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"Jeong-Hee Kim"

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"Jeong-Hee Kim"

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사과 저장성 연관 , , 분자표지의 활용성 평가
Validation Assay of Md-ACS1, Md-ACO1, and Md-PG1 Molecular Markers Associated with Storability in Apples
Young Soon Kwon, Soon-Il Kwon, Jeong-Hee Kim, Moo Yong Park, Jong Taek Park, Seon Ae Kim
Korean. J. Breed. Sci. 2020;52(4):322-331.   Published online December 1, 2020
DOI: https://doi.org/10.9787/KJBS.2020.52.4.322

The purpose of this study was to examine the potential utility of marker-assisted selection (MAS) based on storability-associated molecular markers in apple breeding and to provide genotype information for the markers Md-ACS1, Md-ACO1, and Md-PG1 in apple genetic resources as basic data for the use of breeding materials. We analyzed 750 apple genetic resources to assess the allelic composition of Md-ACS1 and Md-ACO1, which play roles in the ethylene biosynthesis pathway, and Md-PG1, which is involved in cell wall degradation. For 108 of the genetic resources used for genotyping, we measured fruit firmness using a texture analyzer (10 mm plunger) at harvest and after 20 days of room temperature (20~25℃) storage. Md-ACS1 and Md-PG1 were found to be associated with changes in fruit firmness (the difference between firmness at harvest and after storage), with ACS1-2/2, PG1-1/1, and PG1-2/2 showing the lowest changes in fruit firmness. In addition, we found that changes in fruit firmness were smallest in late-harvest species, even for the same genotype. In contrast, Md-ACO1 appeared to be unrelated to the storability of fruit. Of the 750 apple genetic resources screened, the genotypes ACS1-2/2, and PG1-1/1 or PG1-2/2 were detected in 3.6% of accessions, including ‘Fuji’, bud mutation cultivars of ‘Fuji’, ‘Chubu’, and ‘Iwakami’. The Md-ACS1 and Md-PG1 markers could have potential utility in assessments of storability and applied in MAS to improve the efficiency of apple breeding.

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-allele Specific PCR 분석에 의한 사과와 꽃사과 품종의 자가불화합성 유전자형 동정
Identification of Self-Incompatibility Genotypes in Apple and Crabapple Cultivars by S-allele Specific PCR Analysis
Kang Hee Cho, Jeong-Hee Kim, Jung Woo Lee, Soon-Il Kwon, Jong Taek Park, Il Sheob Shin, Se Hee Kim, Dae-Hyun Kim, In Myeong Choi
Korean. J. Breed. Sci. 2014;46(4):364-371.   Published online December 31, 2014
DOI: https://doi.org/10.9787/KJBS.2014.46.4.364

Apple (Malus × domestica Borkh.) has gametophytic self-incompatibility (S) controlled by the multi-allelic S-locus. In the present study, S-genotypes of 24 apple cultivars including newly released Korean cultivars and seven crabapple cultivars were identified using S-allele specific polymerase chain reaction analysis. Twelve different S-alleles (S1, S2, S3, S5, S7, S9, S10, S16, S21, S23, S26, and S29) from 31 apple and crabapple cultivars were identified using 23 S-allele specific primers. Among them, S1 (41.7%), S3 (58.3%), S7 (29.2%), and S9 (54.2%) S-alleles were found to be common in 24 apple cultivars. The newly released Korean cultivars ‘Arisoo’ and ‘Hwangok’ were genetyped as S3S7 and S3S9, respectively. S-genotypes information obtained from the present study will be useful to select proper pollinzers for stable production of apple fruit and to design cross of breeding programs.

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