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"Su-Young Hong"

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"Su-Young Hong"

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고랭지 적응 콩 43개 품종의 해발고도별 이소플라본 함량 비교
Comparison of Isoflavone Content in 43 Soybean Varieties Adapted to Highland Cultivation Areas
Su-Young Hong, Su-Jeong Kim, Hwang-Bae Sohn, Yul-Ho Kim, Kwang-Soo Cho
Korean. J. Breed. Sci. 2018;50(4):442-452.   Published online December 1, 2018
DOI: https://doi.org/10.9787/KJBS.2018.50.4.442

In this study, we analyzed the growth characteristics and isoflavone content of 43 soybean varieties highly adaptable to highland areas. The flowering period of each cultivation zone was from July 15 to August 12 at Daewallyeong, from July 18 to August 11 at Jinbu, and from July 23 to August 13 at Gangneung. The accumulated temperature from flowering to maturity was 1,297 °C for Daegwallyeong, 1,391 °C for Jinbu, and 1,685 °C for Gangneung. Forty-three varieties were classified into four utilities; soy sauce and tofu, bean sprouts, cooking with rice, and vegetable and early maturity. The content of isoflavone was highest at 2,579 µg/g in varieties for soy sauce and tofu usage. Five varieties (“Paldalkong,” “Sinpaldal2,” “Ilmikong,” “Sinpaldalkong,” and “Daepung”) cultivated in Daegwallyeong had over 4,000 µg/g of isoflavone. The isoflavone content of the region Daegwallyeong was different at the significance level of 0.1 (p=0.061) compared to Gangneung. There was no significant difference between Gangneung and Jinbu. It is thought that the low temperature of the maturation stage during the growing period affected isoflavone accumulation. The varieties with more than 3,000 µg/g of isoflavone content in Daegwallyeong, Jindu, and Gangneung were “L29,” “Williams82,” “Ilmikong,” and “Daepung.” These were genetically and environmentally stable in isoflavone content. It is expected that this study will be used as basic data for the functional breeding and selection of soybean varieties highly adaptable to a specific region, and to help expand soybean cultivation areas in highlands.

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The areas of soybean (Glycine max (L.) Merrill) cultivation in Gangwon-do have increased due to the growing demand for well-being foods. The soybean barcode system is a useful tool for cultivar identification and diversity analysis, which could be used in the seed production system for soybean cultivars. We genotyped cultivars using 202 insertion and deletion (InDel) markers specific to dense variation blocks (dVBs), and examined their ability to identify cultivars and analyze diversity by comparison to the database in the soybean barcode system. The genetic homology of “Cheonga,” “Gichan,” “Daewang,” “Haesal,” and “Gangil” to the 147 accessions was lower than 81.2%, demonstrating that these barcodes have potentiality in cultivar identification. Diversity analysis of one hundred and fifty-three soybean cultivars revealed four subgroups and one admixture (major allele frequency <0.6). Among the accessions, “Heugcheong,” “Hoban,” and “Cheonga” were included in subgroup 1 and “Gichan,” “Daewang,” “Haesal,” and “Gangil” in the admixture. The genetic regions of subgroups 3 and 4 in the admixture were reshuffled for early maturity and environmental tolerance, respectively, suggesting that soybean accessions with new dVB types should be developed to improve the value of soybean products to the end user. These results indicated that the two-dimensional barcodes of soybean cultivars enable not only genetic identification, but also management of genetic resources through diversity analysis.

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국내 감자 24품종의 괴경내 글리코알칼로이드(glycoalkaloids) 함량 분포
Distribution of Glycoalkaloids in Potato Tubers of 24 Korean Cultivars
Hwang-Bae Sohn, Su-Jeong Kim, Yu-Young Lee, Hyang-Mi Park, Manjulatha Mekapogu, Dong-Chil Chang, Su-Young Hong, Jeong-Hwan Nam, Jong-Taek Suh, Ki-Bum Kweon, Jin-Cheol Jeong, Yul-Ho Kim
Korean. J. Breed. Sci. 2015;47(4):357-365.   Published online December 31, 2015
DOI: https://doi.org/10.9787/KJBS.2015.47.4.357

Potato glycoalkaloids (PGA) are potentially toxic to human at high levels and current safety regulations have recommended that PGA content in tubers should not exceed 20 mg/100g·FW. The purpose of this study was to evaluate α -chaconine, α-solanine and total PGA content in tuber peel and flesh of 24 potato cultivars including ‘Haryeoung’, ‘Goun’, ‘Hongyoung’ and ‘Jayoung’. The total PGA ranged from 3.1 to 10.1 mg/100g·FW and 41-85% of total PGA was accumulated in tuber peel in all cultivars. Potato cultivars with lower level of PGA were ‘Jasim’ (3.1 mg/100g·FW) and ‘Goun’ (3.4 mg/100g·FW), whereas ‘Haryoung’ exhibited the highest level of PGA, 10.1 mg/100g·FW. Especially ‘Jasim’ and ‘Goun’ with the lower level of PGA can be consumed along with the peel on tubers. Also, these results provide the composition and levels of PGA in various potato cultivars for food safety and breeding of new cultivars with low levels of PGA for potato breeders and farmers.

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감자 주요 품종의 괴경 부위, 저장기간별 글리코알칼로이드(glycoalkaloid) 함량
Glycoalkaloids Content influenced by Tuber Parts and Storage Period in Major Potato Cultivars of Korea
Yul-Ho Kim, Guem Hee Kim, Hye Rim Ji, Yu-Young Lee, Hyang-Mi Park, Oh-Keun Kwon, Su Jeong Kim, Whang-Bae Sohn, Yong-Ik Jin, Su-Young Hong, Jeong-Hwan Nam, Kibum Kweon, Jong-Taek Suh, Jin-Cheol Jeong
Korean. J. Breed. Sci. 2014;46(3):209-217.   Published online September 30, 2014
DOI: https://doi.org/10.9787/KJBS.2014.46.3.209

Potato glycoalkaloids (PGAs) are potentially toxic to humans at high levels, and current safety regulations have recommended that PGAs content in tubers of potato cultivars should not exceed 20 mg/100gFW. Accordingly, it is important to determine the PGAs composition and level on potato cultivars for food safety and the breeding for new cultivars with low levels of PGAs. The main aim of this study was to evaluate α-chaconine, α-solanine, and total PGAs content in the peel and cortex portions in four recent cultivars (‘Haryoung’, ‘Goun’, ‘Hongyoung’ and ‘Jayoung’), released by Highland Agriculture Research Center, together with ‘Superior’ and ‘Atlantic’. The total PGAs ranged from 16.5 to 47.7 mg/100gFW. The α-solanine/α -chaconine ratio was 1:3.2 (‘Jayoung’), 1:3.5 (‘Hongyoung’) and 1:2 (‘Superior’), whereas α-solanine was not detected in ‘Goun’, ‘Atlantic’ and ‘Hongyoung’ under the analytical condition of this experiment. 75-94% of total PGAs was existed in the peel part of all cultivars. We selected two cultivars (‘Atlantic’ and ‘Goun’) showing lower PGAs content in the cortex part. During storage at 4°C, total PGAs content fluctuated widely in early stage of storage and stabilized gradually over time in ‘Hongyoung’, ‘Superior’ and ‘Jayoung’. Thus, through the selection of cultivars and storage conditions, these results will provide consumers and breeders with fundamental information about the content of PGAs in Korea major cultivars.

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