Genetic Dissection of Intermated Recombinant Inbred Lines Using a New Genetic Map of Maize

生物 遗传学 基因座(遗传学) 索引 基因组 近交系 数量性状位点 人口 基因定位 遗传标记 基因 基因型 单核苷酸多态性 染色体 社会学 人口学
作者
Yan Fu,Tsui‐Jung Wen,Yefim Ronin,Hsin D. Chen,Ling Guo,David Mester,Yongjie Yang,Michael Lee,Abraham B. Korol,Daniel Ashlock,Patrick S. Schnable
出处
期刊:Genetics [Oxford University Press]
卷期号:174 (3): 1671-1683 被引量:90
标识
DOI:10.1534/genetics.106.060376
摘要

Abstract A new genetic map of maize, ISU–IBM Map4, that integrates 2029 existing markers with 1329 new indel polymorphism (IDP) markers has been developed using intermated recombinant inbred lines (IRILs) from the intermated B73 × Mo17 (IBM) population. The website http://magi.plantgenomics.iastate.edu provides access to IDP primer sequences, sequences from which IDP primers were designed, optimized marker-specific PCR conditions, and polymorphism data for all IDP markers. This new gene-based genetic map will facilitate a wide variety of genetic and genomic research projects, including map-based genome sequencing and gene cloning. The mosaic structures of the genomes of 91 IRILs, an important resource for identifying and mapping QTL and eQTL, were defined. Analyses of segregation data associated with markers genotyped in three B73/Mo17-derived mapping populations (F2, Syn5, and IBM) demonstrate that allele frequencies were significantly altered during the development of the IBM IRILs. The observations that two segregation distortion regions overlap with maize flowering-time QTL suggest that the altered allele frequencies were a consequence of inadvertent selection. Detection of two-locus gamete disequilibrium provides another means to extract functional genomic data from well-characterized plant RILs.
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