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      KCI등재 SCOPUS

      Assessing the potential invasiveness of transgenic plants in South Korea: a three-year case study on sunflowers

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      https://www.riss.kr/link?id=A108197064

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      다국어 초록 (Multilingual Abstract)

      Background: The introduction of new living modified (LM) crops may pose a latent threat to the biodiversity of each country. Here, we used sunflowers (Helianthus annuus L.) as a study system to investigate the potential for invasiveness of LM crops un...

      Background: The introduction of new living modified (LM) crops may pose a latent threat to the biodiversity of each country. Here, we used sunflowers (Helianthus annuus L.) as a study system to investigate the potential for invasiveness of LM crops under different environmental conditions when released into a natural ecosystem in South Korea. We examined the seed germination, survival, and flowering of sunflowers under competition with wild plants at different sowing dates (March–December) and plot sizes (1 m × 1 m and 2 m × 2 m).
      Results: The germination rate showed a significant difference according to the sowing date. In addition, several sunflowers survived in plots with a high germination rate, which also led to a higher flowering rate. We found that the smaller the plot, the smaller the area available for inter-species competition, and the higher the number of surviving sunflower plants. The relative dominance and importance value of the species varied significantly between the sowing dates; in particular, sunflowers sown in March could compete with wild plants for longer than those sown on other sowing dates.
      Conclusions: These observations indicate that the potential for invasiveness of sunflowers differs depending on the environmental conditions and seed density at the time of release.

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      참고문헌 (Reference)

      1 Elezovic I, "Yield and yield components of imidazolinone-resistant sunflower (Helianthus annuus L.) are influenced by pre-emergence herbicide and time of post-emergence weed removal" 128 : 137-146, 2012

      2 Tonev T, "Weed association dynamics in the sunflower fields" 63 (63): 586-593, 2020

      3 Kaur S, "Understanding crop-weed-fertilizer-water interactions and their implications for weed management in agricultural systems" 103 : 65-72, 2018

      4 USDA-APHIS, "USDA-APHIS biotechnology regulatory services user guide : notification"

      5 Stewart CN, "Transgene introgression from genetically modified crops to their wild relatives" 5 (5): 310-, 2004

      6 Raunkiaer C, "The life forms of plants and statistical plant geography" Clarendon Press 1934

      7 Raybould A, "The bucket and the searchlight : formulating and testing risk hypotheses about the weediness and invasiveness potential of transgenic crops" 9 (9): 123-133, 2010

      8 Williamson MH, "The analysis and modelling of British invasions" 314 (314): 505-522, 1986

      9 Khalifa FM, "Temperature-germination responses of sunflower (Helianthus annuus L.) genotypes" 23 (23): 97-104, 2000

      10 KMA, "Synoptic Weather Observation, Statistics by Condition"

      1 Elezovic I, "Yield and yield components of imidazolinone-resistant sunflower (Helianthus annuus L.) are influenced by pre-emergence herbicide and time of post-emergence weed removal" 128 : 137-146, 2012

      2 Tonev T, "Weed association dynamics in the sunflower fields" 63 (63): 586-593, 2020

      3 Kaur S, "Understanding crop-weed-fertilizer-water interactions and their implications for weed management in agricultural systems" 103 : 65-72, 2018

      4 USDA-APHIS, "USDA-APHIS biotechnology regulatory services user guide : notification"

      5 Stewart CN, "Transgene introgression from genetically modified crops to their wild relatives" 5 (5): 310-, 2004

      6 Raunkiaer C, "The life forms of plants and statistical plant geography" Clarendon Press 1934

      7 Raybould A, "The bucket and the searchlight : formulating and testing risk hypotheses about the weediness and invasiveness potential of transgenic crops" 9 (9): 123-133, 2010

      8 Williamson MH, "The analysis and modelling of British invasions" 314 (314): 505-522, 1986

      9 Khalifa FM, "Temperature-germination responses of sunflower (Helianthus annuus L.) genotypes" 23 (23): 97-104, 2000

      10 KMA, "Synoptic Weather Observation, Statistics by Condition"

      11 Loose LH, "Sunflower emergence and initial growth in soil with water excess" 37 (37): 644-655, 2017

      12 Ebrahimian E, "Seed yield and oil quality of sunflower, safflower, and sesame under different levels of irrigation water availability" 218 : 149-157, 2019

      13 Bailleul D, "Seed spillage from grain trailers on road verges during oilseed rape harvest : an experimental survey" 7 (7): e32752-, 2012

      14 Nam KH, "Seed germination of sunflower as a case study for the risk assessment and management of transgenic plants used for environmental remediation in South Korea" 12 (12): 10110-, 2020

      15 Simpson GM, "Seed dormancy in grasses" Cambridge University Press 1990

      16 Sardana V, "Role of competition in managing weeds : an introduction to the special issue" 95 : 1-7, 2017

      17 Watkinson AR, "Predictions of biodiversity response to genetically modified herbicide-tolerant crops" 289 (289): 1554-1557, 2000

      18 Hong SH, "Predicting impacts of climate change on northward range expansion of invasive weeds in South Korea" 10 (10): 1604-, 2021

      19 Pradeep Adhikari ; 전자영 ; 김현우 ; 신만석 ; Prabhat Adhikari ; 서창완, "Potential impact of climate change on plant invasion in the Republic of Korea" 한국생태학회 43 (43): 352-363, 2019

      20 Dale PJ, "Potential for the environmental impact of transgenic crops" 20 (20): 843-, 2002

      21 Braun-Blanquet J, "Pflanzensoziologie" Springer 1964

      22 Munir MA, "Performance of sunflower in response to nitrogen management at different stages" 44 (44): 12-15, 2007

      23 NIBR, "National species list of Korea"

      24 Han SM, "Monitoring the occurrence of genetically modified maize in Korea : a 3-year observations" 60 (60): 285-290, 2015

      25 Park KW, "Monitoring the occurrence of genetically modified maize at a grain receiving port and along transportation routes in the Republic of Korea" 21 (21): 456-461, 2010

      26 김창기 ; Hoonbok Yi ; Sangkyu Park ; Ji Eun Yeon ; Do Young Kim ; Dae In Kim ; Kyu-Hwa Lee ; Taek Chang Lee ; In Soon Pa다 ; Won Kee Yoon ; 정순천 ; Hwan Mook Kim, "Monitoring the Occurrence of Genetically Modified Soybean and Maize around Cultivated Fields andat a Grain Receiving Port in Korea" 한국식물학회 49 (49): 218-223, 2006

      27 NIAST, "Methods of soil and plant analysis" National Institute of Agricultural Sciences and Technology 2000

      28 Katsuta K, "Long-term monitoring of feral genetically modified herbicide-tolerant Brassica napus populations around unloading Japanese ports" 65 (65): 265-275, 2015

      29 Meffin R, "Landscape-level persistence and distribution of alien feral crops linked to seed transport" 203 : 119-126, 2015

      30 KMA, "Korean climate change assessment report 2020 : the physical science basis" Korea Meteorological Administration 2020

      31 da Silva Alcântara LM, "Initial development of sunflower (Helianthus annuus L.) under weed competition with different species of grasses" 29 (29): 1-11, 2018

      32 KBCH, "Import and Export Status"

      33 Bošković J, "Impact of genetically modified plants on the environment" 2 (2): 294-311, 2019

      34 EFSA, "Guidance document of the scientific panel on genetically modified organisms for the risk assessment of genetically modified plants and derived food and feed" 99 : 1-100, 2006

      35 ISAAA, "Global status of commercialized biotech/GM crops in 2019: biotech crops drive socio-economic development and sustainable environment in the new frontier" International Service for the Acquisition of Agri-Biotech Applications 2019

      36 Cantamutto M, "Genetically modified sunflower release : opportunities and risks" 101 (101): 133-144, 2007

      37 Ghosh K, "Genetically modified organisms in crop production and their effects on the environment: methodologies for monitoring and the way ahead"

      38 Warwick SI, "Gene flow, invasiveness, and ecological impact of genetically modified crops" 1168 : 72-99, 2009

      39 Gao F, "Functional genomics of seed dormancy in wheat : advances and prospects" 5 : 458-, 2014

      40 Pilson D, "Fitness and population effects of gene flow from transgenic sunflower to wild Helianthus annuus" 58-70, 2002

      41 Casquero M, "Exoferality in sunflower (Helianthus annuus L.): a case study of intraspecific/interbiotype interference promoted by human activity" 142 : 95-101, 2013

      42 Nam KH, "Establishment of LMO risk assessment system and operation of the institute of LMO risk assessment under the jurisdiction of the Ministry of Environment"

      43 Lim HS, "Establishment and application of a monitoring strategy for living modified cotton in natural environments in South Korea" 11 (11): 10259-, 2021

      44 Gay C, "Effects of temperature and oxygen on seed germination and seedling growth in sunflower (Helianthus annuus L.)" 31 (31): 193-200, 1991

      45 Albuquerque MCD, "Effect of the type of environmental stress on the emergence of sunflower (Helianthus annus L.), soybean (Glycine max (L.) Merril) and maize (Zea mays L.) seeds with different levels of vigor" 31 (31): 465-479, 2003

      46 Pilson D, "Ecological effects of transgenic crops and the escape of transgenes into wild populations" 35 : 149-174, 2004

      47 Schneiter AA, "Description of sunflower growth stages 1" 21 (21): 901-903, 1981

      48 Snow AA, "Commercialization of transgenic plants : potential ecological risks" 47 (47): 86-96, 1997

      49 KBCH, "Biosafety Vol. 18 No. 3"

      50 KBCH, "Biosafety Vol. 18 No. 2"

      51 Raybould A, "Assessing the ecological risks from the persistence and spread of feral populations of insect-resistant transgenic maize" 21 (21): 655-664, 2012

      52 Celis-Diez JL, "Assessing frequency-dependent seed size selection : a field experiment" 81 (81): 307-312, 2004

      53 Shine C, "A guide to designing legal and institutional frameworks for alien invasive species"

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2013-11-01 평가 SCOPUS 등재 (등재유지) KCI등재
      2013-04-10 학술지명변경 한글명 : 한국생태학회지 -> Journal of Ecology and Environment
      외국어명 : Journal of Ecology and Field Biology -> Journal of Ecology and Environment
      KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-03-01 학술지명변경 외국어명 : The Korean Journal of Ecology -> Journal of Ecology and Field Biology KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.08 0.08 0.12
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.15 0.17 0.298 0.1
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