首页> 外文期刊>Scientific reports. >Comparative assessment of genetic diversity matrices and clustering methods in white Guinea yam ( Dioscorea rotundata ) based on morphological and molecular markers
【24h】

Comparative assessment of genetic diversity matrices and clustering methods in white Guinea yam ( Dioscorea rotundata ) based on morphological and molecular markers

机译:基于形态学和分子标记的白豚纱(Dioscorea rotundata)遗传多样性基质和聚类方法的比较评估

获取原文
           

摘要

Understanding the diversity and genetic relationships among and within crop germplasm is invaluable for genetic improvement. This study assessed genetic diversity in a panel of 173 D. rotundata accessions using joint analysis for 23 morphological traits and 136,429 SNP markers from the whole-genome resequencing platform. Various diversity matrices and clustering methods were evaluated for a comprehensive characterization of genetic diversity in white Guinea yam from West Africa at phenotypic and molecular levels. The translation of the different diversity matrices from the phenotypic and genomic information into distinct groups varied with the hierarchal clustering methods used. Gower distance matrix based on phenotypic data and identity by state (IBS) distance matrix based on SNP data with the UPGMA clustering method found the best fit to dissect the genetic relationship in current set materials. However, the grouping pattern was inconsistent (r?=???0.05) between the morphological and molecular distance matrices due to the non-overlapping information between the two data types. Joint analysis for the phenotypic and molecular information maximized a comprehensive estimate of the actual diversity in the evaluated materials. The results from our study provide valuable insights for measuring quantitative genetic variability for breeding and genetic studies in yam and other root and tuber crops.
机译:了解作物种质中的多样性和遗传关系对于遗传改善是无价的。本研究评估了173 D.圆形数据的面板中的遗传多样性,使用联合分析来自整个基因组重构平台的23个形态特征和136,429个SNP标记。评估各种分集矩阵和聚类方法,以综合表征西非在表型和分子水平的白色豚鼠中的遗传多样性。不同分集矩阵从表型和基因组信息的翻译成与所使用的层间聚类方法变化的不同组。基于表型数据的Gower距离矩阵基于状态(IBS)距离矩阵的基于SNP数据,具有UPGMA聚类方法,发现最合适的是对当前设定材料中的遗传关系进行解剖。然而,由于两种数据类型之间的非重叠信息,分组模式在形态学和分子距离矩阵之间不一致(R?= ??? 0.05)。表型和分子信息的联合分析最大化了评估材料中实际多样性的综合估计。我们研究的结果为山药和其他根系和块茎作物中测量繁殖和遗传研究的定量遗传变异提供了有价值的见解。

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