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"Ki Won Oh"

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잎이 작고 두꺼우며 속잎이 잘 자라는 잎들깨 신품종 ‘새봄’
‘Saebom.’ A New Variety of Perilla With Round Heart-shaped Leaves that are Small and Thick and Have Good Inner Leaf Growth
Jung In Kim, Myoung Hee Lee, Sang Woo Kim, Sungup Kim, Jeongeun Lee, Eunsoo Lee, Heungsu Lee, Eunyoung Oh, Kwang-Soo Cho, Ki Won Oh, Chan Sik Jung, Ki Young Kim
Korean. J. Breed. Sci. 2025;57(3):291-299.
Published online September 1, 2025
DOI: https://doi.org/10.9787/KJBS.2025.57.3.291

‘Saebom’ is a new vegetable perilla (Perilla frutescens (L.) Britton) variety developed at the National Institute of Crop Science, Rural Development Administration, in 2020, following a cross made in 2011 between YPL54-2B-36-1-1-1-2-2 and YPL83-2B-5-2-5. It was developed using a pedigree breeding method. YPL156-2B-9-2-1-3-2 was selected and named ‘Milyang 83.’ Subsequently, summer and winter productivity tests were conducted. ‘Saebom’ has small, round-shaped leaves and its maximum leaf length is 13.1 cm, which allows for the distribution of leaf harvesting labor. In addition, the leaves are thick, which is beneficial for storage, and the ratio of the apical leaf length/leaf length is 55.8% (‘Namcheon’ 37.2%). This value is considered high and makes ‘Saebom’ highly marketable. Its leaf yield and leaf number were 10% and 8% higher than those of ‘Namcheon,’ respectively, and its antioxidant activity was also higher. In December 2020, the variety was named ‘Saebom’ by the new variety selection committee for its excellence, and its variety protection rights were registered in 2023 (Registration No. 9305).

Citations

Citations to this article as recorded by  
  • Genetic Diversity and Marker–Trait Associations in Commercial Cultivars and Weedy Perilla frutescens from South Korea and Japan Based on Morphological Traits and SSR Markers
    Da Hyeon Lee, Jungeun Cho, Hyeon Park, Tae Hyeon Heo, Ju Kyong Lee
    Plants.2026; 15(8): 1273.     CrossRef
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New Cultivar Developed

대립 내탈립 녹색종피 유색콩 ‘청미인’
Large-Seeded Green Seed-Coated Soybean Cultivar ‘Cheongmiin’ with Pod Shattering Tolerance
Jeong Hyun Seo, Won Young Han, Jong Min Ko, In Youl Baek, Byong Won Lee, Hong Tai Yun, Young Hoon Lee, Sang Ouk Shin, Ki Won Oh, Tae Joung Ha, Man Soo Choi, Beom Kyu Kang, Hyun Yeong Kim, Jee Hee Park, Jun Hoi Kim, Jung Sook Sung, Chan Sik Jung
Korean. J. Breed. Sci. 2021;53(3):311-317.
Published online September 1, 2021
DOI: https://doi.org/10.9787/KJBS.2021.53.3.311

‘Cheongmiin’ is a green seed-coated soybean cultivar developed from a cross between ‘Cheongjakong’ and ‘Daemang’ in 2002. The F1 and F2 populations were grown for 2 years, and promising lines were selected based on the pedigree method from generations F3 to F5. Preliminary and advanced yield trials were conducted from 2009 to 2010, and regional yield trials (RYTs) were conducted in eight regions from 2011 to 2013. ‘Cheongmiin’ is a determinate soybean with white flowers, green cotyledons, and spherical green seeds. The average flowering and maturing dates of ‘Cheongmiin’ were August 1st and October 22nd, respectively. In terms of quantitative characteristics, ‘Cheongmiin’ has a larger seed size (34.3 g/100-seed weight) than that of ‘Cheongdu1ho’ (24.5 g/100-seed weight), and has also been shown to be tolerant to lodging and pod shattering in the field in RYTs and oven drying tests, respectively. Furthermore, ‘Cheongmiin’ has been found to be resistant to bacterial pustules in the field and soybean mosaic viruses (G5H and G6H strains) in inoculation tests. The mean yield of ‘Cheongmiin’ in the RYTs was 272 kg/10 a, which was 4% higher than that of ‘Cheongdu1ho’. Given its large seed size and seed coat color, ‘Cheongmiin’ is expected to be highly useful for cooking with rice and for the preparation of rice cakes (Registration No. 7688).

Citations

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  • Lodging and Bacterial Pustule Resistant Soybean Cultivar ‘Kkari1ho’ with a Net-Like Cracking Seed Coat
    Jihee Park, Jeong Hyun Seo, Beom Kyu Kang, Jun Hoi Kim, Su Vin Heo, Won Young Han, Myoung Hee Lee, Ga Eun Kim, Tae Joung Ha, Jung Sook Sung, Ki Young Kim
    Korean Journal of Breeding Science.2026; 58(2): 209.     CrossRef
  • Lodging and Bacterial Pustule Resistant Soybean Cultivar ‘Saedeul’ with a Saddle-Patterned Seed Coat
    Jeong Hyun Seo, Beom Kyu Kang, Jun Hoi Kim, Su Vin Heo, Won Young Han, Yeong Hoon Lee, Gi Rim Park, Ki Young Kim
    Korean Journal of Breeding Science.2025; 57(2): 189.     CrossRef
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알파-리놀렌산 함량이 높고 소분지 직립초형인 종실들깨 ‘소담’ 육성
Development of Perilla Cultivar ‘Sodam’ with High Alpha-linolenic Acid Content and Upright Growth with Narrow Branch Angle for Edible Seeds
Myoung Hee Lee, Jung In Kim, Sung Up Kim, Eunyoung Oh, Suk Bok Pae, Chung Dong Hwang, Deuk Yung Song, Ki Won Oh, Tae Joung Ha, Chan Sik Jung, Do Yeon Kwak
Korean. J. Breed. Sci. 2020;52(2):140-144.   Published online June 1, 2020
DOI: https://doi.org/10.9787/KJBS.2020.52.2.140

Perilla has a long history of cultivation and consumption in Korea. Its cultivar ‘Sodam’, which is used for its oil and powder, was developed from a cross between two parents ‘K015926’ and ‘Miryang27’. The parents were crossed in 2004, and their progenies were selected from F3 to F5 generations through pedigree method. Regional yield trials (RYTs) were conducted in four regions from 2012 to 2014. ‘Sodam’ is a light gray and small spherical-seeded cultivar. It matures earlier (October 2) than ‘Saeyeopsildeulkkae’, a standard cultivar, and the number of flower clusters per plant as well as the number of ears per cluster is higher in ‘Sodam’ than in the standard cultivar. Its seeds contain approximately 46.4% crude fat, and the oil is rich (about 65.0%) in alpha-linolenic acid, an omega-3 fatty acid. ‘Sodam’ is characterized by upright plant growth with narrow branch angles. The average yield of this cultivar was 1.23 ton/ha in adaptable regions. ‘Sodam’ is expected to be a potential cultivar source for production of good quality perilla oil (Registration No. 6729).

Citations

Citations to this article as recorded by  
  • Development of a Perilla Cultivar ‘Nulsaemi’ with Large Seeds, A Soft Seed Coat, and High Rosmarinic Acid Content
    Sang Woo Kim, Jung-In Kim, Myoung Hee Lee, SungUp Kim, Jeongeun Lee, Eunsoo Lee, Eunyoung Oh, Ki Young Kim
    Korean Journal of Breeding Science.2026; 58(1): 53.     CrossRef
  • Genetic Diversity and Marker–Trait Associations in Commercial Cultivars and Weedy Perilla frutescens from South Korea and Japan Based on Morphological Traits and SSR Markers
    Da Hyeon Lee, Jungeun Cho, Hyeon Park, Tae Hyeon Heo, Ju Kyong Lee
    Plants.2026; 15(8): 1273.     CrossRef
  • Morphological Variation Among Commercial Cultivars and Weed-Like Accessions of Perilla frutescens Collected in South Korea and Japan
    Da Hyeon Lee, Jungeun Cho, Hyeon Park, Tae Hyeon Heo, Ju Kyong Lee
    International Journal of Plant Biology.2026; 17(4): 26.     CrossRef
  • ‘Saebom.’ A New Variety of Perilla With Round Heart-shaped Leaves that are Small and Thick and Have Good Inner Leaf Growth
    Jung In Kim, Myoung Hee Lee, Sang Woo Kim, Sungup Kim, Jeongeun Lee, Eunsoo Lee, Heungsu Lee, Eunyoung Oh, Kwang-Soo Cho, Ki Won Oh, Chan Sik Jung, Ki Young Kim
    Korean Journal of Breeding Science.2025; 57(3): 291.     CrossRef
  • Multivariate Analysis of FT-IR Spectroscopy Data from Different Countries of Perilla Seeds
    Ji Yeong Yang, Hyun Young Kim, Mi Ja Lee, Woo Duck Seo, June-Yeol Choi, Seung-Yeob Song
    Korean Journal of Breeding Science.2022; 54(3): 195.     CrossRef
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Articles
수량과 기름 함량이 증가된 종실들깨 ‘들샘’ 육성
Development of Perilla Cultivar ‘Deulsaem’ with High Yield and Oil Content for Edible Seed
Myoung Hee Lee, Jung In Kim, Sung Up Kim, Suk Bok Pae, Chung Dong Hwang, Deuk Yung Song, Ki Won Oh, Eun Young Oh, Tae Joung Ha, Byung Kyu Lee, Chan Sik Jung, In Youl Baek
Korean. J. Breed. Sci. 2018;50(2):161-164.   Published online June 1, 2018
DOI: https://doi.org/10.9787/KJBS.2018.50.2.161

Perilla cultivar ‘Deulsaem’ was developed for perilla oil and powder. ‘YPL139’ and ‘Daesildeulkkae’ crossed in 2003 and selected from F3 to F5 by pedigree method. The selected pedigree is ‘YPS142-B-28-1-3-2-2’ and named as Miryang No. 57. The regional yield trial (RYT) in five regions was conducted from 2011 to 2013. In RYT, ‘Deulsaem’ was a high yield and quality. ‘Deulsaem’ is determinate, white flower and brown spherical seed. Maturity date was Oct. 8, similar to ‘Saeyeopsildeulkkae’(standard cultivar). However, ‘Deulsaem’ has higher number of flower cluster and ear per cluster than ‘Saeyeopsildeulkkae’. The yield of oil content and linolenic acid of ‘Deulsaem’ was 39.4% and 61.0%, respectively. The yield in adaptable regions was 1.42 ton/ha (5% increase compared to ‘Saeyeopsildeulkkae’) and ‘Deulsaem’ is expected to be cultivated and used widely for good quality perilla oil. (Registration No. 6246)

Citations

Citations to this article as recorded by  
  • Development of a Perilla Cultivar ‘Nulsaemi’ with Large Seeds, A Soft Seed Coat, and High Rosmarinic Acid Content
    Sang Woo Kim, Jung-In Kim, Myoung Hee Lee, SungUp Kim, Jeongeun Lee, Eunsoo Lee, Eunyoung Oh, Ki Young Kim
    Korean Journal of Breeding Science.2026; 58(1): 53.     CrossRef
  • Mapping of major QTLs for flowering time, seed weight, and oil content in a recombinant inbred line population of perilla
    Jung-In Kim, Yeon Ju An, Myoung Hee Lee, Sang Woo Kim, Sungup Kim, Jeongeun Lee, Ki Young Kim, Tae-Hwan Jun, Eunsoo Lee
    Euphytica.2026;[Epub]     CrossRef
  • ‘Saebom.’ A New Variety of Perilla With Round Heart-shaped Leaves that are Small and Thick and Have Good Inner Leaf Growth
    Jung In Kim, Myoung Hee Lee, Sang Woo Kim, Sungup Kim, Jeongeun Lee, Eunsoo Lee, Heungsu Lee, Eunyoung Oh, Kwang-Soo Cho, Ki Won Oh, Chan Sik Jung, Ki Young Kim
    Korean Journal of Breeding Science.2025; 57(3): 291.     CrossRef
  • Development and application of SNP markers to discriminate Korean Perilla (Perilla frutescens) varieties using genomic sequence variations
    Jung-In Kim, Myoung Hee Lee, Sang Woo Kim, Eunsoo Lee, Sungup Kim, Jeongeun Lee, Heungsu Lee, Ki Young Kim, Eunyoung Oh, Min Young Kim, Kwang-Soo Cho, Tae-Hwan Jun
    Scientific Reports.2025;[Epub]     CrossRef
  • Morphological Variation in the Accessions of Cultivated var. frutescens of Perilla Crops Collected in South Korea
    Dong Min Kim, Kyu Jin Sa, Sookyeong Lee, Ju Kyong Lee
    Korean Journal of Breeding Science.2021; 53(3): 240.     CrossRef
  • Development of Perilla Cultivar ‘Sodam’ with High Alpha-linolenic Acid Content and Upright Growth with Narrow Branch Angle for Edible Seeds
    Myoung Hee Lee, Jung In Kim, Sung Up Kim, Eunyoung Oh, Suk Bok Pae, Chung Dong Hwang, Deuk Yung Song, Ki Won Oh, Tae Joung Ha, Chan Sik Jung, Do Yeon Kwak
    Korean Journal of Breeding Science.2020; 52(2): 140.     CrossRef
  • Assessment of genetic diversity and population structure among a collection of Korean Perilla germplasms based on SSR markers
    Jun Seok Oh, Kyu Jin Sa, Do Yoon Hyun, Gyu-Taek Cho, Ju Kyong Lee
    Genes & Genomics.2020; 42(12): 1419.     CrossRef
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들깨 종간 교잡( × ) 집단의 양적 형질 유전자좌 분석
Detection of QTLs in an Interspecific Cross between Perilla citriodora × P. hirtella Mapping Population
Myoung Hee Lee, Ki Won Oh, Myung Sik Kim, Sung Up Kim, Jung In Kim, Eun Young Oh, Suk Bok Pae, Un Sang Yeo, Tae-Ho Kim, Jeong Hee Lee, Chan Sik Jung, Do Yeon Kwak, Yong Chul Kim
Korean. J. Breed. Sci. 2018;50(1):13-20.   Published online March 1, 2018
DOI: https://doi.org/10.9787/KJBS.2018.50.1.13

An interspecific cross between P. citriodora and P. hirtella constitutes ideal material for a linkage map construction in genome project of Perilla. The chromosomes of the species are same with n=10 and progenies of the cross are normal in growth and seed set. The phenotype of F2 population of the cross are normally distributed and this is a proof of high affinity of the chromosomes during their sexual reproduction. Rosmarinic acid, Luteolin and Apigenin contents of F2 plants were distributed in similar range with tetraploid perilla cultivars. Luteolin and Apigenin are positively correlated with correlation coefficient of 0.762. 21 QTLs were detected in agronomic traits and Rosmarinic acid, Luteolin and Apigenin contents. Even though Luteolin and Apigenin are positively correlated, QTLs were located in different position. Purple leaf color related QTL was mapped in Chromosome 3 with LOD of 14.3, PVE of 50.4%. Three anthocyanin biosynthesis transcription factor like sequences, WD40 repeat-like superfamily protein, myb domain protein 43 and basic helix-loop-helix (bHLH) DNA-binding superfamily protein, were detected near from the QTL.

Citations

Citations to this article as recorded by  
  • Applying Multivariate Statistical Analysis for Agronomic Characteristics to Evaluate Leaf Availability in Perilla Germplasms
    Myoung Hee Lee, Eun Soo Lee, Jung In Kim, Eun Ae Yoo, Sang Woo Kim, Sung Up Kim, Eun Young Oh, Min Young Kim, Jung Eun Lee, Jung Sook Sung, Kwang Soo Cho, Chun Song Kim
    Korean Journal of Medicinal Crop Science.2023; 31(4): 222.     CrossRef
  • Development of an SNP marker set for marker-assisted backcrossing using genotyping-by-sequencing in tetraploid perilla
    Jae-Eun Oh, Ji-Eun Kim, Jangmi Kim, Myoung-Hee Lee, Keunpyo Lee, Tae-Ho Kim, Sung-Hwan Jo, Jeong-Hee Lee
    Molecular Genetics and Genomics.2023; 298(6): 1435.     CrossRef
  • Bulk segregant analysis identifies SSR markers associated with leaf- and seed-related traits in Perilla crop (Perilla frutescens L.)
    Su Eun Lim, Kyu Jin Sa, Ju Kyong Lee
    Genes & Genomics.2021; 43(4): 323.     CrossRef
  • Identification of quantitative trait loci associated with flowering time in perilla using genotyping-by-sequencing
    Yun-Joo Kang, Bo-Mi Lee, Moon Nam, Ki-Won Oh, Myoung-Hee Lee, Tae-Ho Kim, Sung-Hwan Jo, Jeong-Hee Lee
    Molecular Biology Reports.2019; 46(4): 4397.     CrossRef
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콩 기계수확형 대립 내병 다수성 ‘우람’
Soybean Cultivar for Soy-paste, ‘Uram’ with Mechanization Harvesting, Large Seed, Disease Resistance and High Yield
Jong Min Ko, Won Young Han, Hyun Tae Kim, Young Hoon Lee, Man Soo Choi, Byong Won Lee, Sang Uk Shin, Jeong Hyun Seo, Ki Won Oh, Hong Tae Yun, Myeong Gi Jeon, Kyu Hwan Choi, Jung Ho Shin, Eun Ja Lee, Sam Yang, In Seok Oh
Korean. J. Breed. Sci. 2016;48(3):301-306.   Published online September 30, 2016
DOI: https://doi.org/10.9787/KJBS.2016.48.3.301

A soybean cultivar for soy-paste, ‘Uram’, was developed from the cross between ‘Suwon190’ and ‘SS99244’ (Shinpaldal-2 X T243) by soybean breeding team at the National Institute of Crop Science (NICS) in 2010. A promising line, SS00232-B-B-3SSD-9-4-1-1, was selected and designated as the name of ‘Milyang188’. It was prominent and had good result from regional adaptation yield trials (RYT) in southern area of Korea for three years from 2008 to 2010 and released as the name of ‘Uram’. It has a determinate growth habit, white flower, gray pubescence, yellow seed coat, yellow hilum, spherical seed shape and large seed (25.8 grams per 100 seeds). ‘Uram’ was found to be resistant to bacterial pustule and soybean mosaic virus, the major soybean diseases in Korea. The lowest pod height of ‘Uram’ was 19cm and it will be able to reduce seed loss during mechanical harvesting. The average yield of ‘Uram’ is 3.27 ton per hectare in southern double cropping area. Through these results, ‘Uram’ is soybean cultivar that is favorable for mechanization harvesting, resistant to diseases and highly yield.

Registration number: 4903

Citations

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  • Molecular Characterization of an EMS-Induced Ab-γg-Rich Saponin Mutant in Soybean (Glycine max (L.) Merr.)
    Junbeom Park, Haereon Son, Hyun Jo, Chigen Tsukamoto, Jinwon Lee, Jeong-Dong Lee, Hak Soo Seo, Jong Tae Song
    Agronomy.2025; 15(3): 648.     CrossRef
  • Exploration and genetic analyses of canopy leaf pigmentation changes in soybean (Glycine max L.): unveiling a novel phenotype
    Hee Jin You, Hyun Jo, Ji-Min Kim, Sung-Taeg Kang, Ngoc Ha Luong, Yeong-Ho Kim, Sungwoo Lee
    Theoretical and Applied Genetics.2024;[Epub]     CrossRef
  • Selection of Soybean Accessions with Seed Storability Test Under Accelerated Aging Conditions
    Hyun Jo, Noy Noy, Jong Tae Song, Jeong-Dong Lee
    Plant Breeding and Biotechnology.2023; 11(4): 263.     CrossRef
  • Genetic Diversity of Korean Black Soybean (Glycine max L.) Germplasms with Green Cotyledons Based on Seed Composition Traits
    Ji Yun Lee, Hyun Jo, Chang Ki Son, Jeong Suk Bae, Jeong-Dong Lee
    Agriculture.2023; 13(2): 406.     CrossRef
  • Agronomic Traits of a New Soybean Germplasm with Higher Ratio of Four-seeded Pods
    Hyun Jo, Ammala Namsavanh, Changwan Woo, Hwayeop Kim, Syada Nizer Sultana, Jong Tae Song, Jeong-Dong Lee
    Plant Breeding and Biotechnology.2022; 10(3): 197.     CrossRef
  • Genetic Diversity of Black Soybean Germplasms with Green Cotyledons Based on Agronomic Traits and Cotyledon Pigments
    Ji Yun Lee, Hong Jib Choi, Chang Ki Son, Jeong Suk Bae, Hyun Jo, Jeong-Dong Lee
    Korean Journal of Breeding Science.2021; 53(2): 127.     CrossRef
  • Soybean Cultivar ‘Hipro’ for Tofu and Soymilk with High Seed Protein Content and Pod Shattering Resistance
    Ji-Min Kim, Ilseob Shin, Soo-Kwon Park, Man Soo Choi, Jeong-Dong Lee, Bo-Keun Ha, Juseok Lee, Yang Jae Kang, Soon-Chun Jeong, Jung-Kyung Moon, Sungteag Kang
    Korean Journal of Breeding Science.2021; 53(1): 60.     CrossRef
  • Changes in active compounds and biological activities during fermentation of soy-powder milk by the mixtures of probiotics lactic acid bacteria
    Chung Eun Hwang, Du Yong Cho, Jin Hwan Lee, Dong Hee Lee, Kye Man Cho
    Korean Journal of Food Preservation.2020; 27(6): 769.     CrossRef
  • Environmental Stability of Elevated α-Linolenic Acid Derived from a Wild Soybean in Three Asian Countries
    Hyun Jo, Minsu Kim, Liakat Ali, Rupesh Tayade, Danim Jo, Duc Thao Le, Siviengkhek Phommalth, Bo-Keun Ha, Sungtaeg Kang, Jong Tae Song, Jeong-Dong Lee
    Agriculture.2020; 10(3): 70.     CrossRef
  • High-density linkage map reveals QTL for Type-I seed coat cracking in RIL population of soybean [Glycine max (L.) Merr.]
    Beom Kyu Kang, Jeong Hyun Seo, Hyun Jo, Krishnanand P. Kulkarni, Man Soo Choi, Hyun Tae Kim, Jeong Dong Lee, Sanjeev K. Dhungana, Hong Sik Kim, Jae Hyeon Oh, Ji Hee Park, Sang Ouk Shin, In Youl Baek
    Euphytica.2020;[Epub]     CrossRef
  • Comparison of primary and secondary metabolite compositions and antioxidant effects of specific soybean cultivars
    Chung Eun Hwang, Su Cheul Kim, Jin Hwan Lee, Dong-Hee Lee, Kye Man Cho
    Korean Journal of Food Preservation.2019; 26(5): 555.     CrossRef
  • Comparative assessment of quality characteristics of Chungkookjang made from soybean seeds differing in oleic acid concentration
    Dong-Ho Lee, Krishnanand P. Kulkarni, Byung-Oh Kim, Young Mi Seok, Jong Tae Song, Jeong-Dong Lee
    Journal of Functional Foods.2019; 52: 529.     CrossRef
  • Characterization of an EMS-induced soybean mutant with an increased content of Af saponin and a new component Ab-δ in the seed hypocotyl
    Cheol Woo Park, Krishnanand P. Kulkarni, Minsu Kim, Kyosuke Mukaiyama, Chigen Tsukamoto, Gyuhwa Chung, Jong Tae Song, Jeong-Dong Lee
    Euphytica.2018;[Epub]     CrossRef
  • A Novel Allele of GmSACPD‐C Associated with High Seed Stearic Acid Concentration in an EMS‐Induced Mutant PE980 in Soybean
    Jae‐Eun Jeong, Krishnanand P. Kulkarni, Jeong Ho Chang, Bo‐Keun Ha, Sung Taeg Kang, Kristin Bilyeu, Hyun Jo, Jong Tae Song, Jeong‐Dong Lee
    Crop Science.2018; 58(1): 192.     CrossRef
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침수에 의한 습해 저항성 콩 유전자원 선발
Screening of Flooding Tolerance in Soybean Germplasm Collection
Sung Cheol Koo, Hyun Tae Kim, Beom Kyu Kang, Young Hoon Lee, Ki Won Oh, Hyun Young Kim, In Youl Baek, Hong Tai Yun, Man Soo Choi
Korean. J. Breed. Sci. 2014;46(2):129-135.   Published online June 30, 2014
DOI: https://doi.org/10.9787/KJBS.2014.46.2.129

Soybean [Glycine max. (L.) Merr] is one of the most important legumes in the world. However, soybean varieties are sensitive to flooding stress and their seed yields are substantially reduced in response to the flooding stress. 192 soybean germplasm collection was screened to identify flooding tolerant germplasm at an early vegetative growth stage (V1). Soybean plants at V1 stage were waterlogged for 4 to 10 days. To evaluate flooding tolerance, survival rate were investigated as a time dependent manner. Jangbaegkong, Danbaegkong, Sowonkongkong, Socheong2 and Suwon269 showed flooding tolerance, while Shillog, T201, T181, NTS1116 and HP-963 showed flooding sensitivity. We also investigated effects of flooding stress on soybean morphology. The adventitious root development was greatly increased in flooding tolerant plants compared to it in flooding sensitive plants. In addition, root length and root number were analyzed. The significant reduction of root length and root number was observed in flooding sensitive plants. Thus, these results indicate that the morphological changes in roots are important for acclimation to flooding stress. Taken together, the relationship between the morphological changes in the roots and flooding tolerance may be useful in selecting a flooding tolerant soybean germplasm.

Citations

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  • The Effect of Sowing Date on Soybean Growth and Yield Under Changing Climate in the Southern Coastal Region of Korea
    SeEun Chae, Pyeong Shin, JongTag Youn, JwaKyung Sung, SeungHo Jeon
    Agriculture.2025; 15(11): 1174.     CrossRef
  • Characterization of the Regulatory Network under Waterlogging Stress in Soybean Roots via Transcriptome Analysis
    Yo-Han Yoo, Seung-Yeon Cho, Inhye Lee, Namgeol Kim, Seuk-Ki Lee, Kwang-Soo Cho, Eun Young Kim, Ki-Hong Jung, Woo-Jong Hong
    Plants.2024; 13(18): 2538.     CrossRef
  • Identification of QTL for Tolerance to Flooding Stress at Seedling Stage of Soybean (Glycine max L. Merr.)
    Sanjeev Kumar Dhungana, Hong-Sik Kim, Beom-Kyu Kang, Jeong-Hyun Seo, Hyun-Tae Kim, Sang-Ouk Shin, Jae-Hyeon Oh, In-Youl Baek
    Agronomy.2021; 11(5): 908.     CrossRef
  • Analysis of differentially expressed genes in soybean leaf tissue of tolerant and susceptible cultivars under flooding stress revealed by RNA sequencing
    Sanjeev K. Dhungana, Hong-Sik Kim, Beom-Kyu Kang, Jeong-Hyun Seo, Hyun-Tae Kim, Jae-Hyeon Oh, Sang-Ouk Shin, In-Yeol Baek
    Journal of Crop Science and Biotechnology.2021; 24(1): 83.     CrossRef
  • Establishment of Soil Suitability and Assessment of Wet Injury in Astragalus membranaceus (Fisch.) Bunge by Soil Properties
    Eun Song Lee, Geun Soo Hyeon, Yong Il Kim, Jae Ki Chang, Tae Jin An
    Korean Journal of Medicinal Crop Science.2021; 29(4): 273.     CrossRef
  • Yearly Variation of Isoflavone Composition and Yield-Related Traits of 35 Korean Soybean Germplasm
    Hyemyeong Yoon, Jungyoon Yi, Kebede taye Desta, Myong-Jae Shin, Yoonjung Lee, Sukyeung Lee, Xiaohan Wang, Yu-Mi Choi, Sungwoo Lee
    Korean Journal of Breeding Science.2021; 53(4): 411.     CrossRef
  • Quantitative trait loci mapping for flooding tolerance at an early growth stage of soybean recombinant inbred line population
    Sanjeev K. Dhungana, Hong‐Sik Kim, Beom‐Kyu Kang, Jeong‐Hyun Seo, Hyun‐Tae Kim, Sang‐Ouk Shin, Chang‐Hwan Park, Do‐Yeon Kwak, Bradley Morris
    Plant Breeding.2020; 139(3): 626.     CrossRef
  • Exo-ethylene application mitigates waterlogging stress in soybean (Glycine max L.)
    Yoonha Kim, Chang-Woo Seo, Abdul Latif Khan, Bong-Gyu Mun, Raheem Shahzad, Jeung-Woo Ko, Byung-Wook Yun, Soon-Ki Park, In-Jung Lee
    BMC Plant Biology.2018;[Epub]     CrossRef
  • A New Soybean Cultivar, 'Gangpoong' for Soy-Paste and Tofu with Large Seeds and Lodging Resistance
    Eun Seob Yi, Jin Young Kim, Jong Hyong Lee, Jin Goo Lee, Jeong A Han, Chang Seong Kang
    Korean Journal of Breeding Science.2018; 50(3): 307.     CrossRef
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