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      KCI등재 SCOPUS

      유전자변형 식물체 연구에서의 안전관리 고찰 = Safety management of living modified plants: A review

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      https://www.riss.kr/link?id=A108281560

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      다국어 초록 (Multilingual Abstract)

      There is a continuous rise in the commer- cialization of living modified (LM) organisms worldwide. While LM plants have not yet been cultivated in South Korea, research, development, import of products, and registration of related research facilities ...

      There is a continuous rise in the commer- cialization of living modified (LM) organisms worldwide. While LM plants have not yet been cultivated in South Korea, research, development, import of products, and registration of related research facilities are progressing. LM plants should be tested in greenhouses and fields during development. Furthermore, environmental risk assessment and safety management should be performed before their release into the environment. Research on LM plant develop- ment is conducted in laboratories as well as confined green- houses and fields. Safety management regulations are pro- vided as combination standards for the LMO Act in each research district. The accidental release of the LM petunia in Japan was a significant incident related to LM plant research. It implies that normal plants within the distance of crossing should be regarded as LM plants. In the United States, LM creeping bentgrass was released into the environment, thus necessitating the establishment of stringent measures to prevent the scattering of LM plant seeds by wind or other mediums. In South Korea, LM Zoysia and LM cotton were released through rainwater. Therefore, safety measures that prevent LM seed mixing and plant vegetative propagules escaping into the environment via rainwater must be established. Preventing the dispersal of unapproved LM plants requires significant time, expenditure, and effort. Researchers should first identify the impact of LM plants on the ecosystem, and steps to avert their environmental release must be implemented.

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      참고문헌 (Reference) 논문관계도

      1 이범규 ; 박기웅 ; 김창기 ; 강홍규 ; 선현진 ; 권용익 ; 송인자 ; 류태훈 ; 이효연, "제초제저항성 유전자변형 들잔디의 시험 격리포장 주변환경방출 모니터링" 한국잔디학회 3 (3): 305-311, 2014

      2 이범규, "유전자변형 유채의 환경 모니터링과 안전관리 연구" 한국잔디학회 9 (9): 209-218, 2020

      3 박수철 ; 정영희 ; 김경민 ; 김주곤 ; 고희종, "유전자교정 농작물의 실용화 현황 및 전망" 한국육종학회 51 (51): 175-183, 2019

      4 고세리 ; 최유리 ; 이주영 ; 장지영 ; 최규환, "유전자교정 기반 신육종기술의 글로벌 특허동향" 한국육종학회 53 (53): 337-349, 2021

      5 정유진 ; 김종미 ; 박수철 ; 조용구 ; 강권규, "신식물육종기술의 현황과 사회적 수용을 위한 노력" 한국식물생명공학회 45 (45): 299-305, 2018

      6 Bellon MR, "Transgenic maize and the evolution of landrace diversity in Mexico: The importance of farmers’behavior" 134 : 883-888, 2004

      7 Oliveira AR, "Toxicological evaluation of genetically modified cotton (Bollgard®) and Dipel ® WP on the non-target soil mite Scheloribates praeincisus (Acari: Oribatida)" 41 : 191-201, 2007

      8 Giovannetti M, "The impact of genetically modified crops on soil microbial communities" 98 : 393-417, 2005

      9 Wolfenbarger LL, "The ecological risks and benefits of genetically engineered plants" 290 : 2088-2093, 2000

      10 Mercer KL, "Stress and domestication traits increase the relative fitness of crop-wild hybrids in sunflower" 10 : 383-393, 2007

      1 이범규 ; 박기웅 ; 김창기 ; 강홍규 ; 선현진 ; 권용익 ; 송인자 ; 류태훈 ; 이효연, "제초제저항성 유전자변형 들잔디의 시험 격리포장 주변환경방출 모니터링" 한국잔디학회 3 (3): 305-311, 2014

      2 이범규, "유전자변형 유채의 환경 모니터링과 안전관리 연구" 한국잔디학회 9 (9): 209-218, 2020

      3 박수철 ; 정영희 ; 김경민 ; 김주곤 ; 고희종, "유전자교정 농작물의 실용화 현황 및 전망" 한국육종학회 51 (51): 175-183, 2019

      4 고세리 ; 최유리 ; 이주영 ; 장지영 ; 최규환, "유전자교정 기반 신육종기술의 글로벌 특허동향" 한국육종학회 53 (53): 337-349, 2021

      5 정유진 ; 김종미 ; 박수철 ; 조용구 ; 강권규, "신식물육종기술의 현황과 사회적 수용을 위한 노력" 한국식물생명공학회 45 (45): 299-305, 2018

      6 Bellon MR, "Transgenic maize and the evolution of landrace diversity in Mexico: The importance of farmers’behavior" 134 : 883-888, 2004

      7 Oliveira AR, "Toxicological evaluation of genetically modified cotton (Bollgard®) and Dipel ® WP on the non-target soil mite Scheloribates praeincisus (Acari: Oribatida)" 41 : 191-201, 2007

      8 Giovannetti M, "The impact of genetically modified crops on soil microbial communities" 98 : 393-417, 2005

      9 Wolfenbarger LL, "The ecological risks and benefits of genetically engineered plants" 290 : 2088-2093, 2000

      10 Mercer KL, "Stress and domestication traits increase the relative fitness of crop-wild hybrids in sunflower" 10 : 383-393, 2007

      11 "Publication materials"

      12 "NARO (National Agriculture and Food Research Organization)"

      13 Wu KM, "Monitoring and management strategy for Helicoverpa armigera resistance to Bt cotton in China" 95 : 220-223, 2007

      14 KBCH, "LMO status: Approval report status"

      15 Bates SL, "Insect resistance management in GM crops: Past, present and future" 23 : 57-62, 2005

      16 이범규 ; 오성덕 ; 장안철, "Influence of gene flow from GM to non-GM soybeans by the size of the pollen donor" 농업과학연구소 45 (45): 591-600, 2018

      17 Li GP, "Increasing tolerance to Cry1Ac cotton from cotton bollworm, Helicoverpa armigera, was confirmed in Bt cotton farming area of China" 32 : 366-375, 2007

      18 ISAAA, "Global status of commercialized biotech/GM crops in 2019: Biotech crops drive socioeconomic development and sustainable environment in the new frontier" ISAAA (55) : 2019

      19 Snow AA, "Genetically engineered organisms and the environment: current status and recommendations" 15 : 377-404, 2005

      20 Lu B-R, "Gene flow from genetically modified rice and its environmental consequences" 55 : 669-678, 2005

      21 최윤 ; 김병수, "GM 작물의 국내 환경방출: 민관합동조사를 중심으로" 제3섹터연구소 20 (20): 409-443, 2022

      22 Poppy G, "GM crops: Environmental risks and non-target effects" 5 : 4-6, 2000

      23 Zapiola ML, "Escape and establishment of transgenic glyphosate-resistant creeping bentgrass Agrostis stolonifera in Oregon, USA : a 4-year study" 45 : 486-494, 2008

      24 O’Callaghan M, "Effects of plants genetically modified for insect resistance on non-target organisms" 50 : 271-292, 2005

      25 Rong J, "Dramatic reduction of crop-to-crop gene flow within a short distance from transgenic rice fields" 173 : 346-353, 2007

      26 USDA-APHIS, "Determination of nonregulated status for the Scotts Company and Monsanto Company ASR368 creeping bentgrass"

      27 Parker IM, "Assessing the risks of invasion for genetically engineered plants : acceptable evidence and reasonable doubt" 78 : 193-203, 1996

      28 Kowalchuk GA, "Assessing responses of soil microorganisms to GM plants" 18 : 403-410, 2003

      29 Lee B, "A study on the trends and biosafety assessment of genetically modified crops" 7 : 1-25, 2011

      30 Kim BS, "A study on the improvement of environmental assessment for unauthorized LMO safety management" Rural Development Administration 2020

      31 이범규, "A study on the establishment of isolation distances for environmental release of biotech crops" 농업과학연구소 44 (44): 188-195, 2017

      32 Wang F, "A large-scale field study of transgene flow from cultivated rice (Oryza sativa) to common wild rice (O. rufipogon) and barnyard grass (Echinochloa crusgalli)" 4 : 667-676, 2006

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