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Genetic structure analysis of domestic duck populations in eastern China

Published online by Cambridge University Press:  03 March 2009

Li Hui-Fang*
Affiliation:
Institute of Poultry Science, Chinese Academy of Agriculture Science, Yangzhou 225003, China
Song Wei-Tao
Affiliation:
Institute of Poultry Science, Chinese Academy of Agriculture Science, Yangzhou 225003, China
Zhu Wen-Qi
Affiliation:
Institute of Poultry Science, Chinese Academy of Agriculture Science, Yangzhou 225003, China
Xu Wen-Juan
Affiliation:
Institute of Poultry Science, Chinese Academy of Agriculture Science, Yangzhou 225003, China
Tang Qing-Ping
Affiliation:
Institute of Poultry Science, Chinese Academy of Agriculture Science, Yangzhou 225003, China
*
*Corresponding author. E-mail: [email protected]

Abstract

Using microsatellite markers, the genetic structure of nine domestic duck (Anas platyrhynchos) populations in eastern China was analysed. The results showed that the heterozygosity was high in these populations, ranging from 0.5137 to 0.6055, with an average heterozygosity of 0.5523, reflecting the rich diversity. Considerable breed differentiation was observed and 25.65% of the total genetic variation came from breed differences; this low differentiation result affirmed that each breed has its own genetic diversity. The DA genetic distances suggested that greater differentiation existed between populations. The duck populations were clustered into four groups based on neighbour joining (NJ) clustering, and the clustering results showed relationships with duck breed distributions and economic utilization.

Type
Research Papers
Copyright
Copyright © China Agricultural University 2008

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Footnotes

First published in Journal of Agricultural Biotechnology 2008, 16(2): 248–252

References

Chen, GH, Ji, CL, Wang, MQ and Weigend, S (2006) Analysis of genetic structure and diversity of 12 Chinese indigenous chicken breeds. Acta Veterinaria et Zootechnica Sinica 37(2): 105111 (in Chinese with English abstract).Google Scholar
Duan, BF, Zhu, WQ, Li, HF, Qian, K and Tu, YJ (2006) Study on genetic variation of four native goose populations in Guangdong Province. China Poultry 28(24): 8991 (in Chinese).Google Scholar
Li, HF, Zhang, SJ and Chen, KW (2005) Analysis of genetic diversity among domestic chicken breeds of concern in China. Journal of China Agricultural University 10(3): 2124 (in Chinese with English abstract).Google Scholar
Li, HF, Li, BC, Chen, KW, et al. (2006a) Study on molecular genetic diversity of native duck breeds in China. Acta Veterinaria et Zootechnica Sinica 37(11): 11071113 (in Chinese with English abstract).Google Scholar
Li, HF, Qian, K, Xu, WJ, Gu, R and Zhao, YG (2006b) Biodiversity of domestic duck resources in the world. China Poultry 28(17): 5861 (in Chinese).Google Scholar
Paulus, BK and Tiedemann, R (2003) Ten polymorphic autosomal microsatellite loci for the Eider duck and their cross-species applicability among waterfowl species (Anatidae). Molecular Ecology 3: 250252.CrossRefGoogle Scholar
Sambrook, J, Fritsch, EF and Maniatis, T (1989) Molecular Cloning: A Laboratory Manual. New York: Cold Spring Harbor Laboratory Press.Google Scholar
Su, Y, Chen, GH, Long, RJ, Wan, JH and Ma, L (2007) Study on genetic diversity between Mallard and Chinese local duck breeds. Acta Veterinaria et Zootechnica Sinica 38(9): 899906 (in Chinese with English abstract).Google Scholar
Vanhala, T, Tuiskul, A, Haavisto, M, Elo, K, Vilkki, J and MakiTanila, A (1998) Evaluation of genetic variability and genetic distance between eight chicken lines using microsatellite marker. Poultry Science 77: 783790.CrossRefGoogle Scholar
Zhang, YW, Zhang, YP and Airyder, O (2001) Microsatellites and their application. Zoological Research 22(4): 315320 (in Chinese).Google Scholar