...
首页> 外文期刊>PLoS One >Population structure analysis and identification of genomic regions under selection associated with low-nitrogen tolerance in tropical maize lines
【24h】

Population structure analysis and identification of genomic regions under selection associated with low-nitrogen tolerance in tropical maize lines

机译:在热带玉米线中低氮耐受的选择下基因组区域的种群结构分析与鉴定

获取原文
           

摘要

Increasing low nitrogen (N) tolerance in maize is an important goal for food security and agricultural sustainability. In order to analyze the population structure of tropical maize lines and identify genomic regions associated with low-N tolerance, a set of 64 inbred lines were evaluated under low-N and optimal-N conditions. The low-N Agronomic Efficiency index (LNAE) of each line was calculated. The maize lines were genotyped using 417,112 SNPs markers. The grouping based on the LNAE values classified the lines into two phenotypic groups, the first comprised by genotypes with high LNAE (named H_LNAE group), while the second one comprised genotypes with low LNAE (named L_LNAE group). The H_LNAE and L_LNAE groups had LNAE mean values of 3,304 and 1,644, respectively. The population structure analysis revealed a weak relationship between genetic and phenotypic diversity. Pairs of lines were identified, having at the same time high LNAE and high genetic distance from each other. A set of 29 SNPs markers exhibited a significant difference in allelic frequencies (Fst 0.2) between H_LNAE and L_LNAE groups. The Pearson’s correlation between LNAE and the favorable alleles in this set of SNPs was 0.69. These SNPs could be useful for marker-assisted selection for low-N tolerance in maize breeding programs. The results of this study could help maize breeders identify accessions to be used in the development of low-N tolerant cultivars.
机译:增加玉米的低氮(n)耐受性是粮食安全和农业可持续性的重要目标。为了分析热带玉米线的人口结构并鉴定与低N耐受相关的基因组区域,在低N和最佳-N条件下评估一组64种近交系。计算每条线的低N农艺效率指数(LNAE)。使用417,112 SNPS标记的玉米线进行基因分型。基于LNAE值的分组将线分为两种表型基团,首先由具有高LNAE(命名为H_LNAE组)的基因型组成,而第二个则包含低LNAE(名为L_LNAE组)的基因型。 H_LNAE和L_LNAE组分别具有3,304和1,644的LNAE平均值。人口结构分析揭示了遗传和表型多样性之间的薄弱关系。鉴定了一对线,同时具有高LNAE和彼此高的遗传距离。一组29个SNP标记表现出H_LNAE和L_LNAE组之间的等位基因频率(FST& 0.2)的显着差异。 Pearson在LNAE与这套SNP中有利等位基因之间的相关性为0.69。这些SNP可用于玉米育种计划中的低N耐受性的标记辅助选择。该研究的结果可以帮助玉米育种者识别用于低N耐培养品种的探索。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号