimony methods showed mosaic composition of the 39 haplotypes, suggesting that the populations were not completely divergent.The pairwise F statistic values, however, indicated that the population structuring existed to some extent among the geographic populations.There was a positive relationship between the aquatic distance and the genetic distance (Fst) among the populations ( P < 0.05).Based on our data, it is suggested that genetic drift, gene flow, and stochastic events are the possible factors influencing the population structure and genetic variation.

Key concepts: Biology, Nucleotide diversity, Analysis of molecular variance, Genetic diversity, Haplotype, Genetic variation, Population, Mitochondrial DNA

Related papers

Back to paper searchBrowse research topicsOriginal source
Genetic structure of Chinese sucker population Myxocyprinus asiaticus in the Yangtze River based on mitochondrial DNA marker — Research Paper | ScholarLens