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基于QTL相关SSR标记分析黄淮海和南方大豆品种的遗传多样性及群体遗传结构
引用本文:刘嘉霖,谢慧敏,张峥,杨柏云,罗火林,龚贵如,熊冬金.基于QTL相关SSR标记分析黄淮海和南方大豆品种的遗传多样性及群体遗传结构[J].中国油料作物学报,2022,44(1):63-71.
作者姓名:刘嘉霖  谢慧敏  张峥  杨柏云  罗火林  龚贵如  熊冬金
作者单位:南昌大学生命科学学院,江西 南昌,330031
基金项目:国家自然科学基金(31960407、31260332)。
摘    要:研究大豆育成品种遗传多样性及群体结构对大豆遗传改良具有重要的指导意义.本文利用99个与大豆QTL性状相关的SSR标记,对黄淮海和南方产区的105份大豆育成品种进行遗传多样性和群体结构分析.结果表明:99个位点共检测出1142个等位标记,每个位点变异范围为5~24个,平均每个位点11.54个等位变异.按品种育成时期将群体...

关 键 词:大豆  黄淮海  南方  育成品种  SSR标记  遗传多样性
收稿时间:2020-10-16

Population structure and genetic analysis within soybean cultivars of Huang-Huai-Hai and Southern region of China based on SSR markers related to QTL
LIU Jia-lin,XIE Hui-min,ZHANG Zheng,YANG Bo-yun,LUO Huo-lin,GONG Gui-ru,XIONG Dong-jin.Population structure and genetic analysis within soybean cultivars of Huang-Huai-Hai and Southern region of China based on SSR markers related to QTL[J].Chinese Journal of Oil Crop Sciences,2022,44(1):63-71.
Authors:LIU Jia-lin  XIE Hui-min  ZHANG Zheng  YANG Bo-yun  LUO Huo-lin  GONG Gui-ru  XIONG Dong-jin
Institution:College of Life Science, Nanchang University, Nanchang 330031, China
Abstract:Research of the population structure and genetic diversity has guiding significance to soybean improvement. In this study, 105 cultivar soybean accessions bred from Huang-Huai-Hai and Southern region of China were collected to detect their population structure and genetic diversity by using 99 SSR polymorphic primer pairs.The results showed that a total of 1142 alleles were detected at 99 loci with 11.54 average number of alleles per locus ranging from 5 to 24. The whole population was divided into 4 subgroups according to breeding period. The range of Nei’s gene diversity was 0.628-0.839 with an average of 0.774. The polymorphism information content ranged from 0.562-0.820 with an average of 0.742. The genetic distance between subgroups ranged from 0.387 to0.197 with an average of 0.297. Ninety-nine percentage of total variation was explained within the subgroups,and1% of total variation was explained among subgroups based on the molecular variation analysis, which indicated that there were frequent gene exchanges in subgroups. The principal coordinate analysis showed that the first, second, and third principal factors explained 4.12%, 3.61%, and 2.90% of the total variation respectively. These soybean germplasm could be divided into 3 subgroups based on STRUCTURE analysis and unweighted pair group method with arithmetic average(UPGMA) cluster. Further comparison showed that the UPGMA subgroups and STRUCTURE subgroups displayed a highly consistent correlation with these pedigrees and the genetic base of each period. The genetic diversity had period characteristics and showed an increasing trend in this study.
Keywords:soybean  Huang-Huai-Hai  South China  cultivar  SSR marker  gene diversity
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