Identification and Characterization of a Polymorphic Mono-Nucleotide Microsatellite within 16S rRNA Gene in Chicken Mitochondrial Genome

文献类型: 外文期刊

第一作者: Zhao, Shengguo

作者: Zhao, Shengguo;Han, Jianlin;Zhao, Shengguo;Zhao, Shengguo;Hanotte, Olivier;Han, Jianlin;Hanotte, Olivier

作者机构:

关键词: chicken;geographic distribution;microsatellite;mitochondrial DNA

期刊名称:PHILIPPINE AGRICULTURAL SCIENTIST ( 影响因子:0.25; 五年影响因子:0.388 )

ISSN: 0031-7454

年卷期: 2009 年 92 卷 4 期

页码:

收录情况: SCI

摘要: An alignment of 17 complete mitochondrial DNA (mtDNA) sequences of chickens and jungle fowls revealed a perfect mono-nucleotide microsatellite repeat unit consisting of between 8 and 13 Cs within the 16S rRNA gene in nine samples. However, the remaining eight sequences had three kinds of interrupted non-polymorphic fragments - (C)(4),T(C)(5), (C)(4)T(C)(6) and (C)(4)T(C)(3)TC) - within the same region. To characterize this microsatellite, 344 samples of indigenous and commercial chicken populations as well as wild red jungle fowls were genotyped. Thirty-five samples were further sequenced for the same region. Both genotyping and sequencing results confirmed the presence of these two types of structures in chicken mtDNA genome while the wild red jungle fowl samples only possessed one of the interrupted fragments' (C)(4)T(C)(5). Among the chickens analyzed, the two structures showed a clear pattern of geographic distribution. The perfect repeats were mainly detected in indigenous chickens from West Asia including Bangladesh, Myanmar and Pakistan and in the majority of commercial chickens. The interrupted fragment, also (C)(4)T(C)(6), occurred predominantly among indigenous chickens from South and Southeast Asia including China, Korea and Papua New Guinea. This polymorphic mono-nucleotide microsatellite, the first of its kind being validated in the avian mitochondrial genome, could be useful in providing insights into the evolutionary mechanism of polymorphism and/or instability of mtDNA microsatellites and also into a better estimation of the mutation rate of such microsatellites in birds.

分类号:

  • 相关文献

[1]Genetic variation and population structure of the oriental fruit moth Grapholita molesta in Shanxi, a major pome fruits growing region in North China. Yang, Jing,Liu, Zhong-Fang,Fan, Ji-Qiao,Fan, Ren-Jun,Yang, Jing,Liu, Zhong-Fang,Fan, Ji-Qiao,Fan, Ren-Jun,Wu, Yu-Peng,Ma, Rui-Yan. 2016

[2]Genetic structure in species with shallow evolutionary lineages: A case study of the rare flatfish Verasper variegatus. Sekino, Masashi,Saitoh, Kenji,Shimizu, Daisuke,Wada, Toshihiro,Kamiyama, Kyoichi,Gambe, Somei,Chen, Siqing,Aritaki, Masato.

[3]Phylogeography and origin of Chinese domestic chicken. Wu, Y. P.,Huo, J. H.,Xie, J. F.,Liu, L. X.,Wei, Q. P.,Xie, M. G.,Kang, Z. F.,Ji, H. Y.,Ma, Y. H..

[4]Evidence of balancing selection in multiple indigenous chicken populations. Arlud, S.,Zeng, S. C.,Arlud, S.,Arlud, S.,E, G. X.. 2016

[5]Analysis of genetic structure and relationship among nine indigenous Chinese chicken populations by the Structure program. Li, H. F.,Han, W.,Zhu, Y. F.,Shu, J. T.,Zhang, X. Y.,Chen, K. W..

[6]Edible peanut worm (Sipunculus nudus) in the Beibu Gulf: Resource, aquaculture, ecological impact and counterplan. Li, Junwei,Xie, Xiaoyong,Zhu, Changbo,Guo, Yongjian,Chen, Suwen. 2017

[7]Sediminimonas qiaohouensis gen. nov., sp nov., a member of the Roseobacter clade in the order Rhodobacterales. Wang, Yong-Xia,Liu, Ji-Hui,Chen, Yi-Guang,Wen, Meng-Liang,Xu, Li-Hua,Peng, Qian,Cui, Xiao-Long,Chen, Yi-Guang,Zhang, Xiao-Xia.

[8]The bumblebees of the subgenus Subterraneobombus: integrating evidence from morphology and DNA barcodes (Hymenoptera, Apidae, Bombus). Williams, Paul H.,An, Jiandong,Huang, Jiaxing.

[9]A Survey of Phytophthora Species on Hainan Island of South China. Ho, Hong-Hing,Zeng, Hui-Cai,Zheng, Fuy-Cong.

[10]Gracilibacillus saliphilus sp nov., a moderately halophilic bacterium isolated from a salt lake. Tang, Shu-Kun,Jiang, Cheng-Lin,Xu, Li-Hua,Li, Wen-Jun,Wang, Yun,Lou, Kai,Mao, Pei-Hong,Jin, Xiang.

[11]The complete mitochondrial genome of Endangered fish Huso dauricus ( Acipenseriformes: Acipenseridae). Lu, Cuiyun,Gu, Ying,Li, Chao,Cheng, Lei,Sun, Xiaowen. 2016

[12]Mitochondrial DNA reveals low population differentiation in elongate loach, Leptobotia elongata (Bleeker): implications for conservation. Zhou, Dinggang,Liu, Guangxun,Zhou, Jian. 2012

[13]Mitochondrial DNA sequence of Lampetra morri. Peng, Lina,Lu, Jianguo,Sun, Xiao-Wen,Peng, Lina. 2016

[14]Genetic structure and low-genetic diversity suggesting the necessity for conservation of the Chinese Longsnout catfish, Leiocassis longirostris (Pisces : Bagriidae). Wang, ZW,Zhou, JF,Ye, YZ,Wei, QW,Wu, QJ. 2006

[15]The complete mitochondrial genome sequence of Hemiculter leucisculus. Dong, Fang,Tong, Guang-Xiang,Kuang, You-Yi,Zheng, Xian-Hu,Sun, Xiao-Wen,Dong, Fang. 2015

[16]Genetic diversity and systematic evolution of Chinese domestic ducks along the Yangtze-Huai river. Li, Hui-fang,Chen, Kuan-wei,Tang, Qing-ping,Zhang, Jing-xin,Zhang, Tang-jie,Chang, Hong,Zhang, Jing-xin. 2007

[17]Structure of mitochondrial DNA control region of Pholis fangi and its phylogenetic implication. Li Lin,Zhang Hui,Gao Tianxiang,Sun Dianrong. 2014

[18]The complete mitochondrial genome of Spinibarbus sinensis (Bleeker). Yang, ChangGeng,Wen, Hua,Jiang, Ming. 2015

[19]Mitochondrial DNA diversity of Glyptothorax zanaensis (Wu et al., 1981) populations in Nu River, China. Yuan, Xi-Ping,Wang, Deng-Qiang,Liu, Shao-Ping,Chen, Da-Qing,Yuan, Xi-Ping,Wu, Yuan-An,Hong, Bo. 2012

[20]Genetic diversity in the bronze gudgeon, Coreius heterodon, from the Yangtze River system based on mtDNA sequences of the control region. Yan, Li,Wang, Dengqiang,Fang, Yaoling,Liu, Shaoping,Duan, Xinbing,Chang, Yonghua,Chen, Daqing,Yan, Li. 2008

作者其他论文 更多>>