QTL mapping for pre-harvest sprouting resistance in japonica rice varieties utilizing genome re-sequencing

生物 数量性状位点 粳稻 遗传学 单核苷酸多态性 粳稻 等位基因 染色体 基因 基因型 植物
作者
Kyeong-Seong Cheon,Yong Jae Won,Young‐Min Jeong,Youn-Young Lee,Do-Yu Kang,Jun Oh,Hyoja Oh,Song Lim Kim,Nyunhee Kim,Eun‐Gyeong Lee,In Sun Yoon,Inchan Choi,Jeongho Baek,Kyung-Hwan Kim,Hyun-Su Park,Hyeonso Ji
出处
期刊:Molecular Genetics and Genomics [Springer Science+Business Media]
卷期号:295 (5): 1129-1140 被引量:20
标识
DOI:10.1007/s00438-020-01688-4
摘要

Abstract Pre-harvest sprouting (PHS) leads to serious economic losses because of reductions in yield and quality. To analyze the quantitative trait loci (QTLs) for PHS resistance in japonica rice, PHS rates on panicles were measured in 160 recombinant inbred lines (RILs) derived from a cross between the temperate japonica varieties Odae (PHS resistant) and Unbong40 (PHS susceptible) under two different environmental conditions—field (summer) and greenhouse (winter) environments. Genome re-sequencing of the parental varieties detected 266,773 DNA polymorphisms including 248,255 single nucleotide polymorphisms and 18,518 insertions/deletions. We constructed a genetic map comprising 239 kompetitive allele-specific PCR and 49 cleaved amplified polymorphic sequence markers. In the field environment, two major QTLs, qPHS-3 FD and qPHS-11 FD , were identified on chromosomes 3 and 11, respectively, whereas three major QTLs, qPHS-3 GH , qPHS-4 GH , and qPHS-11 GH , were identified on chromosomes 3, 4, and 11, respectively, in the greenhouse environment. qPHS-11 GH and qPHS-11 FD had similar locations on chromosome 11, suggesting the existence of a gene conferring stable PHS resistance effects under different environmental conditions. The QTLs identified in this study can be used to improve the PHS resistance of japonica varieties, and they may improve our understanding of the genetic basis of PHS resistance.

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