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作 者:侯永翠[1] 颜泽洪[1] 魏育明[1] 郑有良[1]
出 处:《植物遗传资源学报》2005年第2期145-150,共6页Journal of Plant Genetic Resources
基 金:四川省教育厅重点项目
摘 要:利用RAPD标记对19份西藏近缘野生大麦材料、33份我国不同省市的地方品种以及8份国外引进大麦品种共6 0份大麦种质资源的遗传多样性进行检测。结果表明材料间遗传差异明显。32个RAPD引物中,有2 5个引物(占78 13% )可扩增出清晰且具多态性的条带,另外7个引物能扩增出1~3条清晰但无多态性的条带。每个引物可扩增出1~8条多态性带,平均为3 72条。32个引物共产生119条DNA片段,其中87条具有多态性,多态性比率(PPB)为73 11% ,平均多态信息量(PIC)为0 4 34;每个位点平均有效等位基因数(Ne)为2 30 4 ;材料间遗传相似系数GS变化范围为0 75 7~0 981,平均值为0 871。19份来源于西藏的近缘野生大麦材料间GS值变幅为0 818~0 96 9,平均为0 892 ;33份我国栽培大麦地方品种间的GS值变化范围为0 783~0 981,平均为0 879;8份分别来自8个国家的栽培大麦品种间的GS值变幅为0 82 0~0 95 6 ,平均为0 882。根据RAPD标记分析的结果,对6 0份大麦种质资源进行聚类分析,在平均GS值0 871水平上6 0份大麦材料可聚为5类,聚类结果能在一定程度上反应材料的地理分布关系,但某些相同地理来源的材料也较分散地分布在整个聚类树中。本研究从分子水平上进一步证明了我国栽培大麦丰富的遗传多样性。The genetic diversity and genetic relationships among 60 accessions of barley, including 33 Chinese landraces, 19 wild relatives from Tibet and 8 cultivars from other countries, were evaluated by RAPD markers. Totally 119 bands were detected with 32 primers, with the average of 3.72. Eighty-seven polymorphic bands were detected, representing of 73.11% of polymorphic bands (PPB) and 0.434 of mean polymorphism information content (PIC), respectively. The average number of alleles (Ne) was 2.304. One to eight polymorphic bands were generated by each primer. Among 60 barley accessions, the RAPD-based genetic similarity (RAMP-GS) ranged from 0.757 to 0.981, with the mean of 0.871. The mean GS of 19 wild barley accessions, 33 Chinese and 8 foreign cultivars were 0. 892,0. 879 and 0. 882, respectively. UPGMA cluster analysis showed that these accessions could be divided into five groups and the genetic diversity based on RAPD markers was correlated with their geographical distribution.
关 键 词:栽培大麦 RAPD标记 遗传多样性 聚类分析 RAPD标记分析 近缘野生大麦 种质资源 有效等位基因数 遗传相似系数 平均值
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