• Title/Summary/Keyword: Peanut (Arachis hypogaea L.)

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A New Short Stem, Disease Resistance and High Yielding Peanut "Pungsan" (단경 내병 다수성 땅콩 품종 "풍산")

  • Pae, Suk-Bok;Cheong, Young-Keun;Park, Chang-Hwan;Lee, Myung-Hee;Hwang, Chung-Dong;Shim, Kang-Bo;Jung, Chan-Sik;Jung, Churl-Whan;Park, Keum-Yong;Park, Chung-Beam;Choi, Gyu-Hwan;Lee, Jae-Chul;Kim, In-Jae;Kim, Je-Kyu
    • Korean Journal of Breeding Science
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    • v.40 no.2
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    • pp.173-177
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    • 2008
  • A new peanut variety "Pungsan" (Arachis hypogaea ssp. hypogaea L.) was developed at the Yeongnam Agricultural Research Institute, NICS, in Milyang in 2007. It was derived from a cross between a short stem cultivar "Satonoka" and a high-yielding local cultivar "Yecheon". "Pungsan" is the Virginia plant type. It has 18 branches per plant and 40 cm of main stem height. Each pod with long-ellipse shaped large kernel has two grains with light-brown testa and 100 seed weight was 95g in the regional yield trials (RYT). "Pungsan" showed more resistant to web blotch compared with check variety. In the regional yield trials "Pungsan" was outyielded in grain yield to the check variety by 16% with 4.45 MT/ha for grain.

A New Short Stem, Lodging Resistance and High Yielding Vegetable Peanut cultivar, "Jopyeong" (조숙 단경 내도복 다수성 풋땅콩 "조평")

  • Pae, Suk-Bok;Park, Chang-Hwan;Cheong, Young-Keun;Jung, Chan-Sik;Lee, Myung-Hee;Lee, Yu-Young;Hwang, Chung-Dong;Oh, Se-Kwan;Kim, Jung-Tae;Park, Keum-Yong;Kim, Wook-Han;Choi, Gyu-Hwan;Lee, Jae-Chul;Jeong, Byung-Joon;Kim, Ho-Young
    • Korean Journal of Breeding Science
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    • v.40 no.1
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    • pp.63-67
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    • 2008
  • A new peanut cultivar "Jopyeong" (Arachis hypogaea ssp. hypogaea L.) was developed at the Yeongnam Agricultural Research Institute, NICS, in Milyang in 2006. It was developed from the cross between the very short stem cultivar "CUP brittle" and the high-yielding cultivar "Daekwang". "Jopyeong" which is Virginia plant type has 23 branch number per plant with early maturing and ellipse-shaped large kernel. Each pod has two grains with brown testa and 100 seed weight was 87g in the regional yield trials (RYT). This variety also showed more resistant to late leaf spots compared with check one. Especially it has resistance to lodging owing to short stem and erect plant type. In the regional yield trials "Jopyeong" was out-yielded than check variety by 11% with 8.37 ton/ha for fresh pod and by 4% with 3.95 ton/ha for grain.

A New Short Stem, Lodging Resistance and High Yielding Peanut "Charmpyeong" (단경 내도복 다수성 땅콩 품종 "참평")

  • Pae, Suk Bok;Cheong, Young-Keun;Shim, Kang-Bo;Hwang, Chung-Dong;Lee, Myung-Hee;Jung, Chan-Sik;Kang, Churl-Whan;Park, Keum-Yong;Park, Chung-Bean;Choi, Gyu-Hwan;Lee, Jae-Chul;Kim, In-Jae;Kim, Je-Kyu
    • Korean Journal of Breeding Science
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    • v.40 no.2
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    • pp.168-172
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    • 2008
  • A new peanut variety "Charmpyeong" (Arachis hypogaea ssp. hypogaea L.) was developed at the Yeongnam Agricultural Research Institute, NICS, in Milyang in 2007. It was developed from the cross between the high-yielding cultivar "Shindaekwang" and the very short stem cultivar "ICGV94216". This Virginia plant typed "Charmpyeong" has 33 cm stem height and 18 branch number Each pod with ellipse-shaped large kernel has two grains with brown testa and 100 seed weight was 88 g in the regional yield trials (RYT). This variety also showed more resistant to web blotch compared with check one. Especially it has resistance to lodging until harvesting owing to short stem. In the regional yield trials "Charmpyeong" was outyielded than check variety by 13% with 4.35 MT/ha for grain.

A Shinpung Typed Large Grain and High-Yielding Peanut Variety 'Daan' (단경 소분지 대립 다수성 땅콩 신품종 '다안')

  • Pae, Suk-Bok;Lee, Myoung-Hee;Kim, Sung-Up;Hwang, Chung-Dong;Oh, Ki-Won;Jung, Chan-Sik;Song, Deok-Young;Baek, In-Youl;Lee, Young-Hee
    • Korean Journal of Breeding Science
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    • v.49 no.3
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    • pp.224-229
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    • 2017
  • A new peanut variety 'Daan'(Arachis hypogaea ssp. hypogaea L.) was developed at the Department of Southern Area Crop Science, National Institute of Crop Science (NICS) in Milyang 2014. This was developed from the cross between 'Iksan 31' with Virginia typed short stem and 'Dakwang' with Shinpung-typed larger grain. 'Daan' which is a Shinpung plant type had 13 branches per plant and its length of main stem was 44cm. Each pod has two grains with brown testa and long ellipse-shaped large kernel. Its yield components showed 34 pods per plant, 127 g of 100-seed-weight and 75% of pod shelling ratio in the regional yield trials (RYT). Seed quality showed 47.8% of crude oil and 28.3% of protein content. This variety showed resistant to early leaf spot and had more resistant to late leaf spot, stem rot and lodging, compared to reference variety. In the regional yield trials for 3 years 'Daan' was more productive than reference variety by 16% with 5.00 MT/ha for grain production.

A New Red Testa and High Quality Vegetable Peanut Cultivar, "Charmwon" (자색종피 고품질 다수성 풋땅콩 "참원")

  • Pae, Suk-Bok;Cheong, Young-Keun;Jung, Chan-Sik;Lee, Myung-Hee;Hwang, Chung-Dong;Lee, Yu-Young;Oh, Se-Kwan;Kim, Jung-Tae;Park, Keum-Yong;Kim, Wook-Han;Choi, Gyu-Hwan;Lee, Jae-Chul;Jeong, Byung-Joon;Kim, Ho-Young
    • Korean Journal of Breeding Science
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    • v.40 no.1
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    • pp.58-62
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    • 2008
  • A new vegetable peanut cultivar "Charmwon" (Arachis hypogaea ssp. fastigiata.L.) was developed at the Yeongnam Agricultural Research Institute, NICS, in Milyang 2006. It was developed from the cross between the disease resistant cultivar "HYQ(CG)S-10" and the high-yielding cultivar "Sinkwang". "Charmwon" which has been classified as Shinpung plant type is less branch number with early flowering and ellipse-shaped large kernel. Each pod which showed very shallow constriction had two grains with red testa and 100 seed weight was 90g in the regional yield trials (RYT). This variety also showed higher free sugar and protein contents in seed quality, and had more resistant to early and late leaf spot diseases compared with check one. In the regional yield trials "Charmwon" was out-yielded than check variety by 18% with 8.93 ton/ha for fresh pod and by 4% with 3.95 ton/ha for grain.

Studies on the Ecological Characteristics for the Plant Types in the Peanut(Arachis hypogaea L.) III. The Differences in Dry Matter Production and Distribution Ratio of Dry Matter Produced among Plant Types (땅콩의 초형별 생태적 특성에 관한 연구 III. 초형별 건물생산능력과건물 분배율)

  • Lee, Jung-Il;Park, Yong-Hwan;Park, Yeon-Kyu
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.30 no.1
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    • pp.63-68
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    • 1985
  • This study was conducted to investigate the dry matter production and distribution ratio of dry matter produced for each of 5 botanical types (Virginia-Small Seed, Virginia-Large Seed, Spanish, Valencia, Shinpung) of Peanut (Arachis hypogaea L.) in Peanut culture limiting region. The total dry weight increased in order of Virginia-Large seed, Virginia- Small Seed, Shinpung, Spanish, Valencia type. The maximum Crop growth rates (Cmax) were Virginia-Small seed 18.22-23.41 g/㎡/day, Virginia-Large seed 19.61-20.03 g/㎡/day, Shinpung 16.33-19.77 g/㎡/day, Spanish 13.86-16.28 g/㎡/day, Valencia 13.97-16.25g/㎡/day, respectively. LAI showed the high value at vinyl-mulching than non-mulching. In the early filling stage, distribution ratio of dry matter produced showed the highest at the shinpung type than the other types.

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Isolation and Biological Activity of $Resveratrol-3-O-{\beta}-D-Glucoside$ in Transgenic Rehmannia glutinosa L. Transformed by Peanut Resveratrol Synthase Gene (RS3)

  • Lim, Jung-Dae;Yang, Deok-Chun;Yun, Song-Joong;Chung, Ill-Min;Sung, Eun-Soo;Kim, Myong-Jo;Heo, Kweon;Yu, Chang-Yeon
    • Korean Journal of Medicinal Crop Science
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    • v.12 no.5
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    • pp.406-414
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    • 2004
  • Resveratrol, which is both a phytoalexin with antifungal activity and a phytochemical associated with reduced cancer risk and reduced cardiovascular disease, is synthesized in a limited number of plant species including peanut. Resveratrol synthesis is catalyzed by the enzyme stilbene synthase including resveratrol synthase (RS). Resveratrol synthase gene (RS3) obtained from peanut, Arachis hypogaea, Fabaceae has been transferred into chinese foxglove, Rehmannia glutinosa by using Agrobacterium mediated transformation. RS t-DNA introduced to chinese foxglove (R. glutinosa L) by transformation and its reaction product, $resveratrol-3-O-{\beta}-D-glucoside$ was isolated and characterized using HPLC. Also its biological effects was tested in inhibition of the lipid peroxidation of mouse LDL by glycosylated stilbenes derivatives obtained from transgenic plants. $Resveratrol-3-O-{\beta}-D-glucoside$ isolated from transgenic R. glutinosa L. showed antimicrobial activity of the growth inhibition zone against Escherichia coli and Salmonella typhimurium. Therefore, this compound can be contributed to be useful as a phytoalexin for plant health as well as a phytochemical for human health.

Enzyme Inhibitory and Anti-Proliferation Effects of Peanut Skin Extracts Depending on Cultivar (품종별 땅콩 종피 추출물의 효소저해활성 및 암세포주 증식억제 효과)

  • Kim, Min Young;Kim, Hyun-Joo;Lee, Yu-Young;Kim, Mi Hyang;Lee, Jin Young;Lee, Byoungkyu;Lee, Byong Won
    • The Korean Journal of Food And Nutrition
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    • v.32 no.5
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    • pp.511-521
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    • 2019
  • The purpose of this study was to investigate the inhibitory effect of enzyme activity and anti-proliferation of human cancer cell lines (HCT 116, NCI-H460 and MCF-7) of peanut skin depending on cultivars (Arachis hypogaea L. cv. K-Ol, cv. Sinpalkwang, cv. Daan, cv. Heuksaeng) and extraction solvent. Peanut skin was extracted with 80% ethanol, 80% methanol, 80% acetone, and distilled water, followed by analysis of the enzyme inhibitory activity and anticancer activity. Methanol extract of Daan cultivar most effectively inhibited ${\alpha}$-gluosidase (65.08%, 0.025 mg/mL), tyrosinase (82.49%, 2 mg/mL) and ACE (73.61%, 10 mg/mL). The inhibitory effect of peanut skin extracts on colon cancer cell (HCT-116), lung cancer cell (NCI-H460) and breast cancer cell (MCF-7) growth were investigate using MTT assay. The highest anti-proliferation of cancer cell line of peanut skin extracts was observed in the methanol extract of Daan cultivar. The cell viability on HCT 116, NCI-H460 and MCF-7 cell lines of methanol extracts from peanut skin of Daan cultivar was 48.13%, 41.03%, and 36.02% at $200{\mu}g/mL$, respectively. These results suggest that peanut skin extracts may mediate physiological activity, and provide valuable information for the use of peanut byproduct as a functional food material.

Cropping Systems for Vegetable Peanut and Environmental Effect of Residue Incorporation in Soil (풋땅콩 작부체계와 수확 후 잔존 유기물의 친환경적 효과)

  • 김정태;배석복;박향미;윤을수;김민태;최진용
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.48 no.6
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    • pp.452-459
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    • 2003
  • A new demand for vegetable peanut (Arachis hypogaea L.) in Korea has increased farmers interest in growing vegetable peanut. Compared to grain peanut production, vegetable peanut production enables the growth period to be shortened by 20 or 30 days and farmers to adopt various cropping systems and to return crop residues in the soil. With the purpose of establishing desirable cropping systems for sustainable vegetable peanut production, three field experiments were conducted from 2000 to 2001 at Milyang, the southeastern part of Korea. Main focuses were given into the effect of cropping systems for vegetable peanut production on each crop's yield and soil sustainability. The cropping systems investigated were single vegetable peanut, peanut-radish-green barley, peanut-barley, and peanut-garlic cropping system, with or without crop residue incorporation in the soil. Among the cropping systems investigated for sustainable vegetable peanut production, peanut-only and peanut-radish-green barley cropping systems showed vulnerable to diseases and lodging while peanut-barley and peanut-garlic cropping systems showed higher stability in response to diseases and lodging, consequently leading to higher yield potential of vegetable peanut production. In the peanut-barley cropping system, both barley and peanut residues returned to the soil played an important role in soil improvement as well as in significantly increased grain yield of peanut and barley. A particular notice was taken to the pronounced increase in Trichoderma population and the amount of nitrogen mineralization induced by the returned barley residue. Soil structure, compactness, pH, and fertility were positively influenced by the returned crop residues, which apparently increased sustainability in vegetable peanut production systems.

Expression of resveratrol synthase gene and accumulation of resveratrol in transgenic potatoes (Solanum tuberosum L.)

  • Yi, Jung Yoon;Seo, Hyo Won;Yun, Song Joong;Ok, HyunChoong;Park, YoungEun;Cho, Ji Hong;Cho, HyunMook
    • Korean Journal of Breeding Science
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    • v.41 no.4
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    • pp.385-390
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    • 2009
  • A resveratrol synthase (RS) gene was isolated from peanut (Arachis hypogaea, L. cv. Jinpoong) plants. This gene was placed under the control of the cauliflower mosaic virus 35S promoter (CaMV35S) and introduced into two Korean varieties of potato (Solanum tuberosum L. cvs. Jasim and Jowon) plants by Agrobacterium-mediated gene transfer. Putative transformants were screened by PCR with primers designed from CaMV 35S promoter, NOS terminator and RS gene. Most of selected transgenic potato plants showed the amplification of expected fragments by PCR of genomic DNA with gene-specific primers, while they were absent in untransformed control plants. Expression of the resveratrol synthase gene was also examined by northern blot analysis. The transformants showed a band which was lacking in the control plant, confirming that the introduced gene is transcribed into mRNA in the transformants. The strength of the band, which reflected the level of mRNA expression, differed among the individual transformants. Among the transformants obtained, the highest trans-resveratrol content in the transgenic young leaves of purple-fleshed "Jashim" was $2.11{\mu}gg^{-1}$ fresh weight and that in the microtubers in vitro of purple fleshed "Jashim" was $8.31{\mu}gg^{-1}$ fresh weight. This amount of resveratrol may have a positive biological effect on human health.