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"self-incompatibility"

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"self-incompatibility"

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The radish (Raphanus sativus L.) is one of the major vegetables of Korea and is consumed as the main ingredient of kimchi. To improve the texture of radish kimchi, herbs, and soup, we attempted to develop a cultivar with a hard texture. Using species native to Jeju Island, we bred ‘Wonkyo10045ho’ which produces short, elliptically shaped roots with a hard texture. Generation progress was made via the self-fertilization method using bud pollination. We selected individuals with good horticultural characteristics from each of five generations grown from 2006 to 2010. Finally, in 2015, the line was named ‘Wonkyo10045ho’, and the granting of plant variety rights (Grant number 6527) was certified in 2017 following an application for the protection of new plant varieties (application number 2015-398). The root characteristics of ‘Wonkyo10045ho,’ include an oval shape, mixed white and green root skin, and a white inner root color. ‘Wonkyo10045ho’ had a sugar content of 4.9 Brix, with excellent sweetness, good taste, and strong pithiness. The average number of seeds per plant obtained via pollination by bees in a small net house was 609.1, suggesting that the strength of its self-incompatibility was not strong and male sterility might be advantageous. Therefore, it is expected that this variety will be useful as a material for improving the competitiveness of domestic farmers and for stable radish exports.

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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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