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Genetic contribution of foreign germplasm to elite Chinese soybean (Glycine max) cultivars revealed by SSR markers
引用本文:QIN Jun CHEN Weiyuan GUAN Rongxia JIANG Chengxi LI Yinghui FU Yashu LIU Zhangxiong ZHANG Mengchen CHANG Ruzhen QIU Lijuan. Genetic contribution of foreign germplasm to elite Chinese soybean (Glycine max) cultivars revealed by SSR markers[J]. 科学通报(英文版), 2006, 51(9): 1078-1084. DOI: 10.1007/s11434-006-1078-4
作者姓名:QIN Jun CHEN Weiyuan GUAN Rongxia JIANG Chengxi LI Yinghui FU Yashu LIU Zhangxiong ZHANG Mengchen CHANG Ruzhen QIU Lijuan
作者单位:[1]National Key Facility of Crop Gene Resources and Genetic Improvement, Key Lab of Crop Gerrnplasm Resources & Biotechology (MOA), Institute of Crop Science, Chinese Agricultural Academy of Sciences, Beijing 100081, China [2]Hebei Academy of Agricultural and Forestry Science, Shijiazhuang 050031, China [3]Heilongjiang Academy of Agricultural Science, Suihua 152052, China
基金项目:Acknowledgements This work was supported by the National Scientific Research Program (Grant No. 2004BA525 B06), High-Tech Plan (863) (Grant No. 2004AA211111), the National Basic Research Program (973) (Grant No. 2004 CBl17213) and the National Natural Science Foundation of China (Grant No. 30490250).
摘    要:Among 651 soybean (Glycine max) cultivars re- leased from 1923 to 1995, most of the parents used in the breeding program of northeast China and Huang- huai-hai valley were cultivars well adapted to local ecologic areas. Narrow parentage and lack of geneti…

关 键 词:大豆 谱系分析 SSR 序列分析 种质资源
文章编号:10.0007/s11434-006-1078-4
收稿时间:2005-10-08
修稿时间:2005-10-082006-01-23

Genetic contribution of foreign germplasm to elite Chinese soybean (Glycine max) cultivars revealed by SSR markers
Jun Qin,Weiyuan Chen,Rongxia Guan,Chengxi Jiang,Yinghui Li,Yashu Fu,Zhangxiong Liu,Mengchen Zhang,Ruzhen Chang,Lijuan Qiu. Genetic contribution of foreign germplasm to elite Chinese soybean (Glycine max) cultivars revealed by SSR markers[J]. Chinese science bulletin, 2006, 51(9): 1078-1084. DOI: 10.1007/s11434-006-1078-4
Authors:Jun Qin  Weiyuan Chen  Rongxia Guan  Chengxi Jiang  Yinghui Li  Yashu Fu  Zhangxiong Liu  Mengchen Zhang  Ruzhen Chang  Lijuan Qiu
Affiliation:(1) National Key Facility of Crop Gene Resources and Genetic Improvement, Key Lab of Crop Germplasm Resources & Biotechology (MOA), Institute of Crop Science, Chinese Agricultural Academy of Sciences, Beijing, 100081, China;(2) Hebei Academy of Agricultural and Forestry Science, Shijiazhuang, 050031, China;(3) Heilongjiang Academy of Agricultural Science, Suihua, 152052, China
Abstract:Simple sequence repeats (SSR) marker analysis, combined with pedigree analysis, was car- ried out to trace the genetic constitutes of Suinong 14 and Hefeng 25 in assessing the contribution of for- eign germplasm to those elite cultivars. The overall goal is to accumulate information for further effective utilization of foreign germplasm in Chinese soybean breeding programs. SSR clustering results indicated that the genetic base of elite Chinese soybean culti- vars, including Suinong 14 and Hefeng 25, were broadened and enhanced via introduction of Amsoy from the U.S. and Shishengchangye from Japan. The pedigree analysis showed a very high coefficient of parentage between Shishengchangye and Hefeng 25, between Shishengchangye and Suinong 14, and between Amsoy and Suinong 14. The genetic simi- larity between Suinong 14 and Hefeng 25 was 60.58%. Among 20 linkage groups, more genomic regions were transferred from Hefeng 25 to Suinong 14 in linkage group (LG) I, L and C2 than other LGs. Among the unique alleles of foreign parents, five specific loci in Amsoy were transferred to Suinong 14, and three loci from Shishengchangye to Suinong 14. Some SSR loci were proved to be correlated with phenotypes: two loci for seed size introgressed from Shishengchangye to Suinong 14, and one locus forprotein content from Amsoy to Suinong 14. These results indicate that the two foreign parents might have important contributions in the development of Suinong 14 and Hefeng 25.
Keywords:soybean   pedigree analysis   simple sequence repeats (SSR)   genetic relationship.
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