• Title/Summary/Keyword: 흡수 이행

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Differential Absorption and Translocation of Oxyfluorfen Between Selected Rice Cultivars (Oxyfluorfen 처리(處理)에 따른 내성선발(耐性選拔) 수도품종(水稻品種)의 흡수(吸收) 및 이행(移行) 차이(差異))

  • Guh, J.O.;Ishizuka, K.;Pyon, J.Y.
    • Korean Journal of Weed Science
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    • v.8 no.1
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    • pp.37-44
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    • 1988
  • A serial study on differential response in absorption and translocation of $^{14}C$-oxyfluorfen was conducted by use of a group of selected rice cultivars as the tolerant or the susceptible to oxyfluorfen. Trial 1. Differential response in absorption and translocation of selected cultivar group. The susceptible cultivar group has reached as higher rate as 209%, 193%, 344%, 204% and 152% of the tolerant cultivar group in root absorption rate per unit dry weight, lower-shoot absorption rate, higher shoot absorption rate, whole amount of absorption, and the rate of translocation from bottom to shoot, respectively. Trial 2. Differential Response in Absorbtion and translocation of selected cultivar as affected by exposed portion and time. ${\bullet}$ Regardless of cultivar, the rate of root absorption has effectively realized but the translocation was significantly limited. ${\bullet}$ Lower portion of shoot has also achieved a higher amount of absorption but the translocation was very limited. ${\bullet}$ By relaying the exposure time. the amount of root absorption was ted increasing, and persistent absorption was rather effective in the susceptible (cv. Mushakdanti) cultivar than the tolerant (cv. Chokoto). ${\bullet}$ Translocation of oxyfluorfen from shoot to root was tended to easily attaining in both cultivars.

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Absorption, Translocation and Metabolism of Bensulfuron in Rice and Weeds at Different Temperatures (벼와 잡초에서 온도조건(溫度條件)에 따른 Bensulfuron의 흡수(吸收), 이행(移行) 및 대사(代謝))

  • Kang, T.G.;Pyon, J.Y.
    • Korean Journal of Weed Science
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    • v.15 no.4
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    • pp.321-328
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    • 1995
  • Absorption, translocation, and metabolism study of $^{14}C$-bensulfuron were conducted to determine selectivity and herbicidal action of bensulfuron in two rice cultivars and three paddy weeds at different temperatures. 1. Absorption of $^{14}C$-bensulfuron was greater at 30/$25^{\circ}C$ than at 25/$20^{\circ}C$ and also in cv. Sangpung than in cv. Samgang, and Cyperus serotinus and Sagittaria pygmaea showed greater amount of absorption than Echinochloa crus-galli. 2. Translocation rate of bensulfuron was higher at 30/$25^{\circ}C$ than at 25/$20^{\circ}C$ and also in cv. Sangpung than in cv. Samgang, and C. serotinus showed highest translocation rate followed by the S. pygmaea and E. crus-galli. 3. In metabolism study, concentration of parent compound in rice plants was greater in cv. Sangpung which was susceptible to bensulfuron than in cv. Samgang. More amount of parent compound was distributed in shoots and root of C. serotinus and S. pygmaea than E. crus-galli. 4. It may suggested that sensitivity to bensulfuron between rice cultivars may be due to different inactivation metabolic ability and phytotoxicity of rice increased at high temperature since higher amount of bensulfuron was absorbed. Higher herbicidal activity of bensulfuron may caused by higher absorption and translocation in three weed species at high temperature.

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Effect of Mineral Nutrients and Mixed Herbicides on the Absorption and Translocation of Bensulfuron-methyl in Rice (벼에 있어서 bensulfuron-methyl의 흡수(吸收) 이행(移行)에 미치는 무기영양분(無機營養分)과 혼합제초제(混合除草劑)의 영향(影響))

  • Chun, Jae-Chul;Han, Kang-Wan
    • Korean Journal of Environmental Agriculture
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    • v.13 no.1
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    • pp.60-65
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    • 1994
  • Absorption and translocation of bensulfuron-methyl {methyl 2[[[[[(4,6-dimethoxy-2-pyrimidinyl) amino]carbonyl]amino]sulfonyl]methyl]benzoate} in rice (Oryza sativa L.) as affected by mineral nutrients and mixed herbicides were determined using the $^{14}C-labeled$ herbicide in culture solution. Absorption of $^{14}C-bensulfuron-methyl$ by the root decreased with increasing concentration of bensulfuron-methyl. However, increase in the application concentration did not affect movement of the $^{14}C$ to the shoot. There was no difference in total amount of $^{14}C-bensulfuron-methyl$ taken up between absorption periods of 12 and 48 hours, whereas $^{14}C-bensulfuron-methyl$ translocated to the shoot increased with increasing the absorption period. When bensulfuron-methyl mixtures were applied, butachlor [N-(butoxymethyl)-2-chloro-N-(2',6'-diethylphenyl)acetamide] did not affect absorption and translocation of $^{14}C-bensulfuron-methyl$. However, quinclorac (3,7-dichloro-8-quinoline carboxylic acid) mixed at a high concentration resulted in decrease in absorption and translocation of $^{14}C-bensulfuron-methyl$. Nutritional disorder such as deficient or excess supply of mineral nutrients caused to inhibit absorption of $^{14}C-bensulfuron-methyl$. The greatest decrease and delay of $^{14}C-bensulfuron-methyl$ absorption and/or translocation occurred in N-deficient and S-excess supply conditions.

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Differential Absorption and Translocation of Bensulfuron-methyl Between Selected Rice Cultivars (Bensulfuron-methyl 처리(處理)에 따른 내성선발(耐性選拔) 수도품종(水稻品種)의 흡수(吸收) 및 이행차이(移行差異))

  • Guh, J.O.;Pyon, J.Y.;Ishizuka, K.
    • Korean Journal of Weed Science
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    • v.8 no.1
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    • pp.45-52
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    • 1988
  • A serial study on differential response in absorption and translocation of $^{14}C$-bensulfuron-methyl was conducted by use of a group of selected rice cultivars as the tolerant or the susceptible to bensulfuron-methly. Trial 1. Differential Response in Absorption and Translocation of Selected Cultivar Group. The susceptible cultivar group has reached as higher rate as 102%, 113%, 115%, 127% and 113% of the tolerant cultivar group in root absorption per seedling, per unit dry weight, and the rate of translocation from bottom to shoot, respectively. Trial 2. Differential Response in Absorption and Translocation of Selected Rice Cultivar as Affected by Exposed Time of Root Portion upto 48 hrs. ${\bullet}$ Regardless of leaf stage of experimented plants, the amount of absorption per seedling and per unit dry weight has reached rather higher in the susceptible(cv. IR 1846) than the tolerant (cv. Chinsurah Boro II). However, separating by portions, the tolerant was realized higher rate of aborption in root but the susceptible in shoot, respectively. ${\bullet}$ Translocation rate from root to shoot, namely the individual seedling based rate of radioactivity in shoot to total radioactivity, was significantly higher in the susceptile than the tolerant. ${\bullet}$ Depending on higher rate of seedling growth at the time of chemical treatment, the susceptible (cv. IR 1846) was seemed more sensitive even at equivalent rate of absorption and translocation.

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Absorption and Translocation of Dithiopyr and its Mechanism of Selectivity in Rice and Barnyardgrass (벼와 피에서 Dithiopyr의 흡수(吸收) 및 이행(移行)과 선택성(選擇性) 기작(機作))

  • Pyon, J.Y.;Kang, K.S.;Ryang, H.S.
    • Korean Journal of Weed Science
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    • v.14 no.1
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    • pp.23-27
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    • 1994
  • Nutrient culture study was initiated to examine the selectivity of dithiopyr(S, S-dimethyl 2-difluoromethyl)-4-(2-methylpropyl)-6-(trifluoro methyl)-3, 5-pyridine dicarbothiate) in rice(Oryza sativa L.) and barnyardgrass(Echinochloa crusgalli Beauv.). Absorption and translocation of $^{14}C$-dithiopyr in rice and barnyardgrass were also investigated to determine their selective mechanism. Rice was very tolerant, but barnyardgrass was susceptible to dithiopyr. The absorption of dithiopyr was greater in barnyardgrass than in rice and most of them remained in the roots of both species. Dithiopyr was absorbed by roots and basal shoots of both species. Translocation of dithiopyr was very low but was higher in barnyardgrass than in rice. Therefore, this study suggest that the selectivity of dithiopyr between rice and barnyardgrass may be mainly attributed to the absorption and translocation of dithiopyr in plants.

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Effect of soil organic matter content on plant uptake factor of ginseng for endosulfan (토양유기물 함량이 인삼근의 endosulfan 흡수이행에 미치는 영향)

  • Oh, Kyeong-Yeol;Choi, Geun-Hyoung;Bae, Ji-Yeon;Lee, Deuk-Yeong;Lee, Sung-Woo;Kim, Jin-Hyo
    • Journal of Applied Biological Chemistry
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    • v.63 no.4
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    • pp.401-406
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    • 2020
  • The plant uptake of endosulfan, a new persistent organic pollutants from soil environment was investigated on ginseng through the field survey in Korea. The endosulfan residues in soil for this survey were ranged on 0.013-0.136 mg kg-1. The plant uptake factor (PUF) for endosulfan in ginseng was 0.243-1.708 and the highest PUF was found on 3-year-old ginseng. The PUF for endosulfan decreased in the longer cultivation period and it might be caused by the dilution effect of ginseng growth. In addition, the soil organic matter (SOM) content affected on the PUF negatively and Pearson correlation coefficient (r) between SOM and PUF was -0.7812 (p <0.05). Thus, higher SOM would positively affect to reduce the endosulfan residue in ginseng root.

Several Factors on Growth of Radish and Absorption and Translocation of Chromium (크롬이 무의 생육과 흡수이행에 미치는 몇가지 요인)

  • Han, Kang-Wan;Cho, Jae-Young;You, Young-Sun
    • Korean Journal of Soil Science and Fertilizer
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    • v.30 no.4
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    • pp.370-376
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    • 1997
  • Experiments were conducted to investigate the effects of chromium application level, soil pH change, soil topping, application of some metals and application of organic matter on the absorption of chromium by radish and its growth. The results of experiments are summarized as following. Application of chromium as potassium dichromate up to 50 mg/kg did not affect the germination of radish seed. Application of chromium above this level affected the germination abversely. The dry matter yield of and absorption of chromium by radish was not affected by the application of chromium up to 100 mg/kg. Increased in soil pH decreased the uptake of chromium by radish under all range of chromium application rates. Under acidic condition (pH 5-6), the increase in the application of chromium resulted in the increase in the uptake of chromium by radish and lowering of dry matter production of radish. However, under alkaline condition (pH 7-8), increased application of chromium did not affect the uptake of chromium and the dry matter yield of radish. The application of Zn, Fe and Cu, up to 100 mg/kg did not affect not affect the uptake of chromium and dry matter yield of radish. The topping of soil with untreated soil after application of chromium up to five cm, did not affect the chromium uptake of radish, the same treatments tended to increase the dry matter yield of radish. The application of organic fertilizer(obtained from local market) up to the amount equivalent to 3000 kg/ha, although increased the dry matter yield of radish, did not affect the uptake of chromium by radish significantly. All the treatments tested in this study did not affect the translocation of chromium between root and shoot of radish.

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Absorption, Translocation and Metabolism of Bensulfuron in Rice and Cyperus serotinus Rottb. (수도(水稻)와 너도방동사니에서 Bensulfuron의 흡수(吸收), 이행(移行) 및 대사(代謝))

  • Kwon, C.S.;Pyon, J.Y.
    • Korean Journal of Weed Science
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    • v.13 no.2
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    • pp.75-80
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    • 1993
  • Root absorption, translocation and metabolism studies of $^{14}C$-bensulfuron in rice and Cyperus serotinus Rottb. were conducted to determine their selective mode of action. Rice absorbed a greater amount of bensulfron than Cyperus serotinus. The translocation rates of bensulfuron from roots into shoots were much faster in Cyperus serotinus than rice plants. The metabolic rate of bensulfuron was very fast in rice plants, but slow in Cyperus serotinus and therefore, the amount of parent bensulfuron remained in the shoots after 12 hours absorption was greater in Cyperus serotinus than rice. In conclusion, this studies indicated that Cyperus serotinus was susceptible to bensulfuron because of the slower metabolic rate and fast translocation rate, but tolerance of rice might be caused by faster metabolic rate in plants.

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Uptake of endosulfan and procymidone from arable soil by several vegetables I (green house study) (토양 중 endosulfan과 procymidone의 작물에 대한 흡수.이행 I (실내시험))

  • Park, Hyeon-Ju;Choi, Ju-Hyeon;Park, Byung-Jun;Kim, Chan-Sub;Ihm, Yang-Bin;Ryu, Gab-Hee
    • The Korean Journal of Pesticide Science
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    • v.8 no.4
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    • pp.280-287
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    • 2004
  • We investigated the residual amounts of endosulfan and procymidone taken by vegetables grown in hydroponics culture and field conditions treated with the pesticides in order to evaluate safe cultivation concentration of the pesticides in the vegetables. Endosulfan and procymidone were selected as test pesticides because they have been reported to frequently detect in agricultural products at different concentrations. In hydroponic culture, by Chinese cabbage, procymidone was absorbed 3.8 times higher than endosulfan. The higher the pesticide concentration get, the worse the plant grew. In soil treated with 10 mg/kg of endosulfan, the pesticide absorbed by Leafy radish, Chinese cabbage and radish was less then their MRLs. In case of carlot, the residue level in soil which did not exceed its MRL was 1 mg/kg. The concentrations of procymidone in soil which did not exceed the MRLs in Leafy radish, Chinese cabbage, radish and carrot were 10, 10, 2 and 1 mg/kg, respectively Usually aged endosulfan and procymidone residues were less absorbed into crops than the fresh ones. Chinese cabbage absorbed more endosulfan and pocymidone than leafy radish, radish doing more than carrot.

Comparison of Growth and Physiological Responses in Radish for Assay of Nickel Toxicity -I. Growth of Radish and Absorption and Translocation of Nikel- (무에서 니켈 독성검정을 위한 생육 및 생리반응 비교 -I. 무의 생육 및 니켈 흡수이행-)

  • Han, Kang-Wan;Cho, Jae-Young
    • Applied Biological Chemistry
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    • v.39 no.4
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    • pp.287-292
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    • 1996
  • The present study was carried out to investigate the difference of absorption and translocation of Ni by radish grown for 45 days under factors such as the levels of Ni in soil, soil pH, competitive metal interactions, covering with soil, organic matter and lime. Germination rate of radish in soil treated by Ni 150 mg/kg was 40%. As soil pH was increased, the contents of Ni translocated to radish showed the negative correlation$(shoot=-0.965^{**},\;root= -0.837^{*})$. The Ni content in shoot and root of radish grown under 50 mg/kg Ni treated soil were slowly decreased with iron levels increased. However Ni content in shoot and root of radish grown under 50 mg/kg Ni treated soil showed increasing trend with the increasing the zinc levels. As covering with soil, organic matter and lime were treated, Ni contents of shoot and root in radishes were in the decreasing order of organic matter>covering with soil>lime.

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