MutMap 분석에 의한 벼 왜성 돌연변이 계통의 변이 유전자 탐색

A dwarf mutant rice line was selected from an Ac/Ds insertion mutant population and named dwf1. The phenotype of F1 and F2 plants derived from a cross between dwf1 and Dongjin indicated that a single recessive gene is responsible for the mutant phenotype, and we named this gene dwf1. Resequencing of...

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Published inKorean journal of breeding Vol. 52; no. 1; pp. 9 - 19
Main Author 오준(Jun Oh), 천경성(Kyeong-Seong Cheon), 강도유(Do-Yu Kang), 김송림(Song Lim Kim), 이은경(Eungyeong Lee), 김년희(Nyunhee Kim), 오효자(Hyoja Oh), 최인찬(Inchan Choi), 백정호(Jeongho Baek), 윤인선(In Sun Yoon), 김경환(Kyung-Hwan Kim), 정남진(Nam-Jin Chung), 지현소(Hyeonso Ji)
Format Journal Article
LanguageKorean
Published 한국육종학회 30.03.2020
The Korean Breeding Society
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ISSN0250-3360
2287-5174
DOI10.9787/KJBS.2020.52.1.9

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Summary:A dwarf mutant rice line was selected from an Ac/Ds insertion mutant population and named dwf1. The phenotype of F1 and F2 plants derived from a cross between dwf1 and Dongjin indicated that a single recessive gene is responsible for the mutant phenotype, and we named this gene dwf1. Resequencing of the dwf1 line and Dongjin (wild type) revealed 42,386 homozygous single nucleotide polymorphisms (SNPs) between dwf1 line and Dongjin. MutMap analysis was performed by sequencing a DNA pool prepared from 100 mutant type plants in the dwf1/Dongjin F2 population, and it was found that the dwf1 gene was located in the 23 ~ 30 Mbp region on chromosome 4. In this region, we found a non-synonymous SNP in the Os04g0469800 gene, which was reported as D11 gene encoding a cytochrome P450 family protein involved in the biosynthesis of brassinosteroids (BRs). This SNP was regarded as the causative SNP for the dwf1 phenotype, and the dwf1 gene is a novel allele of D11. We performed mapping of the dwf1 gene with five SNP markers on chromosome 4 with 190 dwf1/Dongjin F2 plants. The phenotype of F2 plants was completely co-segregated with genotypes of the J10402 marker, which was developed based on the non-synonymous SNP in the D11 gene. These results will contribute to the study of the molecular biological functions of the D11 gene and BRs. KCI Citation Count: 0
Bibliography:https://doi.org/10.9787/KJBS.2020.52.1.9
ISSN:0250-3360
2287-5174
DOI:10.9787/KJBS.2020.52.1.9