• Title/Summary/Keyword: hypocotyl

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A New Mungbean Cultivar, "Dahyeon" with Many Pod and High Yielding (다협 다수성 녹두 신품종 "다현")

  • Kim, Dong-Kwan;Choi, Jin-Gyung;Lee, Ya-Seong;Son, Dong-Mo;Moon, Jung-Kyung;Oh, Young-Jin;Kim, Kyong-Ho
    • Korean Journal of Breeding Science
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    • v.41 no.1
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    • pp.36-39
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    • 2009
  • A new mungbean cultivar "Dahyeon" (Vigna radiata (L.) Wilczek) was derived from the cross between Jeonnam11 and AV-1-3-34-204 at National Institute Crop Science (NICS) and Jeollanamdo Agricultural Research & Extension Services (JARES) in 2006. "ahyeon" has erect growth habit, heart leaflet, green hypocotyl, black and straight pod when matured, and dull green seed surface. The pods number per plant was 21.0, which was 4.0 more than check cultivar "wool" The plant height and thousand seed weight were 57cm and 48 g respectively. The sprout yield was up to 5% more than that of the check cultivar. It was field resistance to mungbean mottle virus, cercospora leaf spot, and powdery mildew. The average yield was 1.90 ton/ha, which was 17% more than the check cultivar.

Esterase isozyme patterns in developing plant regeneration from calli of citrus junos Sieb.

  • Lee, Hyun-Hwa;Lee, Sook-Young;Park, Min-Hee;Jang, Hyun-kyu;Kim, Hong-Sub
    • Plant Resources
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    • v.2 no.1
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    • pp.1-9
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    • 1999
  • The callus from the hypocotyl region of immature embryo of Citrus junos Sieb. was efficiently induced in the $\frac{1}{2}$ MS medium containing 45uM BA after 8 weeks culture. The callus was developed into the two callus type, embryogenic callus and nonembryogenic callus, which can be distinguished by visual examination depending on color and appearence. In vitro regeneration of callus established efficiently in the hormone-free MS medium from the embryogenic callus. In order to investigate the physiological changes depending on the developmental stage of embryo, the embryo was formed in the MS medium. The embryogenic and nonembryogenic callus, and the various stages of the somatic embryo were examimed the changes of esterase activity, and their isozyme patterns as well. The protein content and esterase activities was gradually increased on the developmental stages of embryo. Total protein pattern were different by the SDS-PAGE and were appeared strong band of 23 KD in the torpedo stage. The pattern of the esterase isozyme was exhibited a difference between embryogenic callus and nonembryogenic callus. It was appered pI 6.0, 8.0, 8.2 in the embryogenic callus. Also the new band of pI 4.75 was appeared in the cotyledon. These results suggest that the changes of esterase activities and isozyme patterns are importent factor in the differentiation and development of citrus.

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A New Mungbean Cultivar 'Juhyeon' with High Sprout Yield (고수율 나물 녹두 신품종 '주현')

  • Kim, Dong-Kwan;Son, Dong-Mo;Choi, Jin-Gyung;Kim, Myeong-Seok;Shin, Hae-Ryong;Lee, Seuk-Ki;Seo, Min-Jung;Cho, Sang-Kyun;Oh, Young-Jin;Kim, Hyun-Tae
    • Korean Journal of Breeding Science
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    • v.43 no.3
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    • pp.218-221
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    • 2011
  • A mungbean cultivar 'Juhyeon' (Vigna radiata (L.) Wilczek) was derived from the cross between Keumseong and VC1834-4-B-2-B-3B-B at Jeollanamdo Agricultural Research & Extension Services (JARES) in 2009. 'Juhyeon' has an erect growth habit, heart leaflet, green hypocotyl, black and straight pod when matured, and dull green seed surface. The pod number per plant was 26, which was 8 more than check cultivar 'Owool'. The plant height and thousand seed weight were 66 cm and 47 g, respectively. This cultivar has field resistance to mungbean mottle virus, cercospora leaf spot, powdery mildew, and lodging. The sprout yield was up to 18% more than that of the check cultivar. The average yield was 1.84 MT/ha, which was 6% more than the check cultivar.

A New High Quality and Yield Mungbean Cultivar "Sohyeon" (고품질 다수성 녹두 신품종 "소현")

  • Kim, Dong-Kwan;Lee, Ya-Seong;Jung, Byung-Joon;Son, Dong-Mo;Moon, Jung-Kyung;Oh, Young-Jin;Kim, Jung-Bong;Kim, Kyong-Ho
    • Korean Journal of Breeding Science
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    • v.40 no.4
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    • pp.507-511
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    • 2008
  • A new mungbean cultivar "Sohyeon" (Vigna radiata (L.) Wilczek) was bred from the cross between "Suwon28" and "KM94004" at the Jeollanamdo Agricultural Research & Extension Services (JARES) in 2006. "Sohyeon" has erect type, heart shape leaflet, green hypocotyl, black and straight pod when matured, and dull green seed surface. This new cultivar shows 42 g per a thousand seed weight. And sprout yield was up to 9% more than that of comparison cultivar "Owool". It contains 12.0, 12.4 mg/g of vitexin and isovitexin, respectively, which was shown about 38, 31% more than comparison cultivar. It shows resistance to mungbean mottle virus, cercospora leaf spot, and powdery mildew in the normal cultivate condition. The average yield of this cultivar shows 1.62 ton/ha, which was 7% more than comparison cultivar.

Mungbean Cultivar, 'Suhyeon' with Short Stem Length, Disasters Resistance and High Yielding (단경 내재해 다수성 녹두 품종 '수현')

  • Kim, Dong-Kwan;Choi, Jin-Gyung;Kim, Kil-Ja;Kwan, Oh-Do;Park, Heung-Gyu;Seo, Min-Jung;Lee, Yeong-Hoon
    • Korean Journal of Breeding Science
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    • v.49 no.3
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    • pp.230-234
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    • 2017
  • A mungbean variety 'Suhyeon' (Vigna radiata (L.) Wilczek) was derived from the cross between 'Jeonnam14' and 'IT208777' at the Jeollanamdo Agricultural Research and Extension Services (JARES) in 2010. 'Suhyeon' has erect growth habit, heart leaflet, green hypocotyl, black and straight pod when matured, and dull green seed surface. The stem length of 'Suhyeon' was 66 cm, which was 5 cm less than check variety 'Owool'. The pods number per plant of 'Suhyeon' was 24, which was 5 more than check variety. The sprout yield ratio of 'Suhyeon' was 8.67 times, which was 16% more than check variety. The contents of starch, protein and fatty acid of seed were 62.7, 27.3, 1.89%, respectively. The average yield of 'Suhyeon' was 1.74 ton/㏊, which increased 8% more than that of check variety. (Variety registration number: 5107)

Effect of the far infrared irradiated water on the growth of the cotyledons, hypocotyls and roots of the spring radishes (원적외선 처리수가 봄 무의 자엽, 하배축, 뿌리 성장에 미치는 영향)

  • Cho, Bong-Heuy
    • Analytical Science and Technology
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    • v.22 no.4
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    • pp.277-284
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    • 2009
  • The germination rate of radishes grown with the far infrared irradiated water and drinking water was 100% and 78% respectively. The far infrared irradiated water stimulated the cell division of the cotyledons and enlarged the cell sizes both in the dark and in the light. In the dark and light conditions, the size of the cotyledons of transversal axis and longitudinal axis grown with the far infrared irradiated water was bigger than that grown with the drinking water. The content of chlorophyll and the consumption of $CO_2$ of the cotyledons grown with the far infrared irradiated water were higher, respectively. Osmotic pressure of the cotyledons grown with the far infrared irradiated water was 1.25 factors higher than that grown with the drinking water. The water potential of the cotyledons grown with the far infrared irradiated water was more negative value. The length of hypocotyls grown with the far infrared irradiated water was 2.18 factors longer in the dark, 1.99 factors longer in the light than that grown with the drinking water and the radish roots grown with the far infrared irradiated water were larger, respectively.

Identification of New Isolates of Phytophthora sojae and Selection of Resistant Soybean Genotypes

  • Su Vin Heo;Hye Rang Park;Yun Woo Jang;Jihee Park;Beom Kyu Kang;Jeong Hyun Seo;Jun Hoi Kim;Ji Yoon Lee;Man Soo Choi;Jee Yeon Ko;Choon Song Kim;Sungwoo Lee;Tae-Hwan Jun
    • The Plant Pathology Journal
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    • v.40 no.3
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    • pp.329-335
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    • 2024
  • Phytophthora root and stem rot (PRR), caused by Phytophthora sojae, can occur at any growth stage under poorly drained and humid conditions. The expansion of soybean cultivation in South Korean paddy fields has increased the frequency of PRR outbreaks. This study aimed to identify four P. sojae isolates newly collected from domestic fields and evaluate race-specific resistance using the hypocotyl inoculation technique. The four isolates exhibited various pathotypes, with GJ3053 exhibiting the highest virulence complexity. Two isolates, GJ3053 and AD3617, were screened from 205 soybeans, and 182 and 190 genotypes (88.8 and 92.7%, respectively) were susceptible to each isolate. Among these accessions, five genotypes resistant to both isolates were selected. These promising genotypes are candidates for the development of resistant soybean cultivars that can effectively control PRR through gene stacking.

Variations of Isoflavone Contents in Seeds and Sprouts of Sprout Soybean Cultivars (나물용 콩 품종의 종실 및 콩나물 함유 Isoflavone 변이)

  • Kim, Young-Jin;Oh, Young-Jin;Cho, Sang-Kyun;Kim, Jung-Gon;Park, Myoung-Ryoul;Yun, Song-Joong
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.51 no.spc1
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    • pp.160-165
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    • 2006
  • Biofuctionality of soybean seeds and soy-bean products have been fortified by the uncovering of the multifuctional beneficial effects of isoflavones. As one way to fully utilize beneficial effects of isoflavones in soybean sprout is through the enhancement of isoflavone contents in soybean seeds, genetic selection for higher isoflavone and cultivational measures to increase isoflavone content in soybean seeds were attempted. Isoflavones (daidzein, gemstein) contents in soybean seeds and soybean sprouts were determined by high performance liquid chromatography. Total isoflavone contents in soybean seeds ranged from 756 to $1,682{\mu}g/g$ and Iksan #13 $(1,682{\mu}g/g)$ showed highest content among the 21 germplasms analyzed. Onetime treatment of soybean plants with Antipol or Piaster at the $V_4$ stage yielded seeds with higher isoflavones as $2,472{\mu}g/g\;or\;2,052{\mu}g/g$, respectively, which were higher by 37% and 14% than that of seeds in the control plants, respectively. In Eunhakong, Isoflavone contents of soybean sprout changed during sprouting. Daidzein content in hypocotyl increased to maximum on the third day of cultivation and decreased there-after, whereas the content changed little in cotyledon. In sprouts of Pungsannamulkong, daidzein content in hypocotyl showed a maximum level on the first day and decreased gradually thereafter but, the content changed little in cotyledon. Total isoflavone contents in lateral roots which developed on the 6th day after sprouting ranged from 4,416 to $5,232{\mu}g/g$ DW.

Quantification of Isoflavone Malonylglucosides in Soybean Seed during Germination (콩 발아 중 isoflavone malonylglucosides의 함량 변이)

  • Lee, Ju-Won;Yi, Yoo-Jung;Lee, Ju-Hee;Jo, Min-Sik;Choi, Do-Jin;Ma, Mu-Hyun;Kim, Hong-Sik;Kim, Dae-Ok;Yun, Hong-Tae;Kim, Yong-Ho
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.63 no.3
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    • pp.239-247
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    • 2018
  • Soybean produces three major types of isoflavones, daidzein, genistein, and glycitein aglycones and their glucosides and malonylglucosides. It has been known that malonylated glucosides are rapidly converted to their corresponding aglycones due to the unstable thermolabile glucoside malonates; therefore, the analytical study of malonylated glucosides has been insufficient. In this study, we analyzed the malonylglucoside content in soybean seeds. Isoflavone analysis of three soybean cultivars revealed that 81.5~90.0% of the total isoflavones were malonylglucosides, whereas aglycones were rarely detected. Moreover, the total isoflavone content increased during a 5-day germination period where growth regulators and coumaric acid treatments tended to yield higher isoflavone content than the normal germination treatment, however the differences were not significant; notably, the isoflavone accumulation trend continued with additional germination days. The content of malonylglucoside was higher than that of other isoflavones, which was 83.7~86.6% of the total isoflavone content in seeds with a 3-day germination period. Furthermore, isoflavones were significantly accumulated in the hypocotyl of seedlings with a 5-day germination period. The content of isoflavone in the hypocotyl of the Pungsannamul-kong was 10,240 ug/g when treated with coumaric acid, which was considerably higher than that of other cultivars and treatments. Additionally, soybean seeds heated at $60^{\circ}C$ for 1 hour produced higher isoflavone content than non-heated soybean seeds. Our results show that it is possible to increase the isoflavone content in soybean seeds through various treatments.

Growth and Morphological Charactersistics of Soybean Sprouts Treated with Leaf Extracts of Thea sinensis L. and Eucommia ulmoides Oliver (녹차와 두충 잎 추출물 처리에 따른 콩나물의 생장 및 형태적 특징)

  • Kang, Jin-Ho;Park, Cheol-Jong;Yoon, Soo-Young;Jeon, Seung-Ho;Her, Chang-Young
    • Korean Journal of Medicinal Crop Science
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    • v.13 no.1
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    • pp.11-16
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    • 2005
  • Soybean sprouts presoaked to leaf extracts were on sale as taking a growing concern about wellbeing foods. The study was carried out to compare the effects of culture period after presoaking tea (Thea sinensis L.) and hard rubber tree (Eucommia ulmoides Oliver) leaf extracts on lateral root formation, growth and morphological characters of the sprouts. Seeds of three cultivars, Pungsannamulkong, Sowonkong and Junjery, were imbibed for 5 hours into 10% solutions immediately before 5, 6 and 7 day cultures. The cultured sprouts were classified into 4 categories to calculate their composition rates on the base of hypocotyllengths; >7 cm (A),4 to 7 cm (B),< 4 cm (C) and not germinated (D), and their morphological characters, fresh and dry weights were measured. Rate of A was the lowest in Junjery of the three cultivars, while that of C showed reverse result compared to A. Similar results to that of A were observed between the three cultivars in sprout length including hypocotyl and root, diameters in middle and hook parts of hypocotyl, total fresh and dry weights. Regardless of tea and hard rubber tree leaf extract treatments, longer culture periods increased rate of A due to decrements of B, C and D, and also did the growth and the morphological characters mentioned above. Although longer culture periods reduced the increment of lateral roots, the latter treatment was more delayed in their formation and less in the roots per sprout than the former one. The growth and the morphological characters above were less in the latter treatment than in the former one in general, meaning that hard rubber tree leaf extract could more repress growth of soybean sprouts than tea leaf extract.