Genetic diversity, population structure, and association mapping of biomass traits in maize with simple sequence repeat markers

  • Park, Jong Yeol
  • Ramekar, Rahul Vasudeo
  • Sa, Kyu Jin
  • Lee, Ju Kyong
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초록

Assessing genetic diversity, population structure, and linkage disequilibrium is important in identifying potential parental lines for breeding programs. In this study, we assessed the genetic and phenotypic variation of 174 normal maize (Zea mays) inbred lines and made association analyses with respect to nine agronomical traits, using 150 simple sequence repeats (SSR). From population structure analysis, the lines were divided into three groups. Association analysis was done with a mixed linear model and a general linear model. Twenty-one marker-trait associations involving 19 SSR markers were observed using the mixed model, with a significance level of P < 0.01. All of these associations, as well as 120 additional marker-trait associations involving 77 SSR markers, were observed with the general model. Two significant marker-trait associations (SMTAs) were detected at P a parts per thousand currency sign 0.0001. In the mixed linear model, one locus was associated with water content, two loci were associated with 100-kernel weight, setted ear length, ear thickness and stem thickness; three loci were associated with ear height, four loci were associated with total kernel weight and five loci were associated with plant height. These results should prove useful to breeders in the selection of parental lines and markers.

키워드

Association mappingGenetic diversityPopulation structureLinkage disequilibriumMarker-trait associationYIELD-RELATED TRAITSLINKAGE DISEQUILIBRIUMINBRED LINESAGRONOMIC TRAITSSSR MARKERSRAPESEEDSOFTWAREPROGRAM
제목
Genetic diversity, population structure, and association mapping of biomass traits in maize with simple sequence repeat markers
저자
Park, Jong YeolRamekar, Rahul VasudeoSa, Kyu JinLee, Ju Kyong
DOI
10.1007/s13258-015-0309-y
발행일
2015-08
유형
Article
저널명
Genes & Genomics
37
8
페이지
725 ~ 735