[1] |
Chen, YC, Cao, et al. Genetic divergence and conversation of Chinese cattle breeds Biodiversity Science, 9 (2001),pp. 275-283
|
[2] |
Chen, H, Qiu, et al. Studies on sex chromosome polymorphism of four local cattle (Bos taurus) breeds in China Hereditas, 15 (1993),pp. 14-17
|
[3] |
Lei, CZ, Chen, et al. Study on mitochondrial DNA genetic diversity of some cattle breeds in China Acta Genetica Sinica, 31 (2004),pp. 57-62
|
[4] |
Lai, SJ, Liu, et al. Study on mitochondrial DNA genetic polymorphism of cattle breeds in Sichuan Province Acta Veterinaria et Zootechnica Sinica, 36 (2005),pp. 887-892
|
[5] |
Lai, SJ, Liu, et al. Genetic diversity and origin of Chinese cattle revealed by mtDNA D-loop sequence variation Molecular Phylogenetics and Evolution, 38 (2006),pp. 146-154
|
[6] |
Liu, RY, Xia, et al. Genetic diversity of mitochondrial DNA D-loop sequences in cattle breeds in Guizhou. Hereditas, 28 (2006),pp. 279-284
|
[7] |
Pfeiffer, I, Voelkel, et al. Phylogenetics of the European Dahomey miniature cattle based on mitochondrial Dloop region DNA sequence Animal Genetics, 36 (2005),p. 179181
|
[8] |
Mirol1, PM, Giovambattista, et al. African and European mitochondrial haplotypes in South American Creole cattle Heredity, 91 (2003),p. 248254
|
[9] |
Miretti, M, Pereira, et al. African-Derived mitochondria in South American native cattle breeds (Bos taurus): evidence of a new taurine mitochondrial lineage Journal of Heredity, 93 (2002),pp. 323-330
|
[10] |
Miretti, M, Dunner, et al. Predominant African-Derived mtDNA in Caribbean and Brazilian Creole Cattle is also found in Spanish Cattle (Bos taurus) Journal of Heredity, 95 (2004),p. 450453
|
[11] |
Tsuji, S, Mannen, et al. Trace of native cattle in Japanese Holstein assessed by mitochondrial DNA sequence polymorphism J Dairy Sci, 87 (2004),p. 30713075
|
[12] |
Chen, Hong, Leibenguth, et al. Studies on multilocus fingerprints, RAPD markers and mitochondrial DNA of a gynogenetic fish (Carassius auratus gibelio) Biochem Genet, 33 (1995),pp. 297-306
|
[13] |
Anderson, S, de Bruijn, et al. Complete sequence of bovine mitochondrial DNA conserved feathers of the mammalian mitochondrial genome J Mol Biol, 156 (1982),p. 683717
|
[14] |
Ramachandran, S, Deshpande, et al. Support from the relationship of genetic and geographic distance in human populations for a serial founder effect originating in Africa PNAS, 102 (2005),pp. 15942-15947
|
[15] |
Chen, ZH, Zhong, et al. A study on chromosome of Tibetan yellow cattle Journal of Yellow Cattle Science, 1 (1995),pp. 1-2
|
[16] |
Yang, ZP, Chang, et al. Study on morphology and ecology of the indicus populations from cooled region of south Tibet Journal of Yangzhou University (Agricultural and Life Science Edition), 23 (2002),pp. 23-26
|
[17] |
Xu, WB Study of the origin of Bos in Yunnan Chinese Journal of Animal Science, 4 (1983),pp. 34-37
|
[18] |
Tu, ZC, Nie, et al. Blood protein polymorphism in B. frontalis, B. grunniens, B. taurus and B. indicus Biochemical Genetics, 38 (2000),pp. 413-416
|
[19] |
Yu, Y, Nie, et al. Mitochondrial DNA variation in cattle of South China: origin and introgression Animal Genetics, 30 (1999),p. 245250
|
[20] |
Guo, AP Chromosomal comparison in Bos grunniens, Bos taurus and cattle-yak Acta Veterinaria et Zootechnica Sinica, 10 (1983),pp. 133-143
|