• Title/Summary/Keyword: 익산 483호

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Qualitative PCR Detection of GM rices (Milyang 204 and Iksan 483) developed in Korea (국내에서 개발된 GM 쌀 (밀양 204호, 익산 483호)에 대한 정성 PCR 분석법 개발)

  • Kim, Jae-Hwan;Song, Hee-Sung;Jee, Sang-Mi;Ryu, Tae-Hun;Kim, Dong-Hern;Kim, Hae-Yeong
    • Applied Biological Chemistry
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    • v.48 no.4
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    • pp.335-338
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    • 2005
  • For the development of qualitative PCR detection method of genetically modified rice (Oryza sativa L.), rice species specific gene, SAMDC1 (S-adenosylmethionine decarboxylase), was selected and validated as suitable for use as an endogenous reference gene in rice. The primer pair OsSAMDC1-5'/3' with 110 bp amplicon was used for amplification of the rice endogenous gene, SAMDC1 and no amplified product was observed from 19 different plants as templates. Qualitative PCR method was assayed with 2 different GM rices (Milyang 204 and Iksan 483) developed in Korea. For the qualitative PCRs, the construct-specific detection primer pairs were constructed. Os204-5'/OsNOS-3' amplifying the junction region of GUS gene and NOS terminator introduced in Milyang 204 gave rise to an amplicon 172 bp; also, Os483-5'/OsNOS-3' amplifying the junction region of Bar gene and NOS terminator introduced in Iksan 483 gave rise to an amplicon 161 bp.

Physiological Effects of Herbicide-resistant Genetically Modified Rice (Milyang 204 and Iksan 483) Developed in Korea on Non-target Insects and a Spider (국내에서 개발된 제초제저항성 벼(밀양 204호, 익산 483호)의 비표적 곤충과 거미에 미치는 생리적 영향)

  • Kim, Young Ho
    • Korean journal of applied entomology
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    • v.56 no.4
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    • pp.331-338
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    • 2017
  • In the present study, we investigated the effects of two herbicide-resistant genetically modified rice (GM rice) varieties, Milyang 204 and Iksan 483, recently developed in Korea on non-target insects and a spider. No difference in host preferences of the English grain aphid Sitobion avenae and the brown planthopper Nilaparvata lugens were observed between GM rice and non-GM rice. Wolf spider Pirata subpiraticus, feeding on N. lugens reared on GM rice or non-GM rice, revealed no significant difference in body weight. P. subpiraticus, fed with N. lugens reared on Milyang 204, showed survival rates similar to that in P. subpiraticus fed with N. lugens reared on non-GM rice. However, P. subpiraticus feeding on N. lugens reared on Iksan 483 demonstrated significantly lower survival rates than that in P. subpiraticus feeding on N. lugens reared on Milyang 204 or non-GM rice. In addition, when larvae of the western honeybee Apis mellifera were supplied with Iksan 483 pollen, a significantly longer pupal period occurred, as compared with that of A. mellifera supplied with pollen of Milyang 204 or non-GM rice. As GM rice has negative effects on P. subpiraticus, which is an important predator in agricultural ecosystems, and on A. mellifera, which plays important roles in pollination and honey production, additional studies on risk assessment of GM rice should be conducted before releasing newly developed herbicide-resistant GM rice to the agricultural environment.