• Title/Summary/Keyword: Methabenzthiazuron

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Response of Barley Cultivars to Butachlor, Terbutryn, and Methabenzthiazuron (Butachlor, Terbutryn과 Methabenzthiazuron에 대한 보리의 품종간(品種間) 반응차이(反應差異))

  • Pyon, Jong-Yeong;Kim, Tae-Hoon
    • Korean Journal of Weed Science
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    • v.3 no.1
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    • pp.100-104
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    • 1983
  • Responses of barley cultivars including 8 covered barley cultivars and 8 naked barley cultivars to butachlor, terbutryn, and methabenzthiazuron were evaluated by determinating crop injury, dry weight and chlorophyll content of barley seedlings. Most barley cultivars were tolerant to butachlor at 1478 ai/10a (recommended rate) but Olbori, Dongbori, and Gangbori were slightly sensitive to butachlor at 294g ai/10a. Sensitivity to terbutryn was generally greater in naked barley cultivars than hulled barley cultivars. Dongbori, Buhobori, and Bunong of hulled barley and Bangsa #6, Kwangseung, Nonsangwa # 1-6, and Iri #4 of naked barley were highly sensitive to terbutryn at 350g ai/10a (double dosage). Most barley cultivars were relatively tolerant to methabenzthiazuron except Iri #4. Dry weight of barley seedlings was not reduced by butachlor, terbutryn, and methabenzthiazuron at recommended rate. However, terbutryn at 350g ai/l0a greatly reduced dry weight of all barley cultivars, especially naked barley cultivars. Chlorophyll content of Owealbori, Dongbori #1, Jogangbori, Bangsa #6, Backdong, and Kwangseung was slightly reduced by butachlor. Terbutryn at 175g ai/10a reduced chlorophyll content of Owealbori, Olbori, and Nonsangwa #1-6 and all cultivars were greatly reduced by terbutryn at 350g ai/10a. Methabenzthiazuron slightly reduced chlorophyll content of Jogangbori, Dongbori #1, Owealbori, Backdong, Kwangseung, and Nonsangwa # 1-6.

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Effect of Seeding Method and Pre-emergence Herbicides on Plant Growth and the Production of Sorghum × Sudangrass Hybrid (파종 방법과 토양처리용 제초제 처리가 수수 × 수단그라스 교잡종의 생육 및 생산성에 미치는 영향)

  • Jung, Jeong Sung;Lee, Ki-Won;Choi, Ki Choon;Ji, Hee Jung;Park, Hyung Soo;Kim, Won Ho;Kim, Young-Jin;Lee, Sang Hak;Lee, Sang-Hoon
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.35 no.1
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    • pp.17-25
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    • 2015
  • The following experiments were used to evaluate the effect of seeding method and pre-emergence herbicides on weed control and the production of the $sorghum{\times}sudangrass$ [sorghum bicolor (L.) Moench] hybrid under field and in vitro conditions. Under the in vitro condition, we evaluated how different kinds of herbicides affect the rate of seed germination and the growth of early seedlings in the $sorghum{\times}sudangrass$ hybrid treated with herbicides. Simazine, alachlor, and methabenzthiazuron were used, and their concentration levels were 0%, 40%, 70%, and 100%. The germination ratio of the seeds was reduced by the application of simazine, methabenzthiazuron, and alachlor compared with the control (distilled water). The alachlor application severely decreased the sorghum germination ratio. However, seed germination was not greatly influenced by the concentration level of the herbicides. Root and shoot length were increased in the following order: control > simazine > methabenzthiazuron > alachlor. Overall, alachlor significantly reduced root length more than shoot length. The differential tolerance of the $sorghum{\times}sudangrass$ hybrid to pre-emergence herbicides by seeding method was then tested under the field condition. The plants were severely injured by the alachlor application, leading to a great reduction in the number of stems. However, for the simazine and methabenzthiazuron applications the number of stems lost was slightly lower than it was for the alachlor and simazine + alachlor applications. In the seeding method, drilling was more effective in reducing herbicide injury than broadcasting. All of the herbicides effectively controlled weeds. The simazine and methabenzthiazuron applications showed a significantly higher dry matter (DM) yield. However, the alachlor and simazine + alachlor applications severely reduced the DM yield. This result suggests that the alachlor application has a significant effect on plant production. Similarly, the total digestible nutrient (TDN) yield was greatly reduced by the alachlor and simazine + alachlor applications. From the results presented above, we concluded that the yield of DM was the highest for broadcasting with no herbicide. and drilling was the most-effective way to reduce herbicide injury. The simazine application was the most-effective herbicide, showing the highest forage yield and TDN yield.

Weeding Efficacy and Phytotoxicity Evaluation of Soil-Applied Herbicides for Potential Use in Sorghum (수수 재배시 적용 제초제 선발을 위한 약효 및 약해 평가)

  • Hwang, Jae-Bok;Park, Tae-Seon;Park, Hong-Kyu;Kim, Hak-Sin;Choi, In-Bae;Koo, Bon-Il;Bae, Hee-Soo
    • Weed & Turfgrass Science
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    • v.5 no.2
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    • pp.82-87
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    • 2016
  • Herbicide options for weed control in sorghum is very limited, hence there is a need for exploring potential herbicides. Sorghum herbicide tolerance field trails were conducted at two locations, Yaechoun, Gyeongsangbuk-do, and Miryang, Gyeongsangnam-do, in 2013. Tolerance of sorghum was evaluated following the pre-emergence application of methabenzthiazuron 70% (WP), simazine 50% (WP), oxadiargyl 1.7% (EC), and dimethenamid-P 5% + pendimethalin 20% (EC) at the standard rate 157.5 g, 75 g, 5.1 g, and 75 g a.i. $10a^{-1}$, respectively. As well as double the standard rate. On a phytotoxicity scale of 0 to 9, methabenzthiazuron (WP) induced injury to sorghum up to level 1 at the standard rate and to 3 at double the rate, but did not significantly affect the yield any statistical difference from the untreated. Simazine (WP) induced phytotoxicity up to levels 2 and 4 at single and double rates, respectively. Simazine (WP) did not significantly affect yield: however, the values were numerically lower than those in the methabenzthiazuron (WP) treatment. Oxidiargyl (EC) and dimethenamid + pendimethalin (EC) induced no or slight phytotoxicity; however they failed to provide effective weed control at the standard rate (32 and 68% control, respectively). Out of the tested, methabenzthiazuron (WP) was found to have potential for use in sorghum whereas the other herbicides caused unacceptable levels of injury.

Proficiency Testing for the HPLC Analysis of Azoxystrobin, Imidacloprid and Methabenzthiazuron Residues in Soil (HPLC를 이용한 아족시스트로빈과 이미다클로프리드, 메타벤즈티아주론의 토양 잔류분석 숙련도시험)

  • Kim, Chan-Sub;Son, Kyeong-Ae;Gil, Geun-Hwan;Im, Geon-Jae
    • The Korean Journal of Pesticide Science
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    • v.19 no.3
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    • pp.218-229
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    • 2015
  • The proficiency testing for the residue laboratories of pesticide registration was conducted in order to improve the reliability and the ability for pesticide residue analysis. On November 2012 the testing was carried out using the soil collected and kept as the moistened state for five years, which was expected to very low residue levels of pesticides. The soil was fortified with azoxystrobin, imidacloprid and methabenzthiazuron in a manner similar to prepare soil samples for indoor soil degradation test, and then sub-samples were prepared for the distribution to participants. Some of them were randomly selected for confirm of homogeneity and to ensure the stability of samples at room temperature. Samples were consisted of two soils treated as different levels, one of which was used to the assessment and another used to confirm. In addition, provided three standard solutions, respectively concentration of 10 mg/L, and untreated soil. Forty eight institutions submitted results. The medians of results were used as the assigned values for pesticide residues. Fitness for purpose standard deviation of proficiency test was calculated by applying 20% RSD as the coefficient of variation allowed in the soil residue test. Z-score was applied for evaluation of individual pesticides, and the average of the absolute value of the Z-score for the overall assessment of pesticides. Laboratories evaluated the absolute value of the Z-score less than 2 to fit the case of azoxystrobin were 48, imidacloprid and methabenzthiazuron 46.

Chemical Control of Weed for Angelica gigas NAKAI (제초제(除草劑)에 의한 참당귀 밭 잡초방제(雜草防除))

  • Seo, Jeong-Sik;Son, Su-Gyu;Kim, Ki-Sik;Seo, Sang-Myung;Kim, Dong-Han
    • Korean Journal of Medicinal Crop Science
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    • v.2 no.3
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    • pp.187-192
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    • 1994
  • This study was conducted to evaluate the effect of herbIcides on weed control, growth characteristics and yield in Angelica gigas NAKAI, after transplanting it to the field. All herbicids treated had no effect on the emergency period, bolting rate, and growth characteristics of A. gigos. Simazin wp, methabenzthiazuron wp were slightly harmful, but linuron wp pendimethalin ec, triflurain ec had no injury on the A. gigas, even with double dosage level. Under the treatment of pendimethalin ec, linulon wp, effect of weed control valuae at 55 days after transplanting was 89.6, and 88.3 respectively with 5 or 7 species of weeds appearing. Broadleaf weeds f?ere abundant than grasses, and the major weeds were C. albam, C. flexuos, D.sanguinalis, and E. arvense. Dry yield were increased somewhat more with herbicides than by hand weeding, even with double dosage level.

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Residual Activity and Effect of Soil Applied Herbicides on Succeeding Crops in Vegetable Field - 2. Residual Activity and Effect of Applied Herbicides on Succeeding Crops in Summer Crops - (주요(主要) 채소용(菜蔬用) 제초제(除草劑)의 토양중(土壤中)에서의 잔효(殘效)와 후작물(後作物)에 미치는 영향(影響) - 제(第)2보(報) 춘하작물(春夏作物)에 처리(處理)한 제초제(除草劑)의 잔효(殘效)와 후작물(後作物)에의 영향(影響) -)

  • Ryang, H.S.;Moon, Y.H.;Choi, E.S.;Jang, M.S.;Lee, J.H.
    • Korean Journal of Weed Science
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    • v.11 no.1
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    • pp.50-59
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    • 1991
  • Residual period and carry-over effect of some herbicides were determined using a bioassay method in six summer crops(potato, carrot, corn, water melon, soybean, and sesame). The effects were measured at regular time intervals after applying different rates of the herbicides. There were no great differences in residual period and carry-over injury between the soils and kinds of crops used. However, the residual period varied with the herbicides studied and the carry-over injury was dependent upon season and rate of the herbicide application, sampling depth of soil, and kind and seeding date of the test plant. When the residual herbicides were applied, the carry-over injury could be minimized by selecting tolernet crops, delaying seeding of the crops after application of the herbicides, and regulating the cultivation depth. Herbicides which showed no residual effect by the end of the cropping period(100-120 days for summer crops) and no carry-over effect were alachlor, trifluralin, ethalfluralin, metribuzin, and prometryn. When pendimethalin, metolachlor, linuron, methabenzthiazuron, and simazine were applied at the recommended rate or less, there was no carry -over injury at harvesting time. With doubling the recommended rate, however, the carry-over effect was found in sensitive crops. Napropamide applied at the rate of 300 g a.i./10 a brought about carry-over injury for Italian ryegrass and barley at 140 days in summer crops, whereas the injury was not found in Cruciferae (radish, Chinese cabbage). Nitralin applied at the rate of 150-300 g a.i./10a caused the carry-over injury for Italian ryegrass and barley at 140 days in summer crops. However, there was no injury for Cruciferae.

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Phytotoxic Effect of Herbicides on Upland Crops and Weeds (밭작물(作物) 및 잡초(雜草)에 대한 제초제(除草劑)의 약해(藥害) 약효(藥效))

  • Ryang, H.S.;Chun, J.C.;Yim, J.H.
    • Korean Journal of Weed Science
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    • v.4 no.1
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    • pp.69-78
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    • 1984
  • This study was conducted to select herbicides effective for upland crops and to investigate the cause of crop injury in peanut cultivated with mulching. Crop such as radish (Raphanus acanthiformis Moor.), Chinese cabbage (Brassica raps L.), soybean (Glycine max Merr.), Peanut (Archis hypogaea L.), and marsh mallow (Malva olitoria Nakai) were tolerant to napropamide [2-(${\alpha}$-naphthoxy)-N, N-diethylpropionamide], alachlor [2-chloro-2', 6'-diethyl-N-(methoxymethyl) acetanilide], trifluralin (${\alpha},{\alpha},{\alpha}$-trifluoro-2, 6-dinitro-N, N-dipropylp-toluidine) and nitrofen (2,4-dichlorophenyl-p-nitrophenylether). Napropamide, diphenamide (N, N-dimethyl-2, 2-diphenylacetamide) and alachlor were safe for red pepper (Capsicum annuum L.), eggplant (Solanum melongena L. and tomato (Lycopersicon esculentum Mill.), while trifluralin, nitrofen and chlonitrofen (2,4,6-trichlorophenyl-4-nitrophenyl ether) could be used for water melon (Citrullus battich Forsk.), carrot (Daucus carota L.) and lettuce (Lactuca scariola L.) without crop injury. Out of nine major weed species studied, Capsella bursa-pastoris Medicus was the most resistant species to the herbicides tested. Napropamide and alachlor could not control P. hydropiper, while P. oleracea and C. album were tolerant to diphenamide :and alachlor, respectively. Urea herbicides such as methabenzthiazuron [3-(2-benzothiazolyl)-1,3-dimethylurea], linuron [3-(3, 4-dichlorophenyl~l-methoxy-i-methyl urea], and isoproturon [3-(4-isopropylphenyl) -1, 1-dimethylurea]gave a great injury to the crops studied. The weeding effect was greater for broadleaf weeds than for grasses. Isoproturon and linuron provided good selectivity for marsh mallow and carrot, respectively. In peanut, the crop injury caused by Four herbicides studied was greater when cultivated with mulching than when cultivated without mulching. With dinitroaniline herbicides the crop injury decreased as the gaseous herbicide was removed out of mulching. Alachlor gave little phytotoxicity to peanut grown under mulching condition and nitralin [4-(methylsuphonyl)-2, 6-dinitro-N, N-dipropylaniline] showed less toxicity to the peanut than pendimenthalin (3,4-dimethyl-2, 6-dinitro-N-1-ethyl propylaniline) and trifluralin.

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Comparative Analysis of Pesticide Residues in Agricultural Products in Circulation in Gyeonggi-do Before and After Positive List System Enforcement (PLS 시행 전후 경기도 유통 농산물의 잔류농약 실태 비교 분석)

  • Song, Seo-Hyeon;Kim, Ki-Yu;Kim, Yun-Sung;Ryu, Kyong-Shin;Kang, Min-Seong;Lim, Jeong-Hwa;Yoo, Na-Young;Han, Yoo-Li;Choi, Hee-Jeong;Kang, Choong-Won;Kim, Youn-Ho;Seo, Jeong-Hwa;Choi, Ok-Kyung
    • Journal of Food Hygiene and Safety
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    • v.36 no.3
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    • pp.239-247
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    • 2021
  • In order to confirm the impact of the Positive List System (PLS) being applied to all agricultural products from January 1, 2019, we analyzed 28,693 points of inspection-related data on agricultural products distributed in Gyeonggi-do from 2018 to 2020. The ratio of cases exceeding the standard for the total inspection performance was 1.0% in 2018, 1.2% in 2019, and 1.2% in 2020. Out of the 114 cases exceeding the standard in 2019, 55 were applied on a Maximum Residue Limit (MRL) of 0.01 mg/kg, and out of the 115 cases exceeding the standard in 2020, 66 were applied on a MRL of 0.01 mg/kg. To improve this, it seems necessary to manage unintentional pollution, conventional use for unregistered crops, and illegal pesticides. Fluquinconazole detection resulted from unintentional contamination, and diazinon, chlorothalonil, and methabenzthiazuron detection resulted from conventional use in unregistered crops. Chinomethionat is a pesticide component that was discarded in the past and its current use has been attributed to the smuggling of pesticides. This study and future monitoring data can be used as reference data for system supplementation and on-site management reinforcement.

Residual Activity and Effect of Soil Applied Herbicides on Succeeding Crops in Vegetable Field - 1. Residual Activity and Effect of Applied Herbicides on Succeeding Crops in Winter Crops - (주요(主要) 채소용(菜蔬用) 제초제(除草劑)의 토양중(土壤中)에서의 잔효(殘效)와 후작물(後作物)에 미치는 영향(影響) - 제(第)1보(報) 월동작물(越冬作物)에 처리(處理)한 제초제(除草劑)의 잔효(殘效)와 후작물(後作物)에의 영향(影響) -)

  • Ryang, H.S.;Moon, Y.H.;Choi, E.S.;Jang, M.S.;Lee, J.H.
    • Korean Journal of Weed Science
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    • v.11 no.1
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    • pp.32-49
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    • 1991
  • Residual period and carry-over effect of some herbicides were determined using a bioassay method in five winter crops (chinese cabbage, radish, spinach, onion and garlic). The effects were measured at regular time intervals after applling different rates of the herbicides. There were no great differences in residual period and carry-over injury between the soils and kinds of crops used. However, the residual period varied with the herbicides studied and the carry-over injury was rate of the herbicide application, sampling depth of soil, and kind and seeding date of the test plant. When the residual herbicides were applied, the carry-over injury could be minimized by selecting tolerant crops, delaying seeding of the crops after application of the herbicides, and regulating the cultivation depth. Herbicides which showed no residual effect by the end of the cropping period (200-240 days for winter crops) and no carry-over effect were alachlor, trifluralin, ethalfluralin and prometryn. When pendimethalin, metolachlor, linuron and methabenthiazuron were applied at the recommended rate or less, there was no carry-over injury at harvesting time. With doubling the recommended rate, however, the carry-over effect was found in sensitive crops. Napropamide applied in winter crops at rate of 150-300g a.i./10a brought about carry-over injury for such Gramineae as Italian ryegrass, direct-seeded rice and barley, whereas the injury was not found in lowland-transplanted rice, Cruciferae, Cucurbitaceae and Solanaceae. Long residual herbicide nitralin applied at the rate of 75g a.i./10a caused the carry-over injury for Italian ryegrass, direct-seeded rice, baley and lowland-transplanted rice at 275 days in winter crops. In addition, a slight injury occurred in sesame, perilla and spinach, However, there was no injury for Cruciferae, Cucurbitaceae and Solanaceae.

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