Evaluation of Genetic Diversity in Chinese Wild Apple Species Along with Apple Cultivars Using SSR Markers

被引:168
作者
Zhang, Qiong [1 ,2 ]
Li, Jing [1 ]
Zhao, Yongbo [3 ]
Korban, Schuyler S. [4 ]
Han, Yuepeng [1 ]
机构
[1] Chinese Acad Sci, Key Lab Plant Germplasm Enhancement & Specialty A, Wuhan 430074, Peoples R China
[2] Chinese Acad Sci, Grad Sch, Beijing 100039, Peoples R China
[3] Hebei Acad Agr & Forestry Sci, Changli Inst Pomol, Changli 066600, Hebei, Peoples R China
[4] Univ Illinois, Dept Nat Resources & Environm Sci, Urbana, IL 61801 USA
基金
美国国家科学基金会;
关键词
Malus; Genetic diversity; SSR markers; Cluster analysis; X DOMESTICA BORKH; MICROSATELLITE MARKERS; GENOME; POPULATION; COLLECTION; XINJIANG;
D O I
10.1007/s11105-011-0366-6
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
China, one of the primary centers of genetic diversity for the genus Malus, is very rich in wild apple germplasm. In this study, genetic diversity in 29 Malus accessions, including 12 accessions from 7 Chinese Malus species, 4 Chinese landraces, and 13 introduced apple cultivars, was assessed using a set of 19 single-locus simple sequence repeat (SSR) markers distributed across all 17 linkage groups of the apple genome. The number of alleles detected at each locus ranged from 2 to 11, with an average of 5.3 per SSR marker. In some accessions, 16 unique alleles were identified. Ten out of these 16 unique alleles (62.5%) were detected exclusively in wild species, indicating that these Chinese wild apple species have considerable genetic diversity and can be used in breeding programs to increase the genetic diversity of apple cultivars. Using 19 SSRs, an unweighted pair-group method with arithmetic average cluster analysis was conducted, and the resulting dendrogram revealed that all cultivars, except for E phi peMeBckoe, were clustered together in the same group. The Russian cultivar E phi peMeBckoe was closely related to the Chinese crabapple Baihaitang (M. prunifolia), with a high similarity coefficient value of 0.94. Of the two M. sieversii accessions used, one accession showed a close relationship to apple cultivars, while the other accession was closely related to wild apple species, suggesting the presence of a wider genetic diversity in Chinese M. sieversii species. The influence of SSR marker selection on genetic diversity analysis in this Malus collection was also discussed.
引用
收藏
页码:539 / 546
页数:8
相关论文
共 40 条
[1]   Microsatellite variability in peach [Prunus persica (L.) Batsch]: cultivar identification, marker mutation, pedigree inferences and population structure [J].
Aranzana, M. J. ;
Carbo, J. ;
Arus, P. .
THEORETICAL AND APPLIED GENETICS, 2003, 106 (08) :1341-1352
[2]  
Brenner C., 1990, Proceedings for the International Symposium on Human Identification, P21
[3]  
Brooks RM, 1994, HORTSCIENCE, V29, P942
[4]   Construction of a dense genetic linkage map for apple rootstocks using SSRs developed from Malus ESTs and Pyrus genomic sequences [J].
Celton, J. -M. ;
Tustin, D. S. ;
Chagne, D. ;
Gardiner, S. E. .
TREE GENETICS & GENOMES, 2009, 5 (01) :93-107
[5]  
Chen Xuesen, 2007, Journal of Genetics and Genomics, V34, P171, DOI 10.1016/S1673-8527(07)60018-6
[6]   Comparison of PCR-based molecular marker analyses of Musa breeding populations [J].
Crouch, JH ;
Crouch, HK ;
Constandt, H ;
Van Gysel, A ;
Breyne, P ;
Van Montagu, M ;
Jarret, RL ;
Ortiz, R .
MOLECULAR BREEDING, 1999, 5 (03) :233-244
[7]  
Doyle J. J., 1991, Molecular techniques in taxonomy., P283
[8]   Isolation of EST-derived microsatellite markers for genotyping the A and B genomes of wheat [J].
Eujayl, I ;
Sorrells, ME ;
Baum, M ;
Wolters, P ;
Powell, W .
THEORETICAL AND APPLIED GENETICS, 2002, 104 (2-3) :399-407
[9]   Molecular identification of commercial apple cultivars with microsatellite markers [J].
Galli, Z ;
Halász, G ;
Kiss, E ;
Heszky, L ;
Dobránszki, J .
HORTSCIENCE, 2005, 40 (07) :1974-1977
[10]  
Ganesh S. K., 1995, Madras Agricultural Journal, V82, P263