• Title/Summary/Keyword: bensulfuron-methyl

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Studies on the Development of weed Control Method for Paddy Rice by Bensulfuron-methyl Combination Suspension Concentrate (Bensulfuron-methyl 혼합(混合) 액상수화제(液狀水和劑)의 사용법(使用法) 개발(開發) 연구(硏究))

  • Ryu, G.H.;Park, J.E.;Lee, I.Y.;Lee, H.G.;Lee, J.O.;Park, Y.S.;Shin, H.S.
    • Korean Journal of Weed Science
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    • v.14 no.1
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    • pp.28-33
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    • 1994
  • This study was conducted to investigate the efficacy of weed control by pyributicarb{O-[3-tert-butylphenyl] N-[6-methoxy-2-pyridyl]-N-methyl thiocarbamate}/bensulfuron-methyl{methyl 2-[[[[[[4, 6-dimethoxypyrimidin-2-yl] amino] carbonyl] amino] sulfonyl] methyl] benzoate} SC and oxadiazon{5-tert-butyl-3-[2,4-dichloro-5-isopropoxyphenyl]-1,3,4-oxadiazol-2(3)-one}/bensulfuron-methyl SC, and to develope weed control methods for paddy rice. There was little difference between suspension concentrate and granule of pyributicarb/bensulfuron-methyl and oxadiazon/bensulfuron-methyl combination in the effect of weed control. Pyributicarb/bensulfuron-methyl SC and oxadiazon/bensulfuron-methyl SC were diffused from the point of application to 6m. Pyributicarb/bensulfuron-methyl SC applied on water surface from irrigation inlet and in paddy water from dike controlled more than 90% of weeds. Pyributicarb/bensulfuron-methyl SC was precipitated about 1-2cm per 1 hour after dripping on water surface. The efficacy of weed control by pyributicarb/bensulfuron-methyl SC was higher in 0-1cm than in 6-7cm standing water depth.

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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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Factors and Recovery of Herbicide Phytotoxicity on Direct - seeded Rice - I. Variation Factors of Phytotoxicity (직파(直播)벼의 제초제(除草劑) 약해(藥害) 요인(要因)과 회복(回復)에 관한 연구(硏究) - I. 약해(藥害)의 변동(變動) 요인(要因))

  • Im, Il-Bin;Usui, K.
    • Korean Journal of Weed Science
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    • v.16 no.4
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    • pp.292-300
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    • 1996
  • This experiment was conducted to investigate the factor of phytotoxicity for herbicides(bensulfuron methyl, pyrazosulfuron-ethyl, dimepiperate, molinate) on flood direct-seeded rice. The phytotoxicity of herbicides was evaluated under controlled environment condition. Bensulfuron methyl and pyrazosulfuron-ethyl reduced more rice growth, especially root growth on low temperature(20/$11^{\circ}C$) than high temperature(30/$22^{\circ}C$) cultivations. The phytotoxicity of bensulfuron methyl and pyrazosulfuron-ethyl were increased relatively by non-nutrient and nutrient solution. cultivation, respectively. The rice applied bensulfuron methyl and pyrazosulfuron-ethyl with pH 3.5, 5.5, 7.5 and 9.5 solution became low growth rate on low pH of pH 3.5 and 5.5 solution cultivation. Bensulfuron methyl application with pH 5.5 and pH 7.5 solution, and pyrazosulfuronethyl application with pH 7.5 and 9.5 solution reduced rice growth inhibition. The root growth of rice seeded in 6cm depth of water solution applied herbicides was suppressed by bensulftuon methyl and pyrazosulfuron-ethyl, the growth of shoot was suppressed heavily by dimepiperate and molinate, in particular dimepiperate suppressed about the growth of 90%. The phytotoxicity of pyrazosulfuron-ethyl became high on light clay soil of non-fertilizer condition and sand loam soil of fertilizer condition, bensulfuron methyl became high on sand loam soil.

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Safening Activity of Optically Active ${\alpha}$-Methylbenzylphenylurea toward Bensulfuron-methyl and Pyribenzoxim Injury to Rice (광학활성 ${\alpha}$-Methylbenzylphenylurea 유도체의 bensulfuron-methyl과 pyribenzoxim의 벼에 대한 약해경감효과)

  • Ryoo, Jae-Hwan
    • The Korean Journal of Pesticide Science
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    • v.9 no.2
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    • pp.153-158
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    • 2005
  • Safening activities of optically active ${\alpha}$-methylbenzylphenylureas on crop injury of rice (Oryza sativa L., cv. Tsukinohikari, japonica) caused by bensulfuron-methyl (methyl 2-[[[[[(4,6-dimethoxy-2-pyrimidinyl)amino]carbonyl]amino]sulfonyl]methyl]benzoate) and pyribenzoxim (benzophenone o-[2,6-bis[(4,6-dimethoxy-2-pyrimidinyl)oxy]benzoyl]oxime) were investigated. Some derivatives of the optically active compounds exhibited strong safening activity against growth inhibition of rice by bensulfuron-methyl. Out of the derivatives tested, (S)-2,3-diCl and (S)-2-F-4-Me derivatives showed greater relieving activity than that of dymuron. In addition, the stress relieving activity was also obtained when they were applied at 4 days after bensulfuron-methyl treatment. On the other hand, crop injury caused by pyribenzoxim was relieved by about 95% with (S)-2-F-4-Me derivative in shoots and roots of rice seedlings.

Factors and Recovery of Herbicide Phytotoxicity on Direct - seeded Rice - 3. Phytotoxicity of Herbicide by Three Elements of Fertilizer (직파(直播) 벼의 제초제(除草劑) 약해(藥害) 요인(要因)과 회복(回復) 연구(硏究) - 3. 비료 3요소에 따른 약해 발생 특성)

  • Im, Il-Bin;Usui, K.;Cho, S.Y.
    • Korean Journal of Weed Science
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    • v.18 no.1
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    • pp.20-27
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    • 1998
  • This experiments were conducted to investigate the effects of fertilizer for herbicides phytotoxicity of rice(Oryza sativa L. japonica cv Dongjin). The shoot and root growth of rice were inhibited more by pyrazosulfuron-ethyl or pyrazosulfuronethyl+molinate than bensulfuron methyl or bensulfuron methyl+dimepiperate application in nitrogen or nitrogen mixed solution. In phosphate or phosphate mixed solution, rice growth were inhibited more by bensulfuron methyl or bensulfuron methyl+dimepiperate than pyrazosulfuron-ethyl or pyrazosulfuron-ethyl+molinate application. In solution mixed with nitrogen and phosphate or fertilizer three elements, rice shoots were more. inhibited by pyrazosulfuron-ethyl or pyrazosulfuron-ethyl+molinate treatments, roots were inhibited more relatively by bensulfuron methyl or bensulfuron methyl+dimepiperate treatments. In all fertilizer solutions, rice plant heights were reduced by dimepiperate and molinate applications, but root growth was reduced only by nitrogen and phosphate mixed solution. Rice growth in sulfonylurea or their mixed herbicide application were more inhibited in high :nitrogen concentration arid by phosphate exclusion than by nitrogen exclusion culture.

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Differential Responses of Two Freshwater Cyanobacteria, Anabaena variabillis and Nostoc commune, to Sulfonylurea Herbicide Bensulfuron-methyl

  • KIM JEONG-DONG;LEE CHOUL-GYUN
    • Journal of Microbiology and Biotechnology
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    • v.16 no.1
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    • pp.52-56
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    • 2006
  • The effect of bensulfuron-methyl on the nontargeted cyanobacteria was greater on A. variabillis than N. commune. Both A. variabillis and N. commune were initially able to utilize low concentrations of the herbicide, bensulfuron-methyl, whereas higher concentrations of bensulfuron-methyl or the hydrolyzed products of the herbicide were found to be toxic. Growth and photosynthesis inhibitions of over $50\%$ were observed, when 8 to 10 ppm of the herbicide was applied. Nitrogenase activities of the cyanobacteria were decreased by $94-98\%$ in A. variabillis and by $85-86\%$ in N. commune after 24 h of incubation with 10 ppm and 20 ppm of bensulfuron-methyl. Nitrogenase activities were also inhibited by the addition of ammonium salts as low as 0.05 mM. Furthermore, the toxic effect of the herbicide was the highest at pH 4-6, showing approximately $42-60\%$ toxicity, whereas much lower toxicity $(9-28\%)$ was observed at higher pH of 7-10, due to base-catalyzed hydrolysis of bensulfuron-methyl.

Physiological Changes of Eleocharis Kuroguwai During Period of Growth Inhibition Caused by Bensulfuron-methyl (Bensulfuron-methyl처리(處理) 후 올방개 생육억제기간(生育抑制期間) 중의 생리적(生理的) 변화(變化))

  • Chun, J.C.;Shin, H.S.
    • Korean Journal of Weed Science
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    • v.14 no.3
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    • pp.171-175
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    • 1994
  • Physiological changes in Eleocharis kuroguwai Ohwi as affected by bensulfuron-methyl {Methyl 2-[[[[[(4, 6-dimethoxy-2-pyrimidinyl)amino]carbonyl]amino] sulfonyl]methyl]benzoate} was determined to relate the characteristics with regrowth behavior. There were no changes in relative growth rate(RGR) during the period of growth cessation after application of bensulfuron-methyl. RGR's of the growth ceseased plants caused at 39 and 51 g/ha began to increase in between 25 and 30 days after application (DAA) and between 30 and 35 DAA, respectively. In untreated plant tuber carbohydrate rapidly decreased right after emergence and almost consumed within 40 days. There was no carbohydrate consumption during the period of growth cessation in bensulfuron-methyl-applied plant, but the content started to rapidly decrease with regrowth. Tuber viability lasted for 30 days in untreated plant, while tubers were viable for 60 and 70 days after application of bensulfuron-methyl at 39 and 51 g/ha, respectively. During the period of growth cessation the plants kept minimum respiration and photosynthesis, but with regrowth respiration and photosynthesis were resumed and rapidly increased.

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Antagonistic Interaction between Quinclorac and Bensulfuron-methyl on Growth of the Rice Plants (Quinclorac과 Bensulfuron-methyl의 혼합처리(混合處理)에서 벼의 생장(生長)에 대한 제초제간(除草劑間) 길항작용(拮抗作用))

  • Kwon, Oh-Yeon;Kwon, Yong-Woong
    • Korean Journal of Weed Science
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    • v.17 no.3
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    • pp.288-294
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    • 1997
  • Field and pot expeiments were carried out to evaluate the interaction between quinclorac and bensulfuron-methyl on growth of the rice plants(Oryza sativa L. cv. Choocheongbyeo) at 20, 45, 65 days-old stages. Quinclorac and bensulfuron-methyl showed antagonistic interaction at both stages, which were detected by the Chisaka's method at isobles of 10% growth inhibition. The antagonism indices were -0.63 and -1.67 at 20 and 65 days-old seedling stages, respectively. Leaf-rolling of rice occurred when quinclorac was applied at 600g ai/ha or more at 20 days-old seedling stage, while it occured at the dose of 900g ai/ha at 65 days-old stage. Bensulfuron-methyl reduced plant height and dry weight as well as tiller production at both stages. Leaf-rolling of rice was reduced when mixture of quinclorac and bensulfuron-methyl was applied due to antagonism of the two herbicides. High temperatures increased the phytotoxicity of bensulfuron-methyl, while the phytotoxicity caused by quinclorac alone was not responsive to temperature. The antagonistic effect between quinclorac and bensulfuron-methyl increased at low temperature as tested by the Colby's method.

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Studies on the Herbicidal Properties of Bensulfuron methyl(DPX-F5384) -1. Variation of Phytotoxicity and Weeding Effect Caused by Herbicide Treatment in Mechanically Transplanted Paddy Field (제초제(除草劑) Bensulfuron methyl(DPX-F5384)의 작용특성(作用特性)에 관한 연구(硏究)- 제1보(第1報) 기계이앙답(機械移秧畓)에서의 약해(藥害) 및 약효(藥效) 변동요인(變動要因))

  • Ryang, H.S.;Jang, I.S.;Ma, S.Y.;Jeong, S.H.
    • Korean Journal of Weed Science
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    • v.6 no.2
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    • pp.134-145
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    • 1986
  • The experiment was crried out to evaluated the herbicidal properties of bensulfuron methyl [methyl 2-[[[[[(4, 6-dimethoxy pyrimidine-2yl) amino] carbonyl] amino] sulfonyl] methyl] benzoate]. No phytotoxicity was observed when bensulfuron methyl was applied at 3 and 6 g a.i./ 10a while the application rate 12 g a.i./10a slightly retared the growth of rice. The phytotoxicity decreased as the application time was delayed. The effect of application rate, leaching grade, transplanting depth, soil type and temperature on crop injury was little. Japonica variety (Dong-Jin) was more sensitive to bensulfuron methyl than indica X japonica variety (Sam-Kang). Bensulfuron methyl controlled effectively perennial weeds such as Sagittaria pygmaea Miq., Potamogeton diatinctus A. Benn., Cyperus serotinus Rottb., Sagittaria trifolia L., Eleocharis kuroguwai Ohwi. including most annual weeds except Echinochloa crus galli P. Beauv. The effect slightly decreased with lowering the temperature increasing the leaching grade. Application time and soil type employed did not affect the weeding effect.

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Difference in sensitivity of Eleocharis kuroguwai tubers to bensulfuron-methyl at different burial depths (Bensulfuron-methyl에 대(對한) 올방개 괴경(塊莖) 이식(移植) 심도별(深度別) 감수성(感受性) 차이(差異))

  • Shin, H.S.;Chun, J.C.
    • Korean Journal of Weed Science
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    • v.13 no.1
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    • pp.55-61
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    • 1993
  • Difference in sensitivity of Eleocharis kuroguwai tubers to bensulfuron- methyl{methyl 2-[[[[[(4, 6-dimethoxy-2-pyrimidinyl) amino] carbonyl] amino] sulfonyl] methyl] benzoate} at different burial depths were determined with respect to tuber emergence, sprouting of lateral buds, carbohydrate consumption of the tuber, and growth and new tuber production of the regrown plants. Days required to regrowth from the growth cessation due to bensulfuron-methyl were shorter in shallow-buried tubers than in deep-buried tubers. With application of bensulfuron-methyl shallow-buried tubers consumed less carbohydrate in the tuber than deep-buried tubers as compared with in deep-buried tubers during the period of growth cessation and greater regrowth also occurred in the former. Fast and great regrowth in shallow-buried tubers resulted in great production of dry matter and new tubers. However, the differences obtained were not due to bensulfuron-methyl, but due mainly to ecological emergence and growth characteristics of tubers buried at different depths.

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