• 제목/요약/키워드: biological weed control

검색결과 52건 처리시간 0.013초

유기농 재배에서 잡초방제기술의 동향 및 전망 (Trend and Perspective of Weed Control Techniques in Organic Farming)

  • 옥환석;변종영
    • 한국잡초학회지
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    • 제31권1호
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    • pp.8-23
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    • 2011
  • 유기농 재배에서 이용되고 있는 잡초방제 기술 및 연구 동향을 검토하고 앞으로 방향을 제시하기 위하여 화학적 방제를 배제하고 기계적 방제, 경종적 방제, 생물적 방제를 포함한 종합방제 기술에 대한 문헌을 정리하고 분석하여 유기농업에서의 새로운 잡초 관리방안을 전망하고자 하였다. 물리적 방법은 기계적 방법, 열, 광선, 전기충격, 압축공기, 로봇잡초방제기술, 그리고 경종적 방법은 멀칭, 경운, 윤작, 피복식물, 경합을 이용한 방법이 포함된다. 생물적 방제는 미생물제초제, 대량증식 생물제제, 광역 생물제제, 상호대립억제물질 등이 개발되거나 또는 이용되고 있다. 유기농재배에서 성공적인 잡초방제를 위하여 물리적 방법과 경종적 방법은 제초제 사용이 제한된 조건에서 가장 중요한 잡초방제 수단이므로 기계적, 경종적 방법을 근간으로 하고 생물적 방법이 조화롭게 보완되는 종합잡초관리방법이 요구된다. 그리고 유기농 재배에서 수익을 창출하고 적합한 장기적 잡초관리 방안을 도출하기 위하여 잡초관리 결정에 도움이 되는 모델의 개발도 필요하다.

DEVELOPMENT OF A MACHINE VISION SYSTEM FOR WEED CONTROL USING PRECISION CHEMICAL APPLICATION

  • Lee, Won-Suk;David C. Slaughter;D.Ken Giles
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1996년도 International Conference on Agricultural Machinery Engineering Proceedings
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    • pp.802-811
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    • 1996
  • Farmers need alternatives for weed control due to the desire to reduce chemicals used in farming. However, conventional mechanical cultivation cannot selectively remove weeds located in the seedline between crop plants and there are no selective heribicides for some crop/weed situations. Since hand labor is costly , an automated weed control system could be feasible. A robotic weed control system can also reduce or eliminate the need for chemicals. Currently no such system exists for removing weeds located in the seedline between crop plants. The goal of this project is to build a real-time , machine vision weed control system that can detect crop and weed locations. remove weeds and thin crop plants. In order to accomplish this objective , a real-time robotic system was developed to identify and locate outdoor plants using machine vision technology, pattern recognition techniques, knowledge-based decision theory, and robotics. The prototype weed control system is composed f a real-time computer vision system, a uniform illumination device, and a precision chemical application system. The prototype system is mounted on the UC Davis Robotic Cultivator , which finds the center of the seedline of crop plants. Field tests showed that the robotic spraying system correctly targeted simulated weeds (metal coins of 2.54 cm diameter) with an average error of 0.78 cm and the standard deviation of 0.62cm.

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생물자원의 논 잡초 생물학적 방제 효과와 그에 따른 수서동물과 곤충 종수 및 벼 수량 변화 (Effects of Biocontrol Agents on Weed Control, Abundance of Aquatic Animals and Insects, and Yield in Paddy Rice Fields)

  • 최효정;서상영;최선우;이창규;엄미정;김주희;안민실;최우정
    • 한국환경농학회지
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    • 제42권1호
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    • pp.63-70
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    • 2023
  • Golden apple snails (Pomacea canaliculat) (GAS) are widely used for weed control in rice cultivation. However, concerns on the ecological risk of invasive GAS species are increasing. This study aimed to evaluate the overall impacts of GAS on weed control, abundance of aquatic animals and insects, and rice yield, in comparison with that from other biocontrol agents such as loach (Misgurnus mizolepis) and catfish (Silurus asotus), which are alternatives for biological weed control in rice paddy cultivation. Field experiments included five treatments; control, herbicide, GAS, loach, and catfish. During the rice growth, weed appearance and biological abundance were monitored, and at harvest, the rice yield was determined. Weed control efficiency was the highest for GAS treatment (100%), followed by that for herbicide (95.8%), loach (57.5%), and catfish treatments (31.7%). Insect abundance was considerably decreased in GAS treatment due to heavy weed removal, which affects the habitat of aquatic animals and insects. The amount of rice yield (unit: kg 10 a-1) was in the order of GAS (798.9) > loach (708.1) = herbicide (700.7) > catfish (629.4) > control (496.0). Therefore, considering the weed control efficiency, biological abudance, and rice yield, loach could be a potential alternative for biological weed control in organic rice farming. However, the activity of the biocontrol agents are susceptible to environmental conditions; therefore, further studies under different conditions are essential to confirm these findings.

벼 무논점파(철분코팅종자)재배에서 친환경 잡초관리를 위한 왕우렁이 이용 기술개발 (A Potential Biological Weed Control by Golden Apple Snail(Pomacea canaliculata) in Wet Hill Seeded Rice with Iron-coated Seeds)

  • 박광호
    • 한국잡초학회지
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    • 제32권3호
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    • pp.273-279
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    • 2012
  • 본 농가 실증시험에서 대조구(관행 이앙재배 및 화학적 제초제 2회 처리방법)에 비하여 무논써레 직후 왕우렁이 치패(새끼)를 ha당 12kg 처리(1차)와 무논점파(철분코팅볍씨이용) 후 유묘 2엽기경(파종 후 15일) 왕우렁이 새끼(치패) ha당 10kg(2차) 체계투입으로 100%의 높은 논 잡초방제 효과가 인정되었다. 벼 유묘의 피해정도는 하위엽에 3%정도의 피해를 보였으나 뿌리가 활착된 상태에서 후속적인 생장점을 가진 엽의 지속적인 출현으로 벼의 초장과 분얼수에는 유의적인 피해차이가 나타나지 않았다. 새끼(치패) 왕우렁이를 투입하여 무논점파재배를 한 농사실증시험에서 최종적인 수량 및 품질에서는 관행 이앙재배와 통계적으로 유의적인 차이가 없는 것으로 조사되었다.

물달개비의 생물학적 방제인자 물달개비바구미의 생활사 및 기주특이성 (Life Cycle and Host Specificity of Tanysphyrus (Tanysphyroides) major Roelofs (Coleoptera : Curculionidae), a Possible Candidate Agent for the Biological Control of Monochoria vaginalis var. plantaginea)

  • 박진영;박재읍;이인용;권오석;박종균
    • 한국잡초학회지
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    • 제31권1호
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    • pp.103-111
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    • 2011
  • 물달개비는 한국의 논에서 문제되는 난방제 잡초중의 하나이다. 물달개비의 생물학적 방제 인자로 물달개비바구미를 선발하였다. 생물학적 방제에 이용하기 위해 2006년과 2007년 계대사육을 실시하여 형태적, 생태적 특징을 조사하였다. 이 종은 1년에 한세대만 경과하며 성충으로 월동하고, 성충은 6월 하순부터 9월 하순까지 발생한다. 물달개비바구미는 알에서 성충까지 $22{\pm}0.7$일이 소요된다. 주요 농작물과 수생식물 60종을 대상으로 기주특이성을 조사 결과 물달개비의 생물학적 방제 곤충으로서의 가능성을 보였다.

Biological Weed Control with Plant Pathogenic Microorganisms.

  • Hong, Yeon-Kyu
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.15-18
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    • 2003
  • Contemporary biological control system includes the use of fungi to control weeds in agricultural ecosystems and forests. Fungal pathogens of weeds that are highly virulent and specific to target weeds, and able to be produced massively by artificial culture could be applied like chemical herbicides over the weeds.(중략)

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유기농업을 위한 잡초방제기술의 현재 미래 (Status and Prospect of Weed Control Technology for Organic Farming)

  • 전용웅
    • 한국유기농업학회지
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    • 제6권2호
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    • pp.127-140
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    • 1998
  • Organic farming excludes any use of the herbicide. The present paper reviews what can be done for effective weed control with existing weed control technology by farmers crop-ping paddy rice, field crops, vegetables, and fruit trees. If condition of the crop-land-al-lows diversified rotational use of the paddy land as paddy and upland field would minimize weed problem. Practising this is limited in acreage due to extremely limited governmental investment to the land for the purpose. Secondly, rotation of crops in the upland field breaking life cycles of various weeds adapted to each crop should reduce the weed problem. This is also limited as only a few crops are making the farmer profitable. In addition climate and tolerance of crops to high and low temperature. Monsoon rains and poor drainage restrict the freedom of choice. For any crop land year-round multiple cropping in denser planting shall lessen the weed problem, this multiple cropping practiced by 1960s has been abandoned due to laborshortage and increased production cost. Deep flooding the rice is impractical at present in Korean. Mulching crop with transparent, black , or combinated polyethylene sheet, hs been in-creasingly used. Progresses in development and use of mulch with allelopathic crop residues. inexpensive paper mulch, allelopathic crop residues, inexpensive paper mulch, allelopathic crop cultivar development, recently developed ex-perimental weeding machinaries, flamers, microbial herbicides, biological control organisms, soil sterilization techniques have been critically reviewed for their adoption into existing in-tegrated weeding system. Unfortunately, information on cost-benifit, and labor-benefit, for the various methods above mentioned are lacking. Urgent need for the research on rational weeding in organic farming, and herbicide low-input farming is emphasized.

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The Effects of Biological Control using the Composted Liquid Manure on Large Patch in Zoysiagrass (Zoysia japonica)

  • Ryu, Ju Hyun;Shim, Gyu Yul;Lee, Sang-Kook;Kim, Ki Sun
    • Weed & Turfgrass Science
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    • 제3권4호
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    • pp.354-361
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    • 2014
  • This study was conducted to investigate whether several composted liquid manures (CLMs) are useful for biological control of large patch on zoysiagrass and investigate the chemical and biological factors to suppress large patch in soil treated with CLMs. The CLMs were produced at 4 different facilities for livestock excretion treatments located in Korea. Field experiments were carried out at 5 golf courses located near each facility. CLM and Chemical fertilizer (CF: water soluble fertilizer, 20-20-20) were applied four and three times with N at $12g\;m^{-2}$ per year, respectively. There was significant increase of concentration of K, Na, and Cu of soil treated with CLM compared to CF treatment. Among experimental plots, CN and GG2 plot sites were shown significant higher effect of biological control 80% and 50% respectively against large patch disease. The number of bacteria, Actinomycetes, and fungi in soil at these sites significantly increased and fluorescein diacetate hydrolytic activity was enhanced, while the soil was treated with CLM. The results of this study demonstrated that CLM application has effect on soil to suppress large patch and reduce the use of fungicide in environment-friendly turf management.

Current status and agronomic aspects of herbicide resistance in Korea

  • Bo, Aung Bo;Jeong, In Ho;Won, Ok Jae;Jia, WeiQiang;Yun, Hye Jin;Khaitov, Botir;Le, Thi Hien;Umurzokov, Mirjalol;Ruziev, Farrukh;Lim, Min Ju;Cho, Kwang Min;Park, Kee Woong;Lee, Jeung Joo
    • 농업과학연구
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    • 제46권2호
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    • pp.405-416
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    • 2019
  • Weeds are a serious problem in crop production. Use of synthetic herbicides is rapidly increasing in weed management worldwide including Korea. Herbicide application reduces the time spent on weed control. However, the evolution of resistance to herbicides in weeds has become widespread as a natural response to selection pressure imposed by agricultural management activities. If an herbicide with the same mechanisms of action is used repeatedly and intensively, it can rapidly select for a weed biotype that shifts toward difficult-to-control becoming a more tolerant weed and lead to the evolution of herbicideresistant weeds. Moreover, agricultural and biological factors have an important role in the development of herbicide-resistant weed populations. Mitigating the evolution of herbicide resistance in weeds relies on reducing selection through the diversification of weed control techniques. The resistance management of weeds in the future will strongly depend on intensive cropping systems. The current situation of intensive cropping systems with their heavy reliance on the efficacy of chemical weed control will not lead to significant containment of this problem. Therefore, management strategies need to overcome the further spread of herbicide resistance in weeds in Korean crop production. This review presents the current information on herbicide resistance in Korea and factors controlling the development of herbicide resistant weeds.

Leaf Blight Caused byCurvularia intermedia on the Invasive Weed Lactuca serriola in Korea

  • Jin A Lee;Seon Young Lee;Young-Joon Choi
    • 한국균학회지
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    • 제51권3호
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    • pp.245-249
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    • 2023
  • Prickly lettuce (Lactuca serriola), an invasive annual plant, poses a significant threat to the agricultural systems of many countries, including Korea. In 2020, leaf blight symptoms were observed in the prickly lettuce populations of various farms across Korea. Detailed morphological and molecular sequence analyses revealed that the disease was caused by the fungus, Curvularia intermedia. A pathogenicity test confirmed that the fungus can cause the same symptoms in healthy prickly lettuce, thereby fulfilling Koch's postulates. To the best of our knowledge, this is the first report of C. intermedia causing leaf blight on L. serriola in Korea, suggesting its potential as a biocontrol agent for this weed. However, further investigations are necessary to determine its ecological impact to prevent any non-target effects.