SSR标记分析热带玉米自交系的遗传多样性

Maizura Abu Sin, G. Saleh, N. Abdullah, P. Kashiani
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摘要

遗传多样性和表型优越性是亲本自交系在杂交育种中的重要特性。本研究利用100个SSR标记,对国际玉米小麦改良中心(CIMMYT)引种的28个玉米自交系、印度尼西亚引种的1个玉米自交系和当地开发的1个玉米自交系的遗传多样性进行了评价,作为杂种品种潜在亲本的早期筛选。所有标记均具有多态性,在30个自交系的100个位点上共检测到550个独特的等位基因。等位基因丰富度为2 ~ 13个,平均为5.50个(na)。有效等位基因数(ne)为3.75个/位点,表明它们在揭示自交系间多样性方面具有较高的效率。平均多态性信息含量(PIC)为0.624,值在0.178 ~ 0.874之间,表明标记具有较高的信息性。8号和4号染色体基因多样性较高,有效等位基因数量较多,具有QTL分析的潜力。构建的UPGMA树状图在0.350的相似性指数范围内鉴定出4个杂种优势类群,表明这些标记能够对自交系进行分类。三维PCoA图也支持树形图分组,表明这两种方法是互补的。不同杂种优势群体的自交系起源于不同的背景和种群来源。玉米自交系间的遗传多样性信息对制定利用杂种优势的育种策略具有重要意义
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Genetic diversity among tropical maize inbred lines as revealed by SSR markers
Genetic diversity and phenotypic superiority are important attributes of parental inbred lines for use in hybrid breeding programs. In this study, genetic diversity among 30 maize (Zea mays L.) inbred lines comprising of 28 introductions from the International Maize and Wheat Improvement Center (CIMMYT), one from Indonesia and a locally developed, were evaluated using 100 simple sequence repeat (SSR) markers, as early screening for potential parents of hybrid varieties. All markers were polymorphic, with a total of 550 unique alleles detected on the 100 loci from the 30 inbred lines. Allelic richness ranged from 2 to 13 per locus, with an average of 5.50 alleles (na). Number of effective alleles (ne) was 3.75 per locus, indicating their high effectiveness in revealing diversity among inbred lines. Average polymorphic information content (PIC) was 0.624, with values ranging from 0.178 to 0.874, indicating high informativeness of the markers. High gene diversity was observed on Chromosomes 8 and 4, with high number of effective alleles, indicating their potential usefulness for QTL analysis. The UPGMA dendrogram constructed identified four heterotic groups within a similarity index of 0.350, indicating that these markers were able to group the inbred lines. The three-dimensional PCoA plot also supports the dendrogram grouping, indicating that these two methods complement each other. Inbred lines in different heterotic groups have originated from different backgrounds and population sources. Information on genetic diversity among the maize inbred lines are useful in developing strategies exploiting heterosis in breeding programs
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