Genetic diversity and population structure of vegetable soybean (Glycine max (L.) Merr.) in China as revealed by SSR markers

被引:52
作者
Dong, Dekun [1 ]
Fu, Xujun [1 ]
Yuan, Fengjie [1 ]
Chen, Pengyin [2 ]
Zhu, Shenlong [1 ]
Li, Baiquan [1 ]
Yang, Qinghua [1 ]
Yu, Xiaomin [1 ]
Zhu, Danhua [1 ]
机构
[1] Zhejiang Acad Agr Sci, Inst Crop & Nucl Technol Utilizat, Hangzhou 310021, Zhejiang, Peoples R China
[2] Univ Arkansas, Dept Crop Soil & Environm Sci, Fayetteville, AR 72701 USA
关键词
Genetic diversity; Glycine max (L.) Merr; Population structure; Simple sequence repeat; Vegetable soybean; LINKAGE MAP; SOJA SIEB; WILD; CULTIVARS; NUCLEAR;
D O I
10.1007/s10722-013-0024-y
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Vegetable soybean is a kind of value-added specialty soybean serving as vegetable or snacks. Understanding the genetic structure of vegetable soybean is a key point for further utilization in breeding programs. In the present study, the genetic structure and diversity of 100 vegetable soybean accessions planted in China was analyzed using 53 simple sequence repeat (SSR) markers. A total of 296 alleles were detected with an average of 5.6 alleles per SSR locus. The polymorphism information content (PIC) values of SSR markers ranged from 0.074 to 0.831, with an average of 0.573. Nei's genetic distance between accessions ranged from 0 to 0.9434 with an average of 0.6286. These vegetable soybean germplasms could be divided into 8 subgroups based on STRUCTURE analysis, or 11 subgroups based on unweighted pair group method with arithmetic average (UPGMA) cluster. Further comparison showed that the UPGMA subgroups and STRUCTURE subgroups were in fact highly consistent. Germplasms in each classified groups showed great consistency with their origins, seed coat colors or pedigrees. Genetic relationships among germplasm panels that initially came from different geographical regions were also analyzed. Germplasm panels from China Mainland, Taiwan Island and Japan were highly similar to each other with the similarities of over 98 %. Molecular data and cluster analysis also showed that germplasms from China Mainland are more diverse than those from other areas. These results gave us a deep insight into the genetic structure of vegetable soybeans in China and will help us to improve the breeding strategies.
引用
收藏
页码:173 / 183
页数:11
相关论文
共 40 条
[1]  
BOTSTEIN D, 1980, AM J HUM GENET, V32, P314
[2]  
CHAKRABORTY R, 1993, HUM BIOL, V65, P875
[3]   Relationship between origin and genetic diversity in Chinese soybean germplasm [J].
Chen, YW ;
Nelson, RL .
CROP SCIENCE, 2005, 45 (04) :1645-1652
[4]   An integrated genetic linkage map of the soybean genome [J].
Cregan, PB ;
Jarvik, T ;
Bush, AL ;
Shoemaker, RC ;
Lark, KG ;
Kahler, AL ;
Kaya, N ;
VanToai, TT ;
Lohnes, DG ;
Chung, L ;
Specht, JE .
CROP SCIENCE, 1999, 39 (05) :1464-1490
[5]   The genetic diversity of cultivated soybean grown in China [J].
Dong, YS ;
Zhao, LM ;
Liu, B ;
Wang, ZW ;
Jin, ZQ ;
Sun, H .
THEORETICAL AND APPLIED GENETICS, 2004, 108 (05) :931-936
[6]   STAGE OF DEVELOPMENT DESCRIPTIONS FOR SOYBEANS, GLYCINE-MAX (L) MERRILL [J].
FEHR, WR ;
CAVINESS, CE ;
BURMOOD, DT ;
PENNINGTON, JS .
CROP SCIENCE, 1971, 11 (06) :929-+
[7]   Genetic Diversity and Population Structure: Implications for Conservation of Wild Soybean (Glycine soja Sieb. et Zucc) Based on Nuclear and Chloroplast Microsatellite Variation [J].
He, Shuilian ;
Wang, Yunsheng ;
Volis, Sergei ;
Li, Dezhu ;
Yi, Tingshuang .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2012, 13 (10) :12608-12628
[8]   DISSEMINATION OF SOYBEANS (GLYCINE-MAX) - SEED PROTEIN ELECTROPHORESIS PROFILES AMONG JAPANESE CULTIVARS [J].
HYMOWITZ, T ;
KAIZUMA, N .
ECONOMIC BOTANY, 1979, 33 (03) :311-319
[9]   TAXONOMY OF THE GENUS GLYCINE, DOMESTICATION AND USES OF SOYBEANS [J].
HYMOWITZ, T ;
NEWELL, CA .
ECONOMIC BOTANY, 1981, 35 (03) :272-288
[10]  
Katou T, 1982, J JPN SOC HORTIC S S, V51, P537