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"Mutation breeding"

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쌀 외관이 양호하고 도열병에 강한 극조생 벼 ‘백일미’
‘Baegilmi’, an Extremely Early Maturing Blast Resistant Rice with Good Grain Appearance
Youngjun Mo, Jong-Min Jeong, Woo-Jae Kim, Bo-Kyeong Kim, Ji-Ung Jeung
Korean. J. Breed. Sci. 2019;51(2):151-159.   Published online June 1, 2019
DOI: https://doi.org/10.9787/KJBS.2019.51.2.151

‘Baegilmi’ is an extremely early maturing rice variety that can be harvested within 100 days after transplanting, and also exhibits strong blast resistance and good grain appearance. From a mutant population of ‘Koshihikari’ treated with ethyl methanesulfonate, a promising line, ‘Suweon 559’, was selected through pedigree breeding and yield trials, and subsequently registered as ‘Baegilmi’. According to the 3-year (2012–2014) regional adaptability tests, the average heading date of Baegilmi in ordinary planting was July 14th, which was 23 and 9 days earlier than that of the check varieties ‘Hwaseong’ and ‘Odae’, respectively. The milled rice yield of ‘Baegilmi’ was 4.53 MT/ha in ordinary planting (83% and 98% of ‘Hwaseong’ and ‘Odae’, respectively). ‘Baegilmi’ had a culm length of 75 cm (10 cm shorter than ‘Hwaseong’), a panicle length of 21 cm (similar to ‘Hwaseong’), and 12 panicles per plant (two fewer than ‘Hwaseong’). The brown rice of ‘Baegilmi’ was slightly more slender than ‘Hwaseong’, with a 1,000 grain weight of 20.6 g and length/width ratio of 1.92. The milled rice of ‘Baegilmi’ was translucent, with a protein content of 8.4% (1.7% higher than ‘Hwaseong’) and an amylose content of 18.6% (similar to ‘Hwaseong’). ‘Baegilmi’ exhibited strong blast resistance, but was susceptible to bacterial blight, viral diseases, and insect pests. The release of ‘Baegilmi’ is expected to provide a useful early-maturing rice variety that can be used in diverse cropping systems in paddy fields (Registration No. 6805).

Citations

Citations to this article as recorded by  
  • Genetic architecture and predictive modeling of heading date in japonica rice cultivars
    Seung Young Lee, Hyun-Sook Lee, Ji-Ung Jeung, Youngjun Mo
    The Crop Journal.2026; 14(3): 885.     CrossRef
  • Evaluation of Molecular Markers Linked to Rice Blast Resistance Gene in Korean Rice Varieties
    Hyun-Sook Lee, Su-Kyung Ha, Chang-Min Lee, Hyun-Su Park, Ji-Ung Jeung
    Korean Journal of Breeding Science.2022; 54(4): 375.     CrossRef
  • Characterization of QTLs and Candidate Genes for Days to Heading in Rice Recombinant Inbred Lines
    Youngjun Mo, Jong-Min Jeong, Su-Kyung Ha, Jinhee Kim, Changmin Lee, Gung Pyo Lee, Ji-Ung Jeung
    Genes.2020; 11(9): 957.     CrossRef
  • Correction to: ‘Baegilmi’, an Extremely Early Maturing Blast Resistant Rice with Good Grain Appearance
    Youngjun Mo, Jong-Min Jeong, Woo-Jae Kim, Bo-Kyeong Kim, Ji-Ung Jeung
    Korean Journal of Breeding Science.2020; 52(3): 279.     CrossRef
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토코페롤 함량이 높은 적갈색 벼 ‘토코미1호’
A Rice Variety ‘Tocomi-1’ with High Tocopherol Content and Reddish Brown Pericarp
Jung Eun Hwang, Dong Sub Kim, Hong Il Choi, Jin Baek Kim, Si-Yong Kang
Korean. J. Breed. Sci. 2019;51(2):128-133.   Published online June 1, 2019
DOI: https://doi.org/10.9787/KJBS.2019.51.2.128

Tocomi-1’, a rice variety with high tocopherol content and a reddish brown color was developed from ‘Dongan’ by a mutation breeding technique using a 120 Gy gamma ray source at the Korea Atomic Energy Research Institute (KAERI). The heading date of this variety was August 12, which was 2 days later than the original variety ‘Dongan’. The culm and panicle lengths of ‘Tocomi-1’ were 80 cm and 20.3 cm, respectively. The number of tillers per hill was 19.1 and the number of spikelets per panicle was 106.3. The ratio of ripened grain was approximately 87.0% and the weight of 1000 grains was 25.4 g. The pericarp of brown rice was reddish brown in color. The total tocopherol content was 1.65 mg/100g, which was higher than that of the original variety (1.09 mg/100g). In addition, the brown rice of ‘Tocomi-1’ contained 8% more total amino acids. The average yield potential of ‘Tocomi-1’ in grain and brown rice was approximately 6.18 kg/10a and 5.15 kg/10a for 3 years, respectively (Registration No. of Plant Protection Wright: 6813).

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왜성 들잔디 신품종 ‘한라그린2’의 개발
Development of Dwarf Type Cultivar ‘Halla Green 2’ in Zoysia japonica Steud.
In-Ja Song, Hyeon-Jin Sun, Ok-Cheol Jeong, Dae-Hwa Yang, Il-Doo Jin, Hong-Gyu Kang, Suk-Min Ko, Yong-Ik Kwon, Tae-Woong Bae, Pill-Soon Song, Hyo-Yeon Lee
Korean. J. Breed. Sci. 2017;49(1):31-35.   Published online March 1, 2017
DOI: https://doi.org/10.9787/KJBS.2017.49.1.31

This study was carried out to develop new zoysiagrass (Zoysia japonica Steud.) cultivar ‘Halla Green 2’ (Grant number: No. 118). To develop a zoysiagrass cultivar with dwarfism by using the mutation breeding method, the wild type control "Gosan" plants were irradiated using a 30 Gy gamma ray source in 2010. Dwarf mutants were selected from the mutated grasses in successive generations. Dwarf mutant lines were identified and a new zoysiagrass variety Halla Green 2 was developed. The plant height of Halla Green 2 was 3.4 and 1.8 times lower than that of Gosan and Zenith, respectively. This cultivar has dwarf characteristics such as shorter sheath, shorter leaf blade, shorter flag leaf, and shorter third internode of stolon compared to those of Gosan and Zenith. Additionally, the sheaths and leaf blades color of Gosan, Zenith and Halla Green 2 were all light green, whereas their stolons were purple, yellow-green and yellow green, respectively. Trichomes(hairs) were visible on both adaxial and abaxial surfaces of the Gosan leaves, whereas only on the adaxial side of the Zenith and Halla Green 2 leaves. The Halla Green 2 grass showed distinguishable morphological traits compared to those of wild type Gosan and Zenith.

Citations

Citations to this article as recorded by  
  • UAV-RS/DIA as an efficient method to monitor nitrogen fertilization effects in Zoysia grass species (Hallagreen-2) (UAV-RS/DIA based monitoring of nitrogen in Zoysia Grass)
    E. M. B. M. Karunathilake, Sheikh Mansoor, Anh Tuan Le, Thanh Tuan Thai, Yong Suk Chung, Hyeon-Jin Sun
    Journal of Crop Science and Biotechnology.2025; 28(5): 697.     CrossRef
  • Molecular Genetic Insights into the Stress Responses and Cultivation Management of Zoysiagrass: Illuminating the Pathways for Turf Improvement
    Lanshuo Wang, Yueyue Yuan, Jeongsik Kim
    Agriculture.2024; 14(10): 1718.     CrossRef
  • Comparative Analysis between the ITS TaqMan SNP Genotyping Assay and CAPS for the Rapid Molecular Identification of Zoysia japonica and Zoysia sinica, Related Hybrid Lines, and the Habitat Distribution of Each Species
    Dae-Hwa Yang, Ok-Cheol Jeong, Yu-Ryang Kim, Mi-Jeong Kang, Yang-Ji Kim, Ji-Hi Son, Seong-Seop Han, Mi-Young Park, Il-Doo Jin, In-Ja Song, Min-Ji Hong, Hyeon-Jin Sun, Hong-Gyu Kang, Hyo-Yeon Lee
    Horticultural Science and Technology.2023; 41(4): 463.     CrossRef
  • Development of ‘Halla Green 11’: A Zoysiagrass Variety with a Short Plant Height and Extended Greening Period
    Dae-Hwa Yang, Hyeon-Jin Sun, Ok-Cheol Jeong, Il-Doo Jin, Hong-Gyu Kang, Hyo-Yeon Lee
    Korean Journal of Breeding Science.2023; 55(2): 137.     CrossRef
  • Development of ‘Halla Green 12’ Cultivar of Zoysiagrass, a Hybrid of Z. matrella and Z. japonica
    Dae-Hwa Yang, Hyeon-Jin Sun, Ok-Cheol Jeong, Il-Doo Jin, Hong-Gyu Kang, Hyo-Yeon Lee
    Korean Journal of Breeding Science.2023; 55(2): 147.     CrossRef
  • Genome analysis of Zoysia japonica ‘Yaji’ cultivar using PacBio long-read sequencing
    Dae-Hwa Yang, Ok-Cheol Jeong, Hyeon-Jin Sun, Hong-Gyu Kang, Hyo-Yeon Lee
    Plant Biotechnology Reports.2023; 17(2): 275.     CrossRef
  • Radiation treatment to turfgrass cultivar to improve drought tolerance cultivar breeding
    Gyung Deok Han, Ji Hyeon Jung, Hyeon-Jin Sun, Yong Suk Chung
    Plant Biotechnology Reports.2022; 16(4): 493.     CrossRef
  • Development of ‘Halla Green 7’: A Zoysiagrass Cultivar with Greening Period Extending Phenotype at Lower Temperatures
    Dae-Hwa Yang, Hyeon-Jin Sun, Ok-Cheol Jeong, Hong-Gyu Kang, In-Ja Song, Il-Doo Jin, Si-Yong Kang, Hyo-Yeon Lee
    Korean Journal of Breeding Science.2021; 53(4): 458.     CrossRef
  • Development of Cultivar ‘Halla Green 10’ in Zoysiagrass
    Dae-Hwa Yang, Ok-Cheol Jeong, Hyeon-Jin Sun, Hong-Gyu Kang, Il-Doo Jin, Hyo-Yeon Lee
    Korean Journal of Breeding Science.2021; 53(4): 467.     CrossRef
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돌연변이 육종에 의해 육성된 왜성 들잔디 품종 ‘한라그린1’
Dwarf Zoysiagrass (Zoysia japonica) Cultivar "Halla Green 1" Developed Through Mutation Breeding
Dae-Hwa Yang, Hyeon-Jin Sun, Ok-Cheol Jeong, In-Ja Song, Tae-Woong Bae, Il-Doo Jin, Hong-Gyu Kang, Suk-Min Ko, Yong-Ik Kwon, Pill-Soon Song, Hyo-Yeon Lee
Korean. J. Breed. Sci. 2016;48(4):516-520.   Published online December 31, 2016
DOI: https://doi.org/10.9787/KJBS.2016.48.4.516

To develop a dwarf turfgrass (Zoysia japonica) cultivar with artificial mutation-induced breeding method, the wild type control "Gosan" plants were exposed to a 30 Gy gamma ray source in 2010. The mutant lines showing short height were selected from successive generations. One of the resulting dwarf lines obtained was registered under the cultivar name of “Halla Green 1” (2016). The dwarf phenotype of the Halla Green 1 includes a reduction of the height by 4.5-fold, an increase in leaf and third internode lengths by about 6- and 2.3-fold, respectively, compared to the Gosan, and approximately 2.4-, 3.8-, and 1.5-fold relative to the Zenith, respectively. In addition, the Halla Green 1 had a sheath of darker green coloring compared to the light green Gosan and Zenith. The leaf blades of Gosan, Zenith and Halla Green 1 were all light green, whereas their stolons were purple, yellow-green and light purple, respectively. Trichomes presented on both adaxial and abaxial surfaces of the Gosan’s leaves, and only on the adaxial side of the Zenith’s leaves, but none on the Halla Green 1 leaves. The Halla Green 1 exhibited sufficiently distinct morphological traits when compared with the wild type Gosan and Zenith that the dwarf phenotype enhances its commercial viability.

Citations

Citations to this article as recorded by  
  • Molecular Genetic Insights into the Stress Responses and Cultivation Management of Zoysiagrass: Illuminating the Pathways for Turf Improvement
    Lanshuo Wang, Yueyue Yuan, Jeongsik Kim
    Agriculture.2024; 14(10): 1718.     CrossRef
  • Genome analysis of Zoysia japonica ‘Yaji’ cultivar using PacBio long-read sequencing
    Dae-Hwa Yang, Ok-Cheol Jeong, Hyeon-Jin Sun, Hong-Gyu Kang, Hyo-Yeon Lee
    Plant Biotechnology Reports.2023; 17(2): 275.     CrossRef
  • Development of ‘Halla Green 11’: A Zoysiagrass Variety with a Short Plant Height and Extended Greening Period
    Dae-Hwa Yang, Hyeon-Jin Sun, Ok-Cheol Jeong, Il-Doo Jin, Hong-Gyu Kang, Hyo-Yeon Lee
    Korean Journal of Breeding Science.2023; 55(2): 137.     CrossRef
  • Comparative Analysis between the ITS TaqMan SNP Genotyping Assay and CAPS for the Rapid Molecular Identification of Zoysia japonica and Zoysia sinica, Related Hybrid Lines, and the Habitat Distribution of Each Species
    Dae-Hwa Yang, Ok-Cheol Jeong, Yu-Ryang Kim, Mi-Jeong Kang, Yang-Ji Kim, Ji-Hi Son, Seong-Seop Han, Mi-Young Park, Il-Doo Jin, In-Ja Song, Min-Ji Hong, Hyeon-Jin Sun, Hong-Gyu Kang, Hyo-Yeon Lee
    Horticultural Science and Technology.2023; 41(4): 463.     CrossRef
  • Development of ‘Halla Green 12’ Cultivar of Zoysiagrass, a Hybrid of Z. matrella and Z. japonica
    Dae-Hwa Yang, Hyeon-Jin Sun, Ok-Cheol Jeong, Il-Doo Jin, Hong-Gyu Kang, Hyo-Yeon Lee
    Korean Journal of Breeding Science.2023; 55(2): 147.     CrossRef
  • Development of Cultivar ‘Halla Green 10’ in Zoysiagrass
    Dae-Hwa Yang, Ok-Cheol Jeong, Hyeon-Jin Sun, Hong-Gyu Kang, Il-Doo Jin, Hyo-Yeon Lee
    Korean Journal of Breeding Science.2021; 53(4): 467.     CrossRef
  • Development of ‘Halla Green 7’: A Zoysiagrass Cultivar with Greening Period Extending Phenotype at Lower Temperatures
    Dae-Hwa Yang, Hyeon-Jin Sun, Ok-Cheol Jeong, Hong-Gyu Kang, In-Ja Song, Il-Doo Jin, Si-Yong Kang, Hyo-Yeon Lee
    Korean Journal of Breeding Science.2021; 53(4): 458.     CrossRef
  • Effect of Gamma-Irradiation on Seed Dehiscence, Development, Survival, and Growth inPanax ginseng
    Jung-Woo Lee, Ick-Hyun Jo, Chi-Eun Hong, Kyong-Hwan Bang, Jang-Uk Kim
    Korean Journal of Breeding Science.2020; 52(1): 1.     CrossRef
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국내 채종이 가능한 케나프( L.) 신품종 ‘장대’
An Improved Kenaf Cultivar ‘Jangdae’ with Seed Harvesting in Korea
Si-Yong Kang, Soon-Jae Kwon, Sang Wook Jeong, Jin-Baek Kim, Sang Hoon Kim, Jaihyunk Ryu
Korean. J. Breed. Sci. 2016;48(3):349-354.   Published online September 30, 2016
DOI: https://doi.org/10.9787/KJBS.2016.48.3.349

Kenaf (Hibiscus cannabinus L.) is an annual herbaceous crop of the Malvaceae family. Recently, kenaf is being used in many diversified applications such as pulp, animal feed, bioplastics and cellulosic biofuel etc. A new cultivar 'Jangdae' was developed by mutation breeding using irradiated with 300 Gy gamma-rays. Jangdae has a few distinguishable characteristics such as early flowering, high seed yield and palmate leaf, compared to wild type (Jinju). The fresh matter (FM) and dry matter (DM) yield of Jangdae are similar to those of Jinju, their seed yield (833.3 kg/ha) is approximately 4 times higher than that of Jinju. In addition, the FM and DM yield of Jangdae are 40% higher than those of early-maturing cultivar (C11). We performed the nutritive value of four kenaf cultivars (Jangdae, Jinju, C11 and Hongma300) at 100 day after seeding. The crude protein content of Jangdae, Jinju, C11 and Honma300 were 10.5, 11.0, 9.4 and 10.6%, respectively. The crude fiber, neutral detergent fiber and acid detergent fiber contents were no significant difference among the cultivars. Jangdae, which afforded both a high biomass and seed yield in South Korea, may be useful as potential source of feed and industrial materials.

Citations

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  • Bacillus Strains as Increased Soil Fertility and Biomass Yield Tactics in a Reclaimed Tidal Flat, Saemangeum, Korea
    Jihwi Jang
    Current Microbiology.2025;[Epub]     CrossRef
  • Genome-Wide Association Study for Agronomic Traits in Gamma-Ray-Derived Mutant Kenaf (Hibiscus cannabinus L.)
    Woon Ji Kim, Baul Yang, Ye-jin Lee, Jae Hoon Kim, Sang Hoon Kim, Joon-Woo Ahn, Si-Yong Kang, Seong-Hoon Kim, Jaihyunk Ryu
    Plants.2024; 13(2): 249.     CrossRef
  • Kenaf ( Hibiscus Cannabinus L.): A Promising Fiber Crop with Potential for Genetic Improvement Utilizing Both Conventional and Molecular Approaches
    Md Al-Mamun, Mohd Y. Rafii, Azizah Binti Misran, Zulkarami Berahim, Zaiton Ahmad, Md Mahmudul Hasan Khan, Yusuff Oladosu, Fatai Arolu
    Journal of Natural Fibers.2023;[Epub]     CrossRef
  • Thermogravimetric analysis-based proximate analysis of agro-byproducts and prediction of calorific value
    Sunyong Park, Seok Jun Kim, Kwang Cheol Oh, LaHoon Cho, YoungKwang Jeon, Chunggeon Lee, DaeHyun Kim
    Energy Reports.2022; 8: 12038.     CrossRef
  • Kenaf ( Hibiscus Cannabinus L.) Breeding
    Muhammad Zohaib Afzal, Aminu Kurawa Ibrahim, Yi Xu, Sylvain Niyitanga, Yi Li, Dongxu Li, Xin Yang, Liwu Zhang
    Journal of Natural Fibers.2022; 19(11): 4063.     CrossRef
  • Characterization and Genetic Diversity of Photoperiodic among Mutant Kenaf (Hibiscus Cannabinus L.) Using EST-SSR Markers
    Md Al-Mamun, Mohd Y. Rafii, Yusuff Oladosu, Azizah Binti Misran, Zulkarami Berahim, Zaiton Ahmad, Fatai Arolu, Md Mahmudul Hasan Khan
    Journal of Natural Fibers.2022; 19(15): 10693.     CrossRef
  • Development of Kenaf (Hibiscus Cannabinus L.) Pedigrees with Superior Characteristics through Backcross
    In-Sok Lee, Chan-Ho Kang, Jin-Jae Lee, Hee-Jun Kim
    Korean Journal of Breeding Science.2021; 53(3): 191.     CrossRef
  • Characterization of Gene Isoforms Related to Cellulose and Lignin Biosynthesis in Kenaf (Hibiscus cannabinus L.) Mutant
    Jae Il Lyu, Rahul Ramekar, Dong-Gun Kim, Jung Min Kim, Min-Kyu Lee, Nguyen Ngoc Hung, Jin-Baek Kim, Joon-Woo Ahn, Si-Yong Kang, Ik-Young Choi, Kyoung-Cheul Park, Soon-Jae Kwon
    Plants.2020; 9(5): 631.     CrossRef
  • Nutritional Properties of Various Tissues from New Kenaf Cultivars
    Dong-Gun Kim, Jaihyunk Ryu, Min-Kyu Lee, Jung Min Kim, Joon-Woo Ahn, Jin-Baek Kim, Si-Yong Kang, Chang-Hyu Bae, Soon-Jae Kwon
    Journal of Crop Science and Biotechnology.2018; 21(3): 229.     CrossRef
  • Morphological characteristics, chemical and genetic diversity of kenaf (Hibiscus cannabinusL.) genotypes
    Jaihyunk Ryu, Soon-Jae Kwon, Dong-Gun Kim, Min-Kyu Lee, Jung Min Kim, Yeong Deuk Jo, Sang Hoon Kim, Sang Wook Jeong, Kyung-Yun Kang, Se Won Kim, Jin-Baek Kim, Si-Yong Kang
    Journal of Plant Biotechnology.2017; 44(4): 416.     CrossRef
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고온조건에서 등숙이 양호하고 도열병에 강한 조생 고품질 벼 ‘중모1024’ 육성
Blast Resistant Early Maturing Rice ‘Jungmo1024’ with High Temperature Tolerance during Grain Filling Stage
Ji-Ung Jeung, Young-Seop Shin, Im-Soo Choi, Jae-Ki Chang, Myeong-Ki Kim, Jeom-Ho Lee, Hyang-Mi Park, Chang-Ihn Yang, Yong-Hee Jeon, Jung-Pil Suh, In-Bae Choi, Jong-Min Jeong, Nak-Sig Sung, Jeong-Heui Lee, Mi-Ra Yoon, Chung-Kon Kim
Korean. J. Breed. Sci. 2016;48(1):72-84.   Published online March 31, 2016
DOI: https://doi.org/10.9787/KJBS.2016.48.1.072

‘Jungmo1024’ is a blast resistant early maturing rice cultivar with high temperature tolerance during grain filling stage. ‘Jungmo1024’ was derived from a sodium azide treatment on ‘Suweon472’, a high yielding japonica elite line which was latterly registered as ‘Namil’. Comparison with the agronomical traits of ‘Namil’, ‘Jungmo1024’ was uniquely characterized as the induced gained function due to the reduced culm length, increased tiller number, strong blast resistance and especially high temperature tolerance during grain filling stage. The high temperature tolerance of ‘Jungmo1024’ was supported by two years experiments by comparing the head rice ratio produced in ordinary paddy field and green house condition. The heading date of ‘Jungmo1024’ was July 29 in central plain area, which was 9 days earlier than that of ‘Hwaseong’. The milled rice yield performance of ‘Jungmo1024’ was about 4.98 MT/ha in local adaptability test for three years. ‘Jungmo1024’ had 69 cm in culm length, which was 15 cm shorter than that of ‘Hwaseong’, 20 cm in panicle length, 16 in tiller number, and 22.3g in 1,000 grain-weight of brown rice. ‘Jungmo1024’ exhibited strong rice blast resistance, but do not have any clear resistance gene sources against bacterial blight, viral diseases and insect fests. ‘Jungmo1024’, nevertheless, would be a useful rice cultivar could be used as a donor line for the breeding programs for developing southern plane adaptable early maturing rice cultivars with enhanced rice blast resistance, lodging tolerance, and especially high temperature tolerance during grain filling stage.

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  • ‘Daebang’, A Mid-Late Maturing Rice Cultivar with High Grain Quality Adapted to the Chungnam Plain Area
    Gyucheol Kim, Giwon Cho, Chongtae Chung, Tugsang Yun, Yeotae Yun
    Korean Journal of Breeding Science.2026; 58(1): 43.     CrossRef
  • Integrating genotype-by-environment interaction and machine learning to evaluate yield-related traits in Korean rice cultivars
    Seung Young Lee, Hayeong Lee, Jiheon Han, Ji-Ung Jeung, Youngjun Mo
    Journal of Crop Science and Biotechnology.2025; 28(5): 593.     CrossRef
  • Climatic constraints to yield and yield components of temperate japonica rice
    Yean‐Uk Kim, Kanghyun Moon, Byun‐Woo Lee
    Agronomy Journal.2021; 113(4): 3489.     CrossRef
  • Effect of Resistance Genes on the Occurrence of Rice Undesirable Characters in a Wide Cross
    Chang-Min Lee, Hyun-Su Park, Man-Kee Baek, Jung-Pil Suh, O-Young Jeong, Song-Joong Yun, Suk-Man Kim
    Korean Journal of Breeding Science.2021; 53(4): 392.     CrossRef
  • Characterization of Yield and Panicle-related Traits of Early Maturing Rice Varieties by Cultivation Times in the Honam Plain Area of Korea
    Hyun-Su Park, Jung-Pil Suh, Man-Kee Baek, Chang-Min Lee, Woo-Jae Kim, Gun-Mi Lee, Suk-Man Kim, Choon-Song Kim, Young-Chan Cho
    Korean Journal of Breeding Science.2020; 52(2): 115.     CrossRef
  • ‘Baegilmi’, an Extremely Early Maturing Blast Resistant Rice with Good Grain Appearance
    Youngjun Mo, Jong-Min Jeong, Woo-Jae Kim, Bo-Kyeong Kim, Ji-Ung Jeung
    Korean Journal of Breeding Science.2019; 51(2): 151.     CrossRef
  • Bacterial Blight-Resistant Medium Maturing Rice Cultivar ‘Haepum’ with High Grain Quality
    Jeong-Kwon Nam, Hyun-Su Park, Man-Kee Baek, Young-Chan Cho, Woo-Jae Kim, Jeong-Ju Kim, Bo-Kyeong Kim, Ki-Young Kim, Woon-Chul Shin, Jong-Cheol Ko, Gun-Mi Lee, Seul-Gi Park, Chang-Min Lee, Choon-Song Kim, Jung-Pil Suh, Jeom-Ho Lee
    Korean Journal of Breeding Science.2019; 51(3): 222.     CrossRef
  • Multiple Disease Resistant Early Maturing Rice Cultivar 'Joil' with High Grain Quality Adaptable to Early Transplanting Cultivation in the Southern Plain Area
    Jeong-Kwon Nam, Hyun-Su Park, Ki-Young Kim, Bo-Kyeong Kim, Young-Chan Cho, Jae-Kwon Ko, Man-Kee Baek, Jeong-Ju Kim, Woo-Jae Kim, Woon-Chul Shin, Jong-Cheol Ko, Jeom-Ho Lee, Jong-Min Jeong, Ji-Ung Jeung, Kyung-Ho Kang
    Korean Journal of Breeding Science.2018; 50(3): 280.     CrossRef
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돌연변이 육종에 의한 밥밑용 콩품종 ‘원현’
An Improved Soybean Cultivar ‘Wonhyun’ with Cooking Rice by Mutation Breeding
Jin-Baek Kim, Kyung Jun Lee, Dong Sub Kim, Sang Hoon Kim, Hi Sup Song, Si-Yong Kang
Korean. J. Breed. Sci. 2016;48(1):60-65.   Published online March 31, 2016
DOI: https://doi.org/10.9787/KJBS.2016.48.1.060

A new soybean cultivar ‘Wonhyun’, was developed by mutation breeding technique using a 250 Gy gamma ray at Korea Atomic Energy Research Institute (KAERI) in 2010. ‘Wonhyun’ has black seed coat and much better agronomic performance than original variety ‘Paldal’. Their total yield (177.1kg/10a) is much higher than that of ‘Paldal’ (126.9 kg/10a). Also, 100 seed weight of Wonhyun was 27g compared to ‘Paldal’ (13.7g). Contents of 4 essential amino acids such as aspartic acid, glutamic acid, lysine, arginine and unsaturated fatty acid including linoleic and linolenic acid have much higher than ‘Paldal’. This cultivar is good for cooking with rice as improved functional ingredient soybean.

Citations

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  • Effect of Gamma-Irradiation on Seed Dehiscence, Development, Survival, and Growth inPanax ginseng
    Jung-Woo Lee, Ick-Hyun Jo, Chi-Eun Hong, Kyong-Hwan Bang, Jang-Uk Kim
    Korean Journal of Breeding Science.2020; 52(1): 1.     CrossRef
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