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Effect of insect-resistant genetically engineered (Bt-T) rice and conventional cultivars on the brown planthopper (Nilaparvata lugens Stål) 원문보기

Korean journal of agricultural science, v.49 no.3, 2022년, pp.511 - 520  

Sung-Dug, Oh (Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration) ,  Eun Ji, Bae (Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration) ,  Kijong, Lee (Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration) ,  Soo-Yun, Park (Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration) ,  Myung-Ho, Lim (Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration) ,  Doh-Won, Yun (Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration) ,  Seong-Kon, Lee (Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration) ,  Gang-Seob, Lee (Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration) ,  Soon Ki, Park (School of Applied Biosci) ,  Jae Kwang, Kim ,  Sang Jae, Suh

Abstract AI-Helper 아이콘AI-Helper

Insect-resistant transgenic rice (Bt-T) expresses a toxic protein (mcry1Ac1) derived from the soil bacterium Bacillus thuringiensis found in the rice cultivar Dongjin with an insecticidal property against rice leaf roller (Cnaphalocrocis medinalis). In this study, to investigate the impact of Bt-T o...

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표/그림 (5)

참고문헌 (27)

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  2. Amin MR, Oh SD, Suh SJ. 2020b. Comparing the effects of GM and non-GM soybean varieties on non-target arthropods.?Entomological Research 50:423-432. 

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  5. Chang X, Sun L, Ning D, Dang C, Yao H, Fang Q, Peng Y, Wang F, Ye G. 2020. Cry1C rice doesn't affect the ecological?fitness of rice brown planthopper, Nilaparvata lugens either under RDV stress or not. Scientific Reports 10:16423. 

  6. Cho JI, Park SH, Lee GS, Kim SM, Lim SM, Kim YS, Park SC. 2020. Current status of GM crop development and?commercialization. Korean Journal of Breeding Science Special Issue 52:40-48. [in Korean] 

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  8. Choi WS, Ahn SJ, Yoon JH, Kim HH, Jang JW, Park JJ. 2015. Comparing of insect fauna between transgenic rice and?common rice cultivar based on light tap and sweeping methods. Journal of Agriculture & Life Science 49:1-17. [in?Korean] 

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  12. Hu LX, Chi H, Zhang J, Zhou Q, Zhang RJ. 2010. Life-table analysis of the performance of Nilaparvata lugens?(Hemiptera: Delphacidae) on two wild rice species. Journal of Economic Entomology 103:1628-1635. 

  13. ISAAA (International Service for the Acquisition of Agri-biotech Applications). 2020. Global status of commercialized?biotech/GM crops:2019, Brief No. 55-2019. ISAAA, New York, USA. 

  14. Kim DY, Eom MS, Kim HJ, Ko EM, Pack IS, Park JH, Park KW, Nam KH, Oh SD, Kim JK, et al. 2020. Gene flow from?transgenic soybean, developed to obtain recombinant proteins for use in the skin care industry, to non-transgenic?soybean. Applied Biological Chemistry 63:65. 

  15. Kim MK, Cohen MB, Roh JH, Kim YH, Im DJ, Hur IB, Chung DH, Kim KH. 1998. Reactions of resistance to brown?planthopper in Japonica rice cultivars. RDA Journal of Crop Protection 40:10-15. [in Korean] 

  16. Kim WJ, Park HS, Kim HS, Ha KY, Cho YC, Lee JH, Kim BK. 2016. Response to brown planthopper resistance genes at?rice seedling stage. Korean Journal of Breeding Science 48:29-36. [in Korean] 

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  18. Lee SY, Yeo YS, Park SY, Oh SW, Yoon EK, Shin KS, Woo HJ, Lim MH. 2015. Composition analysis of herbicide tolerant?Ab rice and insect-resistant Bt rice. Korean Journal of Breeding Science 47:255-263. [in Korean] 

  19. Lim MH. 2018. Development of an insect-resistant rice with mcry1Ac1 gene for substantial equivalence assessment.?Ph.D. dissertation, Kyungpook National Univ., Daegu, Korea. [in Korean] 

  20. Lu ZB, Liu YE, Han NS, Tian JC, Peng YF, Hu C, Guo YY, Ye GY. 2014. Transgenic cry1C or cry2A rice has no adverse?impacts on the life-table parameters and population dynamics of the brown planthopper, Nilaparvata lugens?(Hemiptera Delphacidae). Pest Management Science 71:937-945. 

  21. Mannakkara A, Niu L, Ma WH, Lei CL. 2013. Zero effect of Bt rice on expression of genes coding for digestion,?detoxification and immune responses and developmental performances of brown planthopper Nilaparvata?lugens (Stal). Journal of Insect Physiology 59:985-993. 

  22. Oh SD, Min SK, Kim JK, Park JH, Kim CG, Park SY. 2020. Evaluation of the acute toxicity of theoredoxin (TRX) transgenic?soybean to Daphnia magna. Korean Journal of Agricultural Science 47:791-802. [in Korean] 

  23. Oh SW, Lee SM, Park SY, Lee SY, Lee WH, Cho HS, Yeo YS. 2016. Rice biotechnology and current development. Journal?of the Korean Society of International Agriculture 28:24-36. [in Korean] 

  24. Park HH, Park CG, Park HM, Uhm KB. 2006. Rearing system for rice leaffolder, Cnapholocrocis medinalis (Lepidoptera:?Cramdidae) using corn seedlings. Korean Journal of Applied Entomology 45:91-95. 

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  26. Song YH, Choi SY, Park JS. 1972. Studies on the resistance of "Tong-il" variety (IR-667) to brown planthopper,?Nilaparvata lugens STAL. Korean Journal of Plant Protection 11:61-68. [in Korean] 

  27. Yi HB, Kim HJ, Na SM. 2016. The methodology for environmental risk assessments of non-target organisms (insects)?on LM rice. Korean Journal of Environment and Ecology 30:710-723. [in Korean] 

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