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Constructing a Core Collection for Maize (Zea mays L.) Landrace from Wuling Mountain Region in China
引用本文:YAO Qi-lun,;FAN Ping,;ZOU Shu-xian. Constructing a Core Collection for Maize (Zea mays L.) Landrace from Wuling Mountain Region in China[J]. 中国农业科学(英文版), 2008, 7(12): 1423-1432. DOI: 10.1016/S1671-2927(08)60398-3
作者姓名:YAO Qi-lun,  FAN Ping,  ZOU Shu-xian
作者单位:[1]Department of Life Science, Yangtze Normal College, Fuling 408100, P.R.China; [2]Gene Research Center, Chongqing University, Chongqing 400000, P.R.China
基金项目:Acknowledgements This work was supported by the National High Technology Research and Development Program of China (863 Program, 2004BA525B04) and Program for Changjiang Scholars and Innovative Research Team in University of China (IRTO453).
摘    要:Based on the genetic clustering from 42 microsatellite (SSR) markers with a combination of their geographic origin and germplasm characteristics, 124 maize landraces from Wuling Mountain region in China were used for constructing a core collection. Four evaluating parameters for maize landrace core collection, including mean difference percentage (MD), variance difference percentage (VD), coincidence rate of range (CR), and variable rate of coefficient of variation (VR), were assessed With 20 quantitative traits. It was shown that genetic relationships among landraces in Wuling Mountain region had the tendency to associate with their geographic origins. The 124 landraces were clustered into 18 subgroups when the coefficient of genetic similarity (GS) is 0.28. Eighteen landraces, each of which was from one subgroup, were applied to construct the core collection with a sampling percentage of 15%. Comparison of the initial and core collection indicated that there existed no significant differences in most quantitative traits. An average of 6.3 and 6.5 alleles were detected in the initial and core collection, respectively. Mean polymorphism information content in the core collection (0.75) was higher than that in the initial one (0.72). MD was lesser than 20% and CR was more than 80%. The results showed that the sampling strategy would be feasible for constructing the core collection that well represents the genetic diversity of the initial one.

关 键 词:玉米  遗传学  地理位置  果核采集
收稿时间:2008-04-09

Constructing a Core Collection for Maize (Zea mays L.) Landrace from Wuling Mountain Region in China
Qi-lun YAO, Ping FAN,Shu-xian ZOU. Constructing a Core Collection for Maize (Zea mays L.) Landrace from Wuling Mountain Region in China[J]. 《Agricultural Sciences in China》, 2008, 7(12): 1423-1432. DOI: 10.1016/S1671-2927(08)60398-3
Authors:Qi-lun YAO   Ping FAN  Shu-xian ZOU
Affiliation:aDepartment of Life Science, Yangtze Normal College, Fuling 408100, P.R. China;bGene Research Center, Chongqing University, Chongqing 400000, P.R. China
Abstract:Based on the genetic clustering from 42 microsatellite (SSR) markers with a combination of their geographic origin and germplasm characteristics, 124 maize landraces from Wuling Mountain region in China were used for constructing a core collection. Four evaluating parameters for maize landrace core collection, including mean difference percentage (MD), variance difference percentage (VD), coincidence rate of range (CR), and variable rate of coefficient of variation (VR), were assessed with 20 quantitative traits. It was shown that genetic relationships among landraces in Wuling Mountain region had the tendency to associate with their geographic origins. The 124 landraces were clustered into 18 subgroups when the coefficient of genetic similarity (GS) is 0.28. Eighteen landraces, each of which was from one subgroup, were applied to construct the core collection with a sampling percentage of 15%. Comparison of the initial and core collection indicated that there existed no significant differences in most quantitative traits. An average of 6.3 and 6.5 alleles were detected in the initial and core collection, respectively. Mean polymorphism information content in the core collection (0.75) was higher than that in the initial one (0.72). MD was lesser than 20% and CR was more than 80%. The results showed that the sampling strategy would be feasible for constructing the core collection that well represents the genetic diversity of the initial one.
Keywords:core collection   maize   landraces   SSRs   Wuling Mountain region
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