• Title/Summary/Keyword: lowland weeds

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Changes of Weed Community in Lowland Rice Field in Korea (한국(韓國)의 논 잡초분포(雜草分布) 현황(現況))

  • Park, K.H.;Oh, Y.J.;Ku, Y.C.;Kim, H.D.;Sa, J.K.;Park, J.S.;Kim, H.H.;Kwon, S.J.;Shin, H.R.;Kim, S.J.;Lee, B.J.;Ko, M.S.
    • Korean Journal of Weed Science
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    • v.15 no.4
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    • pp.254-261
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    • 1995
  • The nationwide weed survey was conducted in lowland rice fields over whole country of Korea in 1992 in order to determine a change of weed community and to identify a major dominant weed species and/or problem weed. Based on morphological characteristics of weeds, population ratio of broad leaf weed was 42.6%, grasses weed-9.0%, sedges-33.4% and others were 15.0%. Annual weed was 33.4% while perennial weed was 66.6% in terms of life cycle of weeds. Meanwhile, there was different weed occurrence as affected by planting method of the rice plant. In hand transplanted paddy fields predominant weed species was Sagittaria trifolia L., Monochoria vaginalis Presl., and Aneilema japonica Kunth. In machine transplanted rice fields of infant and young rice seedling Eleocharis kuroguwai Ohwi. and S. trifolia L. were more predominant. There was high occurrence of M. vaginalis, Echinochloa crus-galli L., and Leesia japonica Makino in water seeding while E. crus-galli and Cyperus serotinus Rottb. were predominant weed species in dry seeded rice. Monoculture of the rice plant would cause to high occurrence of E. kuroguwai, S. trifolia, M. vaginalis, E. crus-galli, and Sagittaria pygmaea Miq and there was higher population of S. trifolia, S. pygmaea, M. vaginalis, E crus-galli, and E. kuroguwai in double cropping system based on rice culture. In particular, there was high different weed occurrence under different transplanting times. E. kuroguwai, S. trifolia, S. pygmaea, M. vaginalis, and C. serotinus were higher population at the transplanting of 25 May and S. trifolia, E crus-galli, C. serotinus, and M. vaginalis at 10 June and S. pygmaea, E. kuroguwai, M. vaginalis, S. trifolia, and E. crusgalli at 25 June in Korea, respectively. Autumn tillage in terms of tillage time would cause more predominant weed species such as S. trifolia, E. kuroguwai, M. vaginalis, and S. pygmaea while spring tillage was higher population of E. kuroguwai, S. trifolia, E. crusgalli, M. vaginalis, and S. pygmaea. In plain area of paddy field there was higher occurrence of E. kuroguwai, S. trifolia, M. vaginalis, E. crus-galli, and S. pygmaea and in mid-mountainous area S. trifolia, E. kuroguwai, M. vaginalis, E. crus-galli, and Ludwigia prostrate Roxb. while in mountainous area S. trifolia, M. vaginalis, Potamogeton distinctus Ben., E. kuroguwai, and E. crus-galli were. In 1992 the most ten predominant weed species at the rice field of Korea based on summed dominant ratio(SDR) were E. kuroguwai > S. trifolia > E. crus-galli > M. vaginalis > S. pygmaea > C. serotinus > L. prostrate > P. distinctus > A. japonica > Scirpus juncoides Roxb.

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Weed flora of agricultural area in Korea (우라나라 농경지(農耕地)의 주요(主要) 잡초분포(雜草分布) 현황(現況))

  • Kim, S.C.;Oh, Y.J.;Kwon, Y.W.
    • Korean Journal of Weed Science
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    • v.12 no.4
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    • pp.317-334
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    • 1992
  • Weed flora and floristic composition were reviewed in lowland rice field and upland crop area. For lowland rice field weed flora was not much changed since 1971. About 29 weed species belonged to 18 families were occurred. However, floristic composition of dominant weed species has greatly changed mainly due to introduction of herbicides. The predominant weed species in 1971 when herbicide was not used were Rotala indica, Eleocharis acicularis, Monochoria vaginalis, Echinochloa crus-galli, while these for in 1991 were Eleocharis kuroguwai, Sagittaria pygmaea, S. trifolia, Echinochloa crus-galli and M, vaginalis, respectively. In 1981 weed survey, E. crus-galli was no longer troblesome weed. However, this species became important again thereafter by introduction of herbicide mixtures with pyrazolate, bensulfuron-methyl or pyrazosulfuronethyl. For upland crop area, 216 weed species belonged to 46 families were recorded. One hundred and sixtyfive of these were grown in winter crop area while 189 weed species occurred in summer crop area, respectively. Among these, 138 weed species were grown in both crop seasons. In general, summer crops had less number of weed species compared to winter crops. Even though the dominant weed species varied by crop the most common weeds were Chenopodium album, Alopecunrs aqualis, Stellaria alsine and S, media for winter crops and Digitaria sanguinalis, Portulaca oleracea, Chenopodium album and Acalypha australis for summer crops, respectively.

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Herbicidal Property and Soil Behavior of a New Herbicide, Azimsulfuron (신제초제(新除草劑) Azimsulfuron의 제초활성(除草活性)과 토양중(土壤中) 행동(行動))

  • Chun, J.C.;Ma, S.Y.
    • Korean Journal of Environmental Agriculture
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    • v.15 no.4
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    • pp.501-505
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    • 1996
  • Azimsulfuron [1H-pyrazole-5-sulfonamide,N-(((4,6-dimethoxy-pyridine-2-yl-aminocarbonyl-4-(2-methyl-2H-tetrazole-5-yl)] is a new sulfonamide herbicide that selectively controls a wide range of weeds in lowland rice (Oryza sativa). It effectively controlled Cyperus serotinus, Eleocharis kuroguwai, Sagittaria pygmaea, S. trifolia, and Scirpus juncoides at 7.5 - 30 g ai/ha. In the tolerance test on grasses carried out in a nutrient solution containing 0.3 - 30 ppm of azimsulfuron, greater inhibition occurred in roots of both rice and barnyardgrass (Echinochloa crus galli) than in shoots. However, rice root was approximately 5-fold more tolerant than that of barnyardgrass. The downward movements as determined by 50% growth inhibition of S. juncoides were 4-cm in clay loam and 6.5-cm in sandy loam soil with 3-cm/day leaching for 3 days. When incubated at 20 and $30^{\circ}C$, the residual effect in clay loam soil lasted for 30 and 21 days, respectively. In a soil column applied at 15 g ai/ha of azimsulfuron followed by 3-cm/day leaching for 3 days, dry weights of S. trifolia emerging at 5, 10, and 15-cm depth were reduced to 87, 85, and 79% of the corresponding untreated control, respectively. Susceptibility of S. trifolia to azimsulfuron did not greatly vary with the emergence depth.

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Physio-ecological Characteristics and Control of Alopecurus aequalis Sobol. var. amurensis (Kom.) Ohwi. - 1. Gernmination and Emergence Under Several Environmental Conditions (뚝새풀(Alopecurus aequalis Sobol. var. amurensis (Kom.) Ohwi.)의 생리생태적(生理生態的) 특성(特性) 및 방제(防除) - 1. 발아(發芽) 및 출아(出芽) 특성(特性))

  • Im, I.B.;Lee, S.Y.;Huh, S.M.
    • Korean Journal of Weed Science
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    • v.14 no.4
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    • pp.239-244
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    • 1994
  • As a fundamental study to control Alopeuclus aequalis Sobol. var. amurensis(Kom.) Ohwi., on dominant weed in barley and dry seeded rice cultivation on paddy fields, several factors which would have closer relations to its germination and emergence, were examined. The results are as follows. The dormancy of seeds were broken at dry-heat treatment of $30^{\circ}C$. The germination rate of the seeds was high in order of 15>10>20> $5^{\circ}C$ and was very low at more than $25^{\circ}C$. The emergence of A. aequalis was influenced little for the light, but had a tendency to be good on the dark condition. The seeds dried on room temperature germinated few but them treated on $30^{\circ}C$ for 24 hours were germinated over 80%. The A. aequalis occured few in the saline soil of salt concentration of more than 0.25% and the germination rate of seeds was very low on the over 0.5% solution of NaCl. On the solution of pH 6.0~12.0, the germination was not effected for pH but was very few on pH 2.0. At the paddy-lowland which have cultivated the soybean for three years A. aequalis emerged a few.

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Changes of Soil Physico-Chemical Properties under Different Tillages of Paddy Soil (경운방법(耕耘方法)에 따른 논 토양(土壤)의 이화학성(理化學性) 변화(變化))

  • Yoo, Chul-Hyun;Shin, Bog-Woo;Jeong, Ji-Ho;Han, Sang-Soo;Kim, Seong-Jo;Han, Seong-Soo
    • Korean Journal of Soil Science and Fertilizer
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    • v.30 no.2
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    • pp.140-145
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    • 1997
  • The change of physico-chemical properties of paddy soil was monitored under different tillage. This study was conducted on Jeonbug silty cly loam, in Honam Agricultural Experiment Station, for four years starting from 1992. Different tillage involved (1)Continued no tillage, (2)Rotavation only with tractor every year, (3)Spring plowing with power tiller plus rotavation with tractor every year. The result of this study can be summarized as: Non tillage, when continued for some years, tended to increase 1)the hardness of soil, 2)the root density in the top soil, 3)the occurrence of annual and perennial weeds, and tended to lower the yield of rice compared to normal tillage(tilling with ow tiller in the spring plus rotavation by tractor before planting.

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Competition between Transplanted Lowland Rice and Weeds as Affected by Plant Spacing and Rice Cultivar Having Different Maturity (수도품종(水稻品種)의 숙기(熟期) 차이(差異)가 잡초(雜草)와의 경쟁력(競爭力)에 미치는 영향(影響))

  • Kim, S.C.;Kim, J.K.;Kim, D.S.
    • Korean Journal of Weed Science
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    • v.2 no.1
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    • pp.7-12
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    • 1982
  • The experiment was studied to know the competitive ability of rice against weeds as affected by rice maturity and plant spacing. For both cultivars, Tongil (12 days later) and Yeongnamjosaeng, the least amount of weed was obtained from the 10 ${\times}$ 10cm plant spacing while no difference between 40 ${\times}$ (10 ${\times}$ 10cm) and 30 ${\times}$ 15cm plant spacings was observed. When weed was nor pulled out by hand, significant yield loss was resulted in 30 ${\times}$ 15cm and 40 ${\times}$ (10 ${\times}$ 10cm) plant spacings while no difference between weeding regime was observed at the 10 ${\times}$ 10cm plant spacing in both cultivars. Rice grain yield was unaffected by plant spacing for hand weeded plot in both rice cultivars. For noweeding plot, however, the highest grain yield was obtained from 10 ${\times}$10cm plant spacing and also this yield was not significantly different from the yield of hand weeded plot while significant yield loss was recognized at the 30 ${\times}$ 15cm and 40 ${\times}$ (10 ${\times}$ 10cm) plant spacings in noweeding plot. There was also a good relationship between weed weight and grain yield for both cultivars (Tongil; Y = 5.68 - 0.0127 X, r = -0.814$^*$; Yeongnamjosaengv Y = 5.04 - 0.0314 X, r =-0.9704$^{**}$). Based on these relationship, weed weight of 188.2g/sq.m for Yeongnamjosaeng and 223.6g/sq.m for Tongil was needed to reduce rice yield by 50%, respectively. This result implied that Tongil compete more efficiently against weed than Yeongnamjosaeng and hence, could be concluded that late maturing cultivar was more competitive against weed compared to early maturing cultivar.

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Study on the Behaviour of Mixtures of Herbicides in Transplanted Lowland Rice Field (논잡초방제용(雜草防除用) 제초제(除草劑)의 혼합효과(混合效果)에 관한 연구(硏究))

  • Kim, S.C.;Choi, C.D.;Lee, S.K.
    • Korean Journal of Weed Science
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    • v.3 no.1
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    • pp.69-74
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    • 1983
  • The behaviour of mixtures of herbicides was determined to obtain the basic informations about effective herbicide use, enhancing herbicidal efficacy and reducing the chemical cost. Fourteen herbicides with 91 mixed combinations were evaluated by Limpel et al method at the Echinochloa crus galli Beauv-Monochuria vaginalis Presl.-Scirpus hotarui Ohwi (importance values of these weeds were 63%, 16% and 10%, respectively) community type. Thirty eight mixed combinations showed the antagonistic response. Among these 14 mixed combinations including chlormethoxynil + naproanilide mixture were greater than 11% in antagonistic effect. On the other hand, 40 mixed combinations including chlormethoxynil + SW751 mixture showed additive response (${\pm}2%$). For synergistic response, 13 mixed combinations were belonged to this group. Particularly, 3 mixed combinations, chlormethoxynil + butachlor, chlormethoxynil + bifenox and nitrofen + ACN/MCPB/nitrofen mixtures were greater than 11% in synergistic effects. The mixture of thiobencarb + oxyfluorfen was analyzed by isobole technique. This mixture showed the synergistic response and the interaction index was approximately 2. The most optimum mixtur for inducing 90%n weed suppression was 0.012 kg ai/ha for oxyfluorfen and 0.45 kg ai/ha for thiobencarb.

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