• Title/Summary/Keyword: GM maize

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Detection of Genetically Modified Maize by Multiplex PCR Method

  • HEO , MUN-SEOK;KIM, JAE-HWAN;PARK, SUN-HEE;WOO, GUN-JO;KIM, HAE-YEONG
    • Journal of Microbiology and Biotechnology
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    • v.14 no.6
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    • pp.1150-1156
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    • 2004
  • The GMO (Genetically Modified Organism) labeling system on raw materials has been in Korea since March 2001, and genetically modified organisms (GMOs)-derived foods since July 2001. Therefore, we designed a multiplex PCR method to ascertain the validity of the labeling system and to monitor the status of circulation for genetically modified maize (GM Maize). Five lines of GM Maize (GA21, TC1507, Mon810, NK603, and Bt176) were used, and specific primer pairs were designed to detect each line. Using this method, the different lines of GM Maize were monitored from raw products and processed foods in Korean market. Some of the maize processed foods and raw materials were shown to contain more than one foreign gene. This method was found to be effective for-detecting five different GM Maize in a single reaction.

Quantitative Analysis of Two Genetically Modified Maize Lines by Real-Time PCR

  • Lee Seong-Hun;Kang Sang-Ho;Park Yong-Hwan;Min Dong-Myung;Kim Young-Mi
    • Journal of Microbiology and Biotechnology
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    • v.16 no.2
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    • pp.205-211
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    • 2006
  • A quantitative analytical method to detect new lines of genetically modified (GM) maize, NK603 and TC1507, has been developed by using a real-time polymerase chain reaction (PCR). To detect these GM lines, two specific primer pairs and probes were designed. A plasmid as a reference molecule was constructed from an endogenous DNA sequence of maize, a universal sequence of a cauliflower mosaic virus (CaMV) 35S promoter used in most GMOs, and each DNA sequence specific to the NK603 and TC1507 lines. For the validation of this method, the test samples of 0, 0.1, 0.5, 1.0, 3.0, 5.0, and 10.0% each of the NK603 and TC1507 GM maize were quantitated. At the 3.0% level, the biases (mean vs. true value) for the NK603 and TC1507 lines were 3.3% and 15.7%, respectively, and their relative standard deviations were 7.2% and 5.5%, respectively. These results indicate that the PCR method developed in this study can be used to quantitatively detect the NK603 and TC1507 lines of GM maize.

Appearance/Instance of Genetically Modified Maize at Grain Receiving Harbors and Along Transportation Routes in Korea

  • Han, Sung Min;Kim, Do Young;Uddin, Md. Romij;Hwang, Ki Seon;Lee, Bumkyu;Kim, Chang-Gi;Park, Kee Woong
    • Weed & Turfgrass Science
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    • v.3 no.3
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    • pp.221-224
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    • 2014
  • Genetically modified (GM) crops are not permitted to be cultivated in Korea, but can only be imported as food or feed purposes. The import of GM crops has sharply increased in recent years, thus raising concerns with regard to the unintentional escape of these crops during transport and manufacturing as well as the subsequent contamination of local, non-GM plants. Hence, monitoring of GM crops was studied in or outside of grain receiving ports as well as from feed-processing plants in Korea during July 2008. We observed spilled maize grains and established plants primarily in storage facilities that are exposed around the harbors and near transportation routes of the feed-processing areas. Based on the PCR analyses, a total of 17 GM maize plants and 11 seeds were found among the samples. In most cases, the established maize plants found in this study were at the vegetative stage and thus failed to reach the reproductive stage. This study concludes that, in order to prevent a genetic admixture in the local environment for GM crops or seeds, frequent monitoring work and proper action should be taken.

Development of a multiplex PCR method for identification of four genetically modified maize lines and its application in living modified organism identification

  • Park, Jin Ho;Seol, Min-A;Eum, Soon-Jae;Kim, Il Ryong;Lim, Hye Song;Lee, Jung Ro;Choi, Wonkyun
    • Journal of Plant Biotechnology
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    • v.47 no.4
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    • pp.309-315
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    • 2020
  • Advances in biotechnology have led to progress in crop genetic engineering to improve agricultural productivity. The use of genetically modified (GM) crops has increased, as have consumers' and regulators' concerns about the safety of GM crops to human health, and ecological biodiversity. As such, the identification of GM crops is a critical issue for developers and distributors, and their labeling is mandatory. Multiplex polymerase chain reaction (PCR) has been developed and its use validated for the detection and identification of GM crops in quarantine. Herein, we established a simultaneous detection method to identify four GM maize events. Event-specific primers were designed between the junction region of transgene and genome of four GM maize lines, namely 5307, DAS-40278-9, MON87460, and MON87427. To verify the efficiency and accuracy of the multiplex PCR we used specificity analysis, limit of detection evaluation, and mixed certified reference materials identification. The multiplex PCR method was applied to analyze 29 living, modified maize volunteers collected in South Korea in 2018 and 2019. We performed multiplex PCR analysis to identify events and confirmed the result by simplex PCR using each event-specific primer. As a result, rather than detecting each event individually, the simultaneous detection PCR method enabled the rapid analysis of 29 GM maize volunteers. Thus, the novel multiplex PCR method is applicable for living modified organism volunteer identification.

WIND DEPENDENT DISPERSION PATTERN CLASSIFICATION IN THE POLLINATION OF GENETICALLY MODIFIED MAIZE

  • Seo, Woo Kang;Kim, Tae Keuk;Heo, Min Seong;Kim, Dong-Su;Jin, Hong Sung
    • Honam Mathematical Journal
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    • v.41 no.4
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    • pp.837-849
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    • 2019
  • Extended elementary cellular automata (EECA) is used to analyze the pattern of genetically modified (GM) gene dispersion to wild genes. Pollination of GM maize mainly occurs by wind. Wind direction was set to two directions left to right and up to down on the cells. Sixteen cases were analyzed to show six kinds of classes of pattern for sixteen iterations. Wind directions were fixed for the simulations to see the effect of the GM maize dispersion by the wind.

Effect of physically contained greenhouse covered by fine mesh on pollen dispersal in maize

  • Watanabe, Shin;Kamada, Hiroshi;Ezura, Hiroshi
    • Proceedings of the Korean Society of Plant Biotechnology Conference
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    • 2005.11a
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    • pp.367-370
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    • 2005
  • The risk from genetically modified (GM) plants results from the possibility of gene contamination producing adverse effects on biological diversity by introducing herbicide or insect resistance into related plants or weeds (NAS 2002). The concern about the leakage of genes from GM plants into the environment has primarily focused on pollen that could be wind-borne for long distances. During the period of fisk assessment in Japan, physical containment is applied as a measure of reducing gene flow via the dispersal of pollen from GM plants into the surrounding environment In this study, we tried to estimate the effect of physically contained greenhouse covered by 1-mm fine mesh to reduce pollen dispersal by researching cross pollination rate between non-GM yellow maize in a greenhouse and silver maize outside the greenhouse.

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Detection of Eight Different Events of Genetically Modified Maize by Multiplex PCR Method

  • Kim, Jae-Hwan;Song, Hee-Sung;Heo, Mun-Seok;Lee, Woo-Young;Lee, Soon-Ho;Park, Sun-Hee;Park, Hye-Kyung;Kim, Myung-Chul;Kim, Hae-Yeong
    • Food Science and Biotechnology
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    • v.15 no.1
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    • pp.148-151
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    • 2006
  • Multiplex PCR was performed to simultaneously detect eight different events of genetically modified (GM) maize. Specific primers were constructed from GA21, T25, TC1507, Mon810, Mon863, Event176, Bt11, and NK603 events of GM maize. Using this PCR method, specific GM maize was monitored in commercialized foods and feed.

Monitoring of Genetically Modified Soybean and Maize Processed Foods in Busan (부산지역 유통중인 콩 및 옥수수 가공식품의 유전자재조합 원료 사용실태 모니터링)

  • Min, Sang-Kee;Lee, Na-Eun;Kim, Kyu-Won;Jung, Gu-Young
    • Journal of Life Science
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    • v.16 no.5
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    • pp.806-811
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    • 2006
  • The regulation of labelling criterion for genetically modified (GM) foods has been enforced since 2001 in Korea. Therefore, GM soybean (GMS) or GM maize (GMM) processed foods must be labeled as GMO derived. We surveyed to see whether this regulation is kept relevantly or not and the distributive statue of GM processed foods. Using the method of polymerase chain reaction (PCR) based on endogenous gene (Le1n, SSIIb), promoter gene (P35S), terminator gene (NOS) and transgenic gene (RRS, Bt11, Bt176, GA21, T25, Mon810), we detected GMS and GMM processed foods circulating at the market in Busan area. Out of total 100 samples, 38 items were showed to be contaminated with recombinant gene by qualitative PCR. Among 82 domestic and 18 imported items, 32 (39.0%) and 6 (33.3%) items were detected with GM ingredients respectively. Also among the 80 soybean and 20 maize processed foods, 23 (28.7%) and 15 (75.0%) foods were sensitive to detect GMS and GMM ingredients respectively. For the qualitative PCR positive foods, we chased identity preservation (IP) certificates. And we verified that the PCR positive crops were grown up, harvested and shipped separately from GMO but just mixed with GMO in the threshold of the non attentional contamination levels (3%). Thus we can not find out any regulation-violent case at all. The results of this study will help to keep the regulations of GM labelling and be informative to consumers who want to know the laboratory results of GMO testing.

Development of a Multiplex Polymerase Chain Reaction Method for Simultaneous Detection of Genetically Modified Soy and Maize

  • Park, Kyoung-Sik;Kim, Mi-Gyeong;Leem, Dong-Gil;Yoon, Tae-Hyung;No, Ki-Mi;Hong, Jin;Kwon, Eun-Mi;Moon, Ae-Rie;Jeong, Ja-Young
    • Journal of Food Hygiene and Safety
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    • v.25 no.3
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    • pp.278-280
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    • 2010
  • This study was aimed to develop a novel qualitative multiplex polymerase chain reaction (PCR) for simultaneous detection of genetically modified (GM) soy and maize within a single reaction. The specific primers designed to detect four respective GM events (A2704-12, MON88017, Bt11, and MON863) were included in the tetraplex PCR system. Each of PCR products for four GM events could be distinguished by agarose gel based on their different lengths. The specificity and reproducibility of this multiplex PCR were evaluated. This multiplex PCR consistently amplified only a fragment corresponding to a specific inserted gene in each of the four GM events and also amplified all four of the PCR products in the simulated GM mixture. These results indicate that this multiplex PCR method could be an effective qualitative detection method for screening GM soy and maize in a single reaction.

Event-specific Detection Methods for Genetically Modified Maize MIR604 Using Real-time PCR

  • Kim, Jae-Hwan;Kim, Hae-Yeong
    • Food Science and Biotechnology
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    • v.18 no.5
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    • pp.1118-1123
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    • 2009
  • Event-specific real-time polymerase chain reaction (PCR) detection method for genetically modified (GM) maize MIR604 was developed based on integration junction sequences between the host plant genome and the integrated transgene. In this study, 2 primer pairs and probes were designed for specific amplification of 100 and 111 bp DNA fragments from the zSSIIb gene (the maize endogenous reference gene) and MIR604. The quantitative method was validated using 3 certified reference materials (CRMs) with levels of 0.1, 1, and 10% MIR604. The method was also assayed with 14 different plants and other GM maize. No amplification signal was observed in real-time PCR assays with any of the species tested other than MIR604 maize. As a result, the bias from the true value and the relative deviation for MIR604 was within the range from 0 to 9%. Precision, expressed as relative standard deviation (RSD), varied from 2.7 to 10% for MIR604. Limits of detections (LODs) of qualitative and quantitative methods were all 0.1%. These results indicated that the event-specific quantitative PCR detection system for MIR604 is accurate and useful.