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Genetic diversity assessed by microsatellite markers in sweet corn cultivars.

机译:用微卫星标记评估甜玉米品种的遗传多样性。

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摘要

Information on genetic diversity is essential to the characterization and utilization of germplasm. The genetic diversity of twenty-two sweet corn cultivars (seventeen open-pollinated varieties, OPV, and five hybrids, H) was investigated by applying simple sequence repeat markers. A total of 257 primers were tested, of which 160 were found to be usable in terms of high reproducibility for all the samples tested; 45 were polymorphic loci, of which 30 were used to assess the genetic diversity of sweet corn cultivars. We detected a total of 86 alleles using 30 microsatellite primers. The mean polymorphism was 82 %. The highest heterozygosity values (Ho = 0.20) were found in the PR030-Doce Flor da Serra and BR427 III OPVs, whereas the lowest values (0.14) were recorded in the MG161-Branco Doce and Doce Cubano OPVs. The polymorphism information content ranged from 0.19 (Umc2319) to 0.71 (Umc2205). The analysis of molecular variance revealed that most of the genetic variability was concentrated within the cultivars of sweet corn (75 %), with less variability between them (25 %). The consensus tree derived from the neighbor-joining (NJ) algorithm using 1,000 bootstrapping replicates revealed seven genetically different groups. Nei?s diversity values varied between 0.103 (Doce do Hawai × CNPH-1 cultivars) and 0.645 (Amarelo Doce × Lili cultivars), indicating a narrow genetic basis. The Lili hybrid was the most distant cultivar, as revealed by Principal Coordinates Analysis and the NJ tree. This study on genetic diversity will be useful for planning future studies on sweet corn genetic resources and can complement the breeding programs for this crop.
机译:关于遗传多样性的信息对于种质的表征和利用至关重要。应用简单的序列重复标记研究了22个甜玉米品种的遗传多样性(17个开放授粉品种OPV和5个杂种H)。总共测试了257条引物,其中160条被认为对所有测试样品具有高再现性; 45个是多态位点,其中30个用于评估甜玉米品种的遗传多样性。我们使用30个微卫星引物检测到总共86个等位基因。平均多态性为82%。在PR030-Doce Flor da Serra和BR427 III OPV中发现最高杂合度值(Ho = 0.20),而在MG161-Branco Doce和Doce Cubano OPV中发现最低杂合度值(0.14)。多态信息内容的范围从0.19(Umc2319)到0.71(Umc2205)。分子变异分析表明,大多数遗传变异集中在甜玉米品种中(75%),而它们之间的变异较小(25%)。从邻居联接(NJ)算法使用1000个自举复制品衍生的共识树显示了七个遗传上不同的组。 Nei的多样性值在0.103(Hace Doce×CNPH-1品种)和0.645(Amarelo Doce×Lili品种)之间变化,表明其遗传基础狭窄。主坐标分析和NJ树显示,莉莉杂种是最远的品种。这项遗传多样性研究将有助于计划未来甜玉米遗传资源的研究,并可以补充该作物的育种计划。

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