Genomic dissection of a ‘Fuji’ apple cultivar: re-sequencing, SNP marker development, definition of haplotypes, and QTL detection

‘Fuji’ is one of the most popular and highly-produced apple cultivars worldwide, and has been frequently used in breeding programs. The development of genotypic markers for the preferable phenotypes of ‘Fuji’ is required. Here, we aimed to define the haplotypes of ‘Fuji’ and find associations betwee...

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Published in:Breeding Science Vol. 66; no. 4; pp. 499 - 515
Main Authors: Kunihisa, Miyuki, Moriya, Shigeki, Abe, Kazuyuki, Okada, Kazuma, Haji, Takashi, Hayashi, Takeshi, Kawahara, Yoshihiro, Itoh, Ryutaro, Itoh, Takeshi, Katayose, Yuichi, Kanamori, Hiroyuki, Matsumoto, Toshimi, Mori, Satomi, Sasaki, Harumi, Matsumoto, Takashi, Nishitani, Chikako, Terakami, Shingo, Yamamoto, Toshiya
Format: Journal Article
Language:English
Published: Japan Japanese Society of Breeding 2016
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Summary:‘Fuji’ is one of the most popular and highly-produced apple cultivars worldwide, and has been frequently used in breeding programs. The development of genotypic markers for the preferable phenotypes of ‘Fuji’ is required. Here, we aimed to define the haplotypes of ‘Fuji’ and find associations between haplotypes and phenotypes of five traits (harvest day, fruit weight, acidity, degree of watercore, and flesh mealiness) by using 115 accessions related to ‘Fuji’. Through the re-sequencing of ‘Fuji’ genome, total of 2,820,759 variants, including single nucleotide polymorphisms (SNPs) and insertions or deletions (indels) were detected between ‘Fuji’ and ‘Golden Delicious’ reference genome. We selected mapping-validated 1,014 SNPs, most of which were heterozygous in ‘Fuji’ and capable of distinguishing alleles inherited from the parents of ‘Fuji’ (i.e., ‘Ralls Janet’ and ‘Delicious’). We used these SNPs to define the haplotypes of ‘Fuji’ and trace their inheritance in relatives, which were shown to have an average of 27% of ‘Fuji’ genome. Analysis of variance (ANOVA) based on ‘Fuji’ haplotypes identified one quantitative trait loci (QTL) each for harvest time, acidity, degree of watercore, and mealiness. A haplotype from ‘Delicious’ chr14 was considered to dominantly cause watercore, and one from ‘Ralls Janet’ chr1 was related to low-mealiness.
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Communicated by H. Iketani
ISSN:1344-7610
1347-3735
DOI:10.1270/jsbbs.16018