您好,欢迎访问中国水产科学研究院 机构知识库!

Genetic diversity and relationship of Mauremys mutica and M-annamensis assessed by DNA barcoding sequences

文献类型: 外文期刊

作者: Zhao, Jian 1 ; Li, Wei 1 ; Wen, Ping 1 ; Zhang, Dandan 1 ; Zhu, Xinping 1 ;

作者机构: 1.Chinese Acad Fishery Sci, Pearl River Fisheries Res Inst, Cultivat Minist Agr, Key Lab Trop Subtrop Fishery Resource Applicat, Guangzhou 510380, Guangdong, Peoples R China

2.Shanghai Ocean Univ, Coll Fisheries & Life Sci, Shanghai, Peoples R China

关键词: DNA barcoding;genetic differentiation;genetic diversity;Mauremys annamensis;Mauremys mutica

期刊名称:MITOCHONDRIAL DNA PART A ( 影响因子:1.514; 五年影响因子:0.707 )

ISSN: 2470-1394

年卷期: 2016 年 27 卷 5 期

页码:

收录情况: SCI

摘要: The mitochondrial DNA cytochrome c oxidase subunit I gene (COI) has been used as an efficient barcoding tool for species identification of animals. In this study, the barcoding sequences were used to assess the genetic diversity and relationship of Mauremy mutica and M. annamensis. Four currently recognized groups of M. mutica were classified into two groups in this study, with 6% intergroup distances, the S group and the N group, consistent to the calling of "southern turtle'' and "northern turtle'' in folk of China. The north population and Taiwan population formed the N group, and further, the Taiwan population was differentiated as a monophyly originated from the north population, consistent to the calling of "big green head'' for the Taiwan population and "small green head'' for the north population. The Vietnam, Hainan population, and M. annamensis formed the S group, and the barcoding sequences could not distinguish them from each other. Based on the molecular data and phenotypes of existing hybrids, hybrid origin of M. annamensis may be another possibility.

  • 相关文献

[1]Morphological characteristics and DNA barcoding of Pampus echinogaster (Basilewsky, 1855). Li, Yuan,Lin, Longshan,Zhang, Yan,Gao, Tianxiang,Han, Zhiqiang,Zhang, Xiumei. 2017

[2]The loss of genetic diversity during captive breeding of the endangered sculpin, Trachidermus fasciatus, based on ISSR markers: implications for its conservation. Bi Xiaoxiao,Yang Qiaoli,Gao Tianxiang,Li Chuangju. 2011

[3]Genetic variation in wild and cultured populations of the pearl oyster Pinctada fucata from southern China. Yu, Da Hui,Chu, Ka Hou. 2006

[4]Genetic diversity and population structure of Portunus sanguinolentus (Herbst, 1783) revealed by mtDNA COI sequences. Ren, Guijing,Ma, Hongyu,Ma, Chunyan,Wang, Wei,Chen, Wei,Ma, Lingbo,Ma, Hongyu.

[5]Analysis of Genetic Diversity and Differentiation of Seven Stocks of Litopenaeus vannamei Using Microsatellite Markers. Zhang Kai,Zhang Quanqi,Wang Weiji,Li Weiya,Kong Jie,Li Weiya. 2014

[6]Low mtDNA variation and shallow population structure of the Chinese pomfret Pampus chinensis along the China coast. Sun, P.,Tang, B. J.. 2018

[7]High genetic diversity and low differentiation in mud crab (Scylla paramamosain) along the southeastern coast of China revealed by microsatellite markers. Ma, Hongyu,Cui, Haiyu,Ma, Chunyan,Ma, Lingbo.

[8]Molecular Characterization and Expression Analysis of Matrix Metalloproteinase 3 in the Asian Yellow Pond Turtle Mauremys mutica. Zhao, Mi,Shi, Yan,Zhao, Jian,Zhu, Xinping,Chen, Kunci,Pan, Debo,Wet, Chengqing. 2014

[9]Molecular Characterization and Expression Analysis of VSIG4 from the Asian Yellow Pond Turtle, Mauremys mutica. Zhao, Mi,Shi, Yan,Zhu, Xinping,Chen, Kunci,Pan, Debo,Wei, Chengqing. 2012

[10]SNP discovery and Characterization from transcriptomes of Asian yellow pond turtle, Mauremys mutica. Zhao, Jian,Zhang, Xincheng,Li, Wei,Chen, Kunci,Zhang, Dandan,Zhu, Xinping,Zhang, Xincheng.

[11]Characterization of 19 polymorphic microsatellite markers for Asian yellow pond turtle (Mauremys mutica). Zhao, Jian,Wen, Ping,Li, Wei,Zhang, Dandan,Zhu, Xinping,Zhao, Jian,Wen, Ping.

[12]New Genetic Evidence from Three Keel-Backed Liza Species Based on DNA Barcoding Confirms Morphology-Based Identification. Liu, Lu,Song, Na,Panhwar, Sher Khan,Gao, Tianxiang,Han, Zhiqiang,Li, Chunhou,Sun, Dianrong. 2017

[13]Genetic identification of two species of Pleuronichthys by DNA barcoding. Zhang Hui,Gao Tianxiang,Zhang Yan,Li Pengfei,Xu Hanxiang. 2011

[14]Molecular identification of the genus Thryssa based on DNA barcoding. Ma, C. -Y.,Ma, H. -Y.,Ni, Y.,Wang, W.,Ma, L. -B.. 2015

[15]DNA barcoding reveals mislabeling of imported fish products in Nansha new port of Guangzhou, Guangdong province, China. Yan, Shuai,Lai, Guiyan,Li, Li,Xiao, Hao,Zhao, Ming,Wang, Ming,Wang, Ming.

[16]Estimating sample sizes for DNA barcoding. Zhang, A. B.,He, L. J.,Crozier, R. H.,Muster, C.,Zhu, C. -D..

[17]DNA barcoding and evaluation of genetic diversity in Cyprinidae fish in the midstream of the Yangtze River. Shen, Yanjun,Gan, Xiaoni,Shen, Yanjun,Guan, Lihong,Wang, Dengqiang. 2016

[18]Molecular identification of genus Scylla (Decapoda: Portunidae) based on DNA barcoding and polymerase chain reaction. Ma, Hongyu,Ma, Chunyan,Ma, Lingbo.

[19]Selection pressures have driven population differentiation of domesticated and wild common carp (Cyprinus carpio L.). Xu, L. H.,Wang, C. H.,Wang, J.,Ma, Y. Q.,Yang, X. X.,Dong, Z. J.. 2012

[20]Genetic differentiation among common and selected hatchery populations of founder: Evidence from RAPD markers. Liu, Yun-Guo,Chen, Song-Lin,Li, Ba-Fang. 2007

作者其他论文 更多>>