• 제목/요약/키워드: Aerial roots

검색결과 77건 처리시간 0.027초

근부환경(根部環境)에 따른 수도(水稻)의 영양생리적(營養生理的) 반응(反應)에 관(關)한 연구(硏究) (Studies on Nutrio-physiological Response of Rice Plant to Root Environment)

  • 박준규;김영섭;오왕근;박훈;시택문웅
    • 한국토양비료학회지
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    • 제2권1호
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    • pp.53-68
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    • 1969
  • 생산력이 서로 다른 두 토양(土壤)에 유기물(有機物)을 첨가(添加)하여 근부(根部) 환경(環境)의 변화(變化)와 수도품종별(水稻品種別) 근(根)의 근부(根部) 환경(環境)에 대(對)한 반응(反應)을 육안(肉眼) 관찰(觀察)하고 양분흡수(養分吸收)를 조사(調査)하여 다음과 같은 결과(結果)를 얻었다. 1) 고위답토양(高位畓土壤)은 유기물(有機物)의 분해(分解)가 완만(緩慢)하며 분해평형점(分解平衡點)에서의 유기물(有機物) 함량(含量)이 높고 저위답토양(低位畓土壤)은 유기물(有機物)의 분해(分解)가 급속(急速)하며 분해평형점(分解平衡點)에 함량(含量)이 낮다. 2) 저위답토양(低位畓土壤)은 근(根)의 발육(發育)이 조해(阻害)되며 유기물(有機物) 첨가(添加)에 의(依)하여 더욱 조해(阻害)된다. 유기물(有機物)의 분해(分解)로 생기는 gas가 근(根) 주변(周邊)에 피막(被膜)을 형성(形成)하는데 기인(起因)하는것 같으며 이 결과(結果)로 T/R 값이 심히 떨어진다. 3) 품종간(品種間) 근부(根部) 환경(環境)에 반응력(反應力)이 현저하여 수원(水原) 82호(號)는 농림(農林) 25호(號) 보다 고위답(高位畓) 토양(土壤)에서는 흡수력(吸收力)이 강(强)하고 저위답토양(低位畓土壤)에서는 흡수력(吸收力)이 떨어진다. 4) 유기물(有機物) 첨가(添加)로 가리흡수(加里吸收)가 조해(阻害)되고 저위답토양(低位畓土壤)에서는 인산흡수(燐酸吸收)가 가장 조해(阻害)되는데 저위답토양(低位畓土壤)에 유기물(有機物)을 첨가(添加)하여 이 두 인자(因子)가 공역(共役)할 경우 양분흡수조해(養分吸收阻害)는 상승적(相乘的)으로 야기(惹起)된다. 5) 근(根)의 활력(活力)과 근수(根數), 지상부(地上部) 생육량(生育量) 및 근부생육량(根部生育量)과의 상관(相關)은 각각(各各) r=0.839, r=0.834, r=0.948로 모두 1%에서 유의성(有意性)이 있고 지상부(地上部)와 근부(根部)의 N.P.K. 흡수량(吸收量)과도 각각(各各), r=0.751, r=0.670, r=0.769, r=0.729, r=0.742, r=0.815로 5% 수준(水準)에서 유의성(有意性)이 있으며 근부(根部)의 생육량(生育量) 및 가리(加里)의 흡수량(吸收量)과의 상관계수(相關係數)가 가장 크다. 6) 근부환경(根部環境)이 나쁜곳에서는 좋은 곳에서보다 수도지상부(水稻地上部)의 질소농도(窒素濃度)는 낮고 근부(根部)는 훨씬 높아서 ammonia 과잉(過剩)의 해독(害毒)이 예상되며 인산(燐酸)과 가리(加里)는 양부위(兩部位)에서 모두 심히 낮으며 특히 간(稈)과 엽초(葉稍)에서 더욱 낮았다. 7) 근부환경(根部環境)이 나쁜 곳에서는 좋은곳에서보다 지상부(地上部)의 당(糖)과 전분(澱粉) 및 전탄수화물(全炭水化物) 함량(含量)이 높은데 반(反)하여 근부(根部)에서는 낮은데 환원당(還元糖)에서 더욱 심하여 근부(根部)에서는 당(糖)의 이상소모(異常消耗)가 예상되고 지상부(地上部)에서는 이에 대비하여 당(糖) 대사(代謝)가 해당방향(解糖方向)으로 주력(注力)함이 예상된다. 8) 근부환경(根部環境)이 나쁜곳에서는 근부(根部)에서 지상부(地上部)로 양분(養分)의 전류(轉流)가 극히 나빴다. 9) 근부환경(根部環境)이 나쁜곳에서는 황산(黃酸)의 함유율(含有率)이 높은데 엽신(葉身)에서 특히 높아 황산(黃酸) Ion에 의(依)한 ATP 생성(生成) 조해(阻害)가 예상되고 $P_2O_5/S$ 값은 고위답(高位畓) 유기물무시용구(有機物無施用區)의 1/5에 불과(不過)하여 P-S 비(比)가 관련된것 같다. 10) 근부환경(根部環境)이 나쁜곳에서는 지상부(地上部) 철(鐵)의 함량(含量)에는 차이(差異)가 없으나 Mn 함량(含量)은 상당히 적은 편이어서 $Fe/P_2O_5$ 값이 큰데 간(稈)과 엽초(葉稍)에서 7배(倍)나 되어 철인산(鐵燐酸) 침전에 의(依)한 통도(通導)의 기계적(機械的) 장해(障害)가 예상된다. 11) 토양중(土壤中) 조해성(阻害性) 인자(因子)는 유기물(有機物) 분해속도(分解速度)가 빠른 경우 악화(惡化)되어 근부기능기(根部機能基)를 조해(阻害)하여 양분(養分)을 조지(阻止)하고 체내(體內) Ion 평형(平衡)(N. P. K. S. Fe)을 교란(攪亂) 이상대사(異常代謝)(해당작용(解糖作用) A. T. P 생성약화(生成弱化))를 일으켜 전류(轉流)가 방해(防害)되고 따라서 각부위(各部位)의 생육(生育)의 불균형(不均衡)을 초래(招來)하는 연발생(連發生) 조해작용(阻害作用)이 순환가속(順換加速)하는 것으로 추정(推定)된다. 12) 고위답(高位畓)에서 질소(窒素)의 시용량(施用量)에 따른 근분포(根分布)를 조사(調査)한 결과(結果) 저위답(低位畓)은 표토부분(表土部分)에 분포(分布)하나 고위답(高位畓)에서는 심토(心土)에 분포비율(分布比率)이 많다. 질소(窒素) 무시용(無施用)은 지하(地下) 0~7cm 부위(部位)에 분포(分布) 비율(比率)이 크고 질소(窒素)를 시용(施用)하면 7~14cm 부위(部位)에 근분포(根分布) 비율(比率)이 많다. 전(全) 근중(根重)은 저위답(低位畓)에 비(比)하여 고위답(高位畓)에 많고 질소(窒素) 무시용(無施用)에 비(比)해서 질소(窒素) 10a 12kg 시용(施用)에서 많았다.

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Effects of Natural Products on the Induction of NAD(P)H: Quinone Reductase in Hepa 1c1c7 Cells for the Development of Cancer Chemopreventive Agents

  • Kim, Young-Mi;Chang, Il-Moo;Mar, Woong-Chon
    • Natural Product Sciences
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    • 제3권2호
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    • pp.81-88
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    • 1997
  • NAD(P)H:quinone reductase (QR) is one of the protective phase II enzymes against toxicity that accomplishes the capacity of detoxification by modulating the effects of mutagens and carcinogens. The detoxification mechanism is that quinone reductase promotes the 2-electron reduction of quinones to hydroquinones which are less reactive. This study is to search new inducers of quinone reductase from natural products, which can be used as cancer chemopreventive agents. Plant extracts were evaluated by using quinone reductase generating system With Hepa 1c1c7 murine hepatoma cell lines for enzyme inducing properties and crystal violet staining method for the measurement of cytotoxicity provoked. We have tested approximately 106 kinds of natural products after partition into n-hexane, ethyl acetate and aqueous layers from 100% methanol extracts of natural products. The ethyl acetate fractions of Vitex rotundifolia $(fruits,\;2FC:\;12.7\;{\mu}g/ml)$, Cnidium officinale $(aerial\;parts,\;2FC:\;10.5\;{\mu}g/ml)$, Chrysanthemum sinese $(flowers,\;2FC:\;17.4{\mu}g/ml)$ and the hexane fractions of Angelica gigas $(roots,\;2FC:\;13.2\;{\mu}g/ml)$, Smilax china $(roots,\;2FC:\;l1.9\;{\mu}g/ml)$, Sophora flavescens $(roots,\;2FC:\;16.3\;{\mu}g/ml)$ revealed the significant induction of quinone reductase in a murine hepatic Hepa 1c1c7 cell culture system.

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Movement of Rhizobia Inside Tobacco and Lifestyle Alternation from Endophytes to Free-Living Rhizobia on Leaves

  • Ji, Kui-Xian;Chi, Feng;Yang, Ming-Feng;Shen, Shi-Hua;Jing, Yu-Xiang;Dazzo, Frank B.;Cheng, Hai-Ping
    • Journal of Microbiology and Biotechnology
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    • 제20권2호
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    • pp.238-244
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    • 2010
  • Rhizobia are well-known for their ability to infect and nodulate legume roots, forming a nitrogen-fixing symbiosis of agricultural importance. In addition, recent studies have shown that rhizobia can colonize roots and aerial plant tissues of rice as a model plant of the Graminaceae family. Here we show that rhizobia can invade tobacco, a model plant belonging to the Solanaceae family. Inoculation of seedling. roots with five GFP-tagged rhizobial species followed by microscopy and viable plating analyses indicated their colonization of the surface and interior of the whole vegetative plant. Blockage of ascending epiphytic migration by coating the hypocotyls with Vaseline showed that the endophytic rhizobia can exit the leaf interior through stomata and colonize the external phyllosphere habitat. These studies indicate rhizobia can colonize both below- and above-ground tissues of tobacco using a dynamic invasion process that involves both epiphytic and endophytic lifestyles.

고려인삼, 미국삼 및 죽절삼의 생육 및 형태적 특성 비교 (Comparison of Plant Growth and Morphological Characteristics Among the Korean Ginseng, the American Ginseng and the Bamboo Ginseng)

  • 정열영;이명구
    • Journal of Ginseng Research
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    • 제22권2호
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    • pp.147-153
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    • 1998
  • An investigation was conducted to ascertain the basic information on characteristics of growth and morphological characters among the Korean (Panax. ginseng), the American (Panax. quinquefolium) and the Bamboo (Panax. japonicus) ginseng. In aerial parts growth of the ginseng species by age, The Korean ginseng and American ginseng's stem and leaf growth was alike in 2-4 years old, but growth cycle changed in 6 years old. The Korean ginseng was more vigorous than the American ginseng. The Korean ginseng roots were highly observed in ratio of red skin roots among three species, whereas The American ginseng roots were highly infected by root rot. It seems to be variable depending on growing stage and species. The Korean ginseng flowered about the middle of May, the American ginseng early June, and the Bamboo ginseng was late of May, The berry color of the ginseng species was observed, The Korean and American ginseng's mature berry color was red, The Bamboo ginseng's berry was three type of color and shape. In root characteristics of the seedling, Korean (p. ginseng), American (p. quinquefolium) ginseng's root shape was similarity in type, the bamboo ginseng showed different type, which root length and root weight was smaller than those of ginseng. In morphological characters of Leaf surface, pollen, and stoma, the Korean ginseng and American ginseng had crystal rosette on epidermis cell, but the Bamboo ginseng didn't has crystal rosette. Pollen shape observed tricolpate pollen and size was media type among the ginseng species, and also guard cell was anomocytic type, which were observed by scanning electronic microscope.

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THE ECOLOGY, PHYTOGEOGRAPHY AND ETHNOBOTANY OF GINSENG

  • Hu Shiu Ying
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1978년도 학술대회지
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    • pp.149-157
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    • 1978
  • Ginseng is the English common name for the species in the genus Panax. This article gives a broad botanical review including the morphological characteristics, ecological amplitude, and the ethnobotanical aspect of the genus Panax. The species of Panax are adapted for life in rich loose soil of partially shaded forest floor with the deciduous trees such as linden, oak, maple, ash, alder, birch, beech, hickory, etc. forming the canopy. Like their associated trees, all ginsengs are deciduous. They require annual climatic changes, plenty of water in summer, and a period of dormancy in winter. The plant body of ginseng consists of an underground rhizome and an aerial shoot. The rhizome has a terminal bud, prominent leafscars and a fleshy root in some species. It is perennial. The aerial shoot is herbaceous and annual. It consists of a single slender stem with a whorl of digitately compound leaves and a terminal umbel bearing fleshy red fruits after flowering. The yearly cycle of death and renascence of the aerial shoot is a natural phenomenon in ginseng. The species of Panax occur in eastern North America and eastern Asia, including the eastern portion of the Himalayan region. Such a bicentric generic distributional pattern indicates a close floristic relationship of the eastern sides of two great continental masses in the northern hemisphere. It is well documented that genera with this type of disjunct distribution are of great antiquity. Many of them have fossil remains in Tertiary deposits. In this respect, the species of Panax may be regarded as living fossils. The distribution of the species, and the center of morphological diversification are explained with maps and other illustrations. Chemical constituents confirm the conclusion derived from morphological characters that eastern Asia is the center of species concentration of Panax. In eastern North America two species occur between longitude $70^{\circ}-97^{\circ}$ Wand latitude $34^{\circ}-47^{\circ}$ N. In eastern Asia the range of the genus extends from longitude $85^{\circ}$ E in Nepal to $140^{\circ}$ E in Japan, and from latitude $22^{\circ}$ N in the hills of Tonkin of North Vietnam to $48^{\circ}$ N in eastern Siberia. The species in eastern North America all have fleshy roots, and many of the species in eastern Asia have creeping stolons with enlarged nodes or stout horizontal rhizomes as storage organs in place of fleshy roots. People living in close harmony with nature in the homeland of various species of Panax have used the stout rhizomes or the fleshy roots of different wild forms of ginseng for medicine since time immemorial. Those who live in the center morphological diversity are specific both in the application of names for the identification of species in their communication and in the use of different roots as remedies to relieve pain, to cure diseases, or to correct physiological disorders. Now, natural resources of wild plants with medicinal virtue are extremely limited. In order to meet the market demand, three species have been intensively cultivated in limited areas. These species are American ginseng (P. quinquefolius) in northeastern United States, ginseng (P. ginseng) in northeastern Asia, particularly in Korea, and Sanchi (P. wangianus) in southwestern China, especially in Yunnan. At present hybridization and selection for better quality, higher yield, and more effective chemical contents have not received due attention in ginseng culture. Proper steps in this direction should be taken immediately, so that our generation may create a richer legacy to hand down to the future. Meanwhile, all wild plants of all species in all lands should be declared as endangered taxa, and they should be protected from further uprooting so that a. fuller gene pool may be conserved for the. genus Panax.

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털부처꽃의 부위별 성분 분석 (Analysis of Components in the Different Parts of Lythrum salicaria L.)

  • 김희영;박예진;이주연;김기영;신수;최민우;홍은진;김민정;여수정;박인화;정의민;안효진;차윤엽
    • 대한본초학회지
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    • 제37권5호
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    • pp.89-96
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    • 2022
  • Objectives : This research was performed to analyze the components in the different parts of Lythrum salicaria L. and to compare which parts of L. salicaria L. are appropriate for food development. Methods : L. salicaria L. was extracted in 20% EtOH at 100 ℃ for 4 hours. Cytotoxicity was investigated in 3T3-L1 cells after treatment of 10-500 ㎍/ml L. salicaria L. for 24 hours. Total polyphenol content (TPC) was estimated using 1 N Folin-ciocateu reagent. 2,2-Diphenyl-1-picryhydrazyl (DPPH) radical scavenging activity was estimated using DPPH reagent and gallic acid. The chemical composition was analyzed by high-performance liquid chromatography (HPLC). 1) Results : The half maximal inhibitory concentration (IC50) in the extracts of the whole plant, aerial parts, and root parts was 350 ㎍/ml, over 500 ㎍/ml, and 150 ㎍/ml, respectively. The TPC in the extracts of the whole plant, aerial parts, and root parts was 527.1 mg/g, 422.6 mg/g, and 781.1 mg/g, respectively. The averages of vitexin contents in the aerial parts, and root parts were 256.7 ± 154.9 ㎍/g and 266.1 ± 63.2 ㎍/g, respectively. The averages of TPC in the leaves, roots, flower stalks and stems were 224.0 ± 53.7 tannin acid (TA) mg/g, 221.8 ± 70.2 TA mg/g, 249.8 ± 34.4 TA mg/g, and 67.7±8.9 TA mg/g, respectively. The averages of DPPH radical scavenging activity in the leaves, roots, flower stalks, and stems were 282.01 ± 43.3 gallic acid equivalent (GAE) 𝜇mole/g, 260.16 ± 44.1 GAE 𝜇mole/g, 288.0 ± 9.3 GAE 𝜇mole/g, and 97.6 ± 10.7 GAE 𝜇mole/g, respectively. Conclusions : There were no significant differences in the content of components or antioxidant activity in the aerial parts compared to those in the whole plant of L. salicaria L. Furthermore, the root parts had low extract yield, cytotoxicity, and quality control problems, therefore our results suggest that the use of the aerial part of L. salicaria L. would be the most appropriate for food development.

Evaluation of some indigenous plant extracts for antiimplantation activity in albino rats

  • Pateel, Mallikarjun;Sharanabasappa, Sharanabasappa;Malashetty, Viajykumar B;Patil, Saraswati B;A, Veeranagoud
    • Advances in Traditional Medicine
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    • 제5권4호
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    • pp.347-351
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    • 2005
  • In the present investigation twelve indigenous medicinal plants have been screened for their antiimplantation activity in albino rats. The plant material was subjected for soxhlation successively and separately from non-polar solvents to polar solvents i.e., petroleum ether benzene and ethanol. Out of these three extracts the petroleum ether extract of seeds of Citrus medica, aerial part of Oxalis corniculata and Tinospora cardifolia have showed maximum antiimplantation activity. Ethanol extract of leaves of Cardiospermum helicacabum, roots of Echinops echinatus, leaves of Melia azedarach, seeds of Momordica charantia and bark of Terminalia bellirica have shown maximum antiimplantation activity amongst the three extracts of each plant material screened. Though all the three extracts of seeds of Annona squamosa and leaves of Zizyphus jujube screened for antiimplantation activity, no extract has showed any loss in implantation. The details of the results obtained are discussed.

Structural Characteristics of the Putative Protein Encoded by Arabidopsis AtMTN3 Gene

  • Cheong, Jong-Joo;Kwon, Hawk-Bin;Kim, Minkyun
    • Journal of Applied Biological Chemistry
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    • 제44권3호
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    • pp.125-130
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    • 2001
  • A putative protein encoded by Arabidopsis AtMTN3 gene, a homologue of Medicago truncatula MTN3, consists of 285 amino acid residues, and has a predicted molecular mass of 31.5 kDa and a calculated pI of 9.1. Primary amino acid sequence analyses have revealed that the protein contains seven putative transmembrane regions with N-terminus oriented to the outside of the membrane. The AtMTN3 protein shows overall 16.4% of amino acid identity with the rat GALR3 protein, known to be a G-protein-coupled receptor. The gene is present as a single copy in the Arabidopsis genome, and expressed in aerial parts but not in roots of Arabidopsis. Therefore, AtMTN3 appears not to be specifically involved in Rhizobium-induced nodule development, as was predicted for the MTN3 gene. These proteins possibly mediate signal transmission through G-protein-coupled pathways during general interactions between plants and symbiotic or pathogenic microbes.

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Components of Nutraceutical Value in Physalis minima

  • Misra, L.N.;Lal, P.;Kumar, D.
    • Preventive Nutrition and Food Science
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    • 제11권1호
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    • pp.25-30
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    • 2006
  • It is of utmost importance to feed the current world population by improving agricultural production with newer varieties of food crops, but what is still more important is to add nutrition into the food. Some of the plants, which are currently growing in the wastelands, contain certain phytochemicals which add to their neutraceutical and health value. These plants contain secondary metabolites which enhance the over all metabolic functions of the body. Withasteroids are one of such phytochemicals. These chemicals are almost exclusively found in plants of the Solanaceae family; one of which, Physalis minima, contains several with asteroids. The aerial parts and roots of P. minima have been found to contain several steroids, identification of which is been discussed in this paper. These with asteroids contribute to the functional value since incorporation of withanolides in the diet may prevent or decrease the growth of tumors in humans.

고려인삼 신품종 특성 (Characteristics of New Cultivars in Panax ginseng C.A. Meyer)

  • 이성식;이장호;안인옥
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 2005년도 창립30주년기념 추계 학술대회 및 정기총회
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    • pp.3-18
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    • 2005
  • 고려인삼 8개 신품종의 특성을 요약하면 아래와 같다. 1) 다경발생율이 연풍은 45%로 가장 높았고, 금품은 7%로 가장 낮았으나, 지상부생육은 금품이 가장 양호 하였고, 연풍이 가장 낮았다. 2) 종자결실율은 금품이 85.4%로 가장 높았으며, 천풍이 69.1%로 가장낮았다. 종자수확량은 연풍이 108.3개로 가장많았고, 천풍이 77.5개로 가장 적었다. 3) 엽소발생율은 천풍이 타품종보다 각년생에서 높았으나 연풍은 다소 낮았다. 4) 뿌리 부위별 무게분포비율에서 동체의 비율이 천풍 등 5품종은 49%-55.9%로 자경재래종 63,1%보다 낮았으나, 지근의 비율은 5개 신품종이 19,3%-23.3%로 자경재래종 13.2% 보다 높았고, 세근은 차이가 없었다. 5) 수량은 연풍>금풍>고풍>천풍=선풍>자경재래증 순으로 연풍이 가장 높았고,동장은 천풍이 8.0cm로 가장 길었으나 연풍이 6.4cm로 가장 짧았다. 적변삼 발생율은 신품종이 0.2-9,5%로 자경재래종 16.3%보다 현저히 낮았다. 6) 천삼의 생출율은 천풍>금풍>고풍>선풍>연풍>청선>자경재래종의 순서로 천풍이 높았으며, 천지삼의 생출율도 같은 경향이었다. 7) 품종별 동체의 단위무게 당 total ginsenosides 함량은 금풍 8.53mg, 연풍8.13mg, 고풍7.47mg로 높았으나, 천풍과 선풍은 각각 5.73mg과 4.87mg로 다소낮았다.

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