• Title/Summary/Keyword: Peucedanum japonicum

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Characteristics of Photosynthesis and Leaf Growth of Peucedanum japonicum by Leaf Mold and Shading Level in Forest Farming (임간재배지 내 부엽토 및 차광수준에 따른 갯기름나물의 광합성과 엽생장 특성)

  • Song, Ki Seon;Jeon, Kwon Seok;Choi, Kyu Seong;Kim, Chang Hwan;Park, Yong Bae;Kim, Jong Jin
    • Korean Journal of Medicinal Crop Science
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    • v.23 no.1
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    • pp.43-48
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    • 2015
  • This study was carried out in order to investigate the photosynthesis response and leaf characteristics of Peucedanum japonicum growing in forest farming. The experiment was performed by leaf mold (pine tree and chestnut tree) and shading levels (0%, 35%, 50% and 75% shading). Light relative intensity was 100% (full sunlight), 60.3% (35% shading), 35.1% (50% shading), and 17.4% (75% shading) respectively. Light response curves of pine-leaf mold and chestnut-leaf mold were the highest in control (full sunlight) and these were getting lower in the higher shading level. Photosynthesis capacity and light saturation point were indicated higher in chestnut-leaf mold within the same shading level. As the shading level increased, maximum photosynthesis rate decreased. And apparent quantum yield was not indicated statistically significant difference from all treatment. Leaf area, leaf length and leaf width were significant higher in 35% shading and control under chestnut-leaf mold in all treatment. As the shading level increased, LAR (leaf area ratio), SLA (specific leaf area) and SPAD value decreased in pine-leaf mold and chestnut-leaf mold. As a result of surveying the whole experiment, P. japonicum is judged better growth and higher yield by maintaining 35% shading (relative light intensity 60%) under chestnut-leaf mold in forest farming.

Review on the origin of herbal name, Sik-bang-pung, for the root of Peucedanum japonicum Thunberg (갯기름나물 약재명(식방풍(植防風))의 연원에 대한 고찰)

  • Jung-Hoon Kim;Han young Kim;Eui Jeong Doh;Guemsan Lee
    • The Korea Journal of Herbology
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    • v.38 no.5
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    • pp.69-84
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    • 2023
  • Objectives : Sik-bang-pung (植防風, Peucedani Japonici Radix), the root of Peucedanum japonicum Thunberg (Apiaceae), has often been used as a substitute for Bang-pung (防風, Saposhnikoviae Radix) in the past, but recently it is treated as a counterfeit of Bang-pung or a kind of 'Jeonho (Peucedani Radix)'. Hence, it is crucial to investigate the origin of herbal name to provide appropriate usage of Sik-bang-pung. Methods : The classic and contemporary literatures regarding to the herbal medicines and botanical nomenclature were searched to find the herbal and botanical origins of Bang-pung and Sik-bang-pung, respectively. Result : The botanical descriptions of Bang-pung (防風) were consistent throughout the classic literatures and its botanical species was determined as Saposhnikovia divaricata Schischkin (Apiaceae) in the compendium. In the literatures published in the Joseon Dynasty, 'Byeong-pung-na-mul' was recorded as the medicinal plant of Bang-pung, but its botanical species could not be confirmed. In Japanese literatures, Bang-gyu (防葵) was confirmed as Mok-dan-bang-pung (牡丹防風); botan-bōfū in Japanese), which was determined as the herbal name of the root of 'Gaet-girum-namul (P. japonicum)' in Korea during the period of Japanese rule. The roots of Gaet-girum-namul was medicinally named as Mok-dan-bang-pung (牡丹防風), Sik-bang-pung (植防風), or San-bang-pung (山防風) in the past decades in Korea. Among them, Sik-bang-pung might be chosen as the herbal name, but its nominal origin could not be found. Conclusions : The herbal name, Sik-bang-pung, was presumably affected by Japanese botanical nomenclature. Although its medicinal application is still controversial, Sik-bang-pung should be considered an independent herbal medicine.

A Novel Alternaria Species Isolated from Peucedanum japonicum in Korea

  • Deng, Jian Xin;Cho, Hye Sun;Paul, Narayan Chandra;Lee, Hyang Burm;Yu, Seung Hun
    • Mycobiology
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    • v.42 no.1
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    • pp.12-16
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    • 2014
  • We isolated and examined a new Alternaria sp., which causes leaf spots on Peucedanum japonicum in Korea, by using molecular and morphological methods. Phylogenetic analysis based on a combined internal transcribed spacer region analysis and two protein-coding genes (gpd and Alt a1) demonstrated that the causal fungus was most closely related to A. cinerariae and A. sonchi, and relevant to A. brassicae. However, conidial morphology indicated that it is a novel species within the genus Alternaria, and therefore we have assigned the fungus a new name in this study.

Analysis of the Coumarin Constituents in Peucedanii Radix (식방풍중의 Coumarin성분의 확인 및 정량)

  • Shin, Kuk-Hyun;Kang, Sam-Sik;Chi, Hyung-Joon
    • Korean Journal of Pharmacognosy
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    • v.23 no.1
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    • pp.20-23
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    • 1992
  • A new method for the analysis of coumarin constituents in the roots of Peucedanum japonicum by high performance liquid chromatography was established. Among two coumarin constituents identified, peucedanol was confirmed to be applicable to a standard compound. A reversed phase system with a ${\mu}Bondapak$ C_{18}$, column using $H_2O-MeOH=5\;:\;4$ as a moble phase was developed. Peucedanol and a minor constituent, umbelliferone were detected at 333nm and the analysis was successfully carried out within 20 min.

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Analysis of Essential Oil from Perennial Herbaceous Plants (다년생 초본류의 향기성분 분석)

  • Chung, Ha-Sook;Park, Jun-Yeon;Ahn, Young-Hee;Lee, Sang-Hyun;Shin, Kuk-Hyun
    • Korean Journal of Medicinal Crop Science
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    • v.17 no.3
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    • pp.179-186
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    • 2009
  • The chemical composition of essential oil from the perennial herbaceous plants (Houttuynia cordata, Filipendula glaberrima, Peucedanum japonicum, and Ainsliaea acerifolia) was determined by GC/MS spectrometric analysis with the aid of NBS, Wiley Library and RI indice searches. The major constituents identified were $\alpha$-phellandrene (18.97%), $\gamma$-terpinene (12.32%), decanal (8.72%), 1-decanol (10.92%), decanoic acid (12.12%), and 2-undecanone (12.32%) from H. cordata, farnesol (2.83%), l-$\alpha$-terpineol (2.72%), benzenmethanol (2.03%), (Z)-3-hexen-1-ol (4.32%), and T-muurolol (2.07%) from F. glaberrima, $\alpha$-phellandrene (14.25%), endobornyl acetate (3.84%), heptanal (47.52%), octanal (2.65%), (E,E)-2,4-decadienal (2.75%), and octanoic acid (4.52%) from P. japonicum, and geyrene (9.74%), $\beta$-cubebene (11.15%), berkheyaradulen (22.32%), $\beta$-elemene (6.21%), (-)-A-selinene (4.85%), benzaldehyde (4.52%), and benzenacetaldehyde (3.40%) from A. acerifolia.

Inhibition of Nitric Oxide Production by Coumarins from Peucedanum japonicum in LPS-Activated RAW 264.7 cells (갯기름나물의 쿠마린에 의한 RAW 264.7 세포주의 Nitric Oxide 생성 저해활성)

  • Choi, Hee-Cheol;Rho, Tae-Cheol;Kim, Bo-Yeon;Ko, Hack-Ryong;Oh, Won-Keun;Seong, Chang-Keun;Mheen, Tae-Ick;Ahn, Jong-Seog;Lee, Hyun-Sun
    • Korean Journal of Pharmacognosy
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    • v.30 no.2
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    • pp.99-104
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    • 1999
  • During the screening for inhibitors of nitric oxide production in LPS-activated macrophage, RAW 264.7 cells. Five coumarins were isolated from chloroform extract of the root of Peucedanum japonicum. They were identified as praeruptorin A (1), xanthotoxin (2), psoralen (3), isopimpinellin (4), bergapten (5) on the basis of spectroscopic methods. The $IC_{50}$ values for nitrite production by activated macrophages were about $1.5\;{\mu}g/ml$ (1), $0.3\;{\mu}g/ml$ (2), $1.0\;{\mu}g/ml$ (3), $25\;{\mu}g/ml$ (4), $25\;{\mu}g/ml$ (5), respectively. However, the inducible nitric oxide synthase (iNOS) was not inhibited by treatment with these compounds. Their inhibitory effect on nitric oxide production was resulted from the supperssion of iNOS expression.

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Effects of 3'-isovaleryl-4'-senecioylkhellactone from Peucedanum japonicum Thunberg on PMA-Stimulated Inflammatory Response in A549 Human Lung Epithelial Cells

  • Hwang, Daseul;Ryu, Hyung Won;Park, Ji-Won;Kim, Jung-Hee;Kim, Doo-Young;Oh, Jae-Hoon;Kwon, Ok-Kyoung;Han, Sang-Bae;Ahn, Kyung-Seop
    • Journal of Microbiology and Biotechnology
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    • v.32 no.1
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    • pp.81-90
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    • 2022
  • Peucedanum japonicum Thunberg (PJT) has been used in traditional medicine to treat colds, coughs, fevers, and other inflammatory diseases. The goal of this study was to investigate whether 3'-isovaleryl-4'-senecioylkhellactone (IVSK) from PJT has anti-inflammatory effects on lung epithelial cells. The anti-inflammatory effects of IVSK were evaluated using phorbol 12-myristate 13-acetate (PMA)-stimulated A549 cells and regular human lung epithelial cells as a reference. IVSK reduced the secretion of the inflammatory mediators interleukin (IL)-8 and monocyte chemoattractant protein-1 (MCP-1), and the mRNA expression of IL-6, IL-8, MCP-1, and IL-1β. Additionally, it inhibited the phosphorylation of IκB kinase (IKK), p65, Iκ-Bα, and mitogen-activated protein kinases (MAPKs) p38, JNK, and ERK in A549 cells stimulated with PMA. Moreover, the binding affinity of activator protein-1 (AP-1) and nuclear factor-κB (NF-κB) was significantly reduced in the luciferase assay, while nuclear translocation was markedly inhibited by IVSK in the immunocytochemistry. These findings indicate that IVSK can protect against inflammation through the AP-1 and NF-κB pathway and could possibly be used as a lead compound for the treatment of inflammatory lung diseases.

Characteristics of Growth and Photosynthesis of Peucedanum japonicum by Shading and Leaf Mold Treatment in Forest Farming (임간재배 시 차광과 부엽토 처리에 따른 갯기름나물의 생장 및 광합성 특성)

  • Song, Ki Seon;Jeon, Kwon Seok;Choi, Kyu Seong;Kim, Chang Hwan;Park, Yong Bae;Kim, Jong Jin
    • Journal of Korean Society of Forest Science
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    • v.105 no.1
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    • pp.78-85
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    • 2016
  • This study was carried out to determine the effects of shading and leaf mold treatment on growth characteristics and photosynthesis responses of Peucedanum japonicum in forest farming. It is very valuable as a sort of health food, so that the demand for the vegetable has increased recently. The experiment can not only increase the yield but also contribute to the development of eco-friendly technology for high-quality P. japonicum. It was performed by shading treatments (full sunlight, 35%, 50% and 75% shading) and leaf mold treatments (control, pine tree and chestnut tree). Height, stem diameter, root collar diameter, number of stem and dry weight were the highest in chestnut-leaf mold under full sunlight. Leaf area, leaf length and leaf width were the highest in chestnut-leaf mold under 35% shading. Photosynthetic rate, conductance to $H_2O$, transpiration rate and water use efficiency were the highest in chestnut-leaf mold under full sunlight. Specially, photosynthetic rate was higher under chestnut-leaf mold in all shading treatment, and getting lower in the higher shading rate. As a result of surveying the whole experiment, it is concluded that P. japonicum grows nicely by maintaining 35% shading under chestnutleaf mold in forest farming. Thus, it is the most effective way to increase the yield for high-quality P. japonicum with eco-friendly technology.

Effect of Vinyl Mulching on Growth and Yield of Peucedanum japonicum $T_{HUNB}$ (비닐피복이 식방풍의 생육과 수량에 미치는 영향)

  • Kim, Jae-Chul;Kim, Jeong-Hye;Park, So-Deuk;Choi, Boo-Sull
    • Korean Journal of Medicinal Crop Science
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    • v.9 no.4
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    • pp.284-289
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    • 2001
  • This study was carried out to know the effect of mulching on growth and yield of Peucedanum japonicum. Time from sowing to germination was 8day at raising seedling(RS) and 40day at direct sowing(DS). The order of goodness in top part growth as follows : RS+white vinyl mulching (WVM), RS+black vinyl mulching (BVM), RS+no mulching(NM) and DS+NM. Tap root length at RS + NM was significantly shorter than those at the others. Tap root at the others was about same length. Tap root diameter was significantly larger at vinyl mulching than at no mulching and the thinnest at DS+NM. The number of supporting root at RS was more than DS as much as $4.7{\sim}7.1$. Rate of dried root weight to fresh weight was highest(30.5%) at DS+ NM and low at vinyl mulching. Dried root yield per 10a was 542kg at RS+WVM, 506kg at RS+BVM, 419kg at RS+NM and 357kg at DS. These results suggested that raising seedling and white vinyl mulching was good for culture of Peucedanum japonicum.

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