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4.Current Status and Detection of Genetically Modified Organism
| 發布日期:2002-04-04 | 更新日期:2023-03-09 發布單位:

Current Status and Detection of Genetically Modified Organism

TZU-MING PAN

 Department of Agriculture Chemistry, National Taiwan University, No. 1, Section 4, Roosevelt Road, Taipei, Taiwan, ROC 

(Received: September 30, 2002; Accepted: November 22, 2002)

  ABSTRACT 

   Production of genetically modified (GM) crops is currently concentrated in just a few countries. In 2001, 99% of GM crops was produced in four countries: US 68%, Argentina 11.8%, Canada 6% and China 3%. Crop-wise, GM soybean made up 63% of global GM planting area and GM corn accounts for 19%, followed by GM cotton (13%) and GM canola (5%). In terms of the global planting area, GM soybean and cotton accounted for 46% and 20%, respectively. Two major genetically modified organisms (GMO) traits in 2001 were herbicide tolerant crops, accounted for 77% of all GM crops, while Bt maize accounted for 11%. Legislation enacted worldwide to regulate the presence of GMOs in crops, foods and ingredients, necessitated the development of reliable and sensitive methods for GMO detection. In this article, protein- and DNA-based methods employing western blots, enzyme-linked immunosorbant assay, lateral flow strips, Southern blots, qualitative-, quantitative-, real-time- and limiting dilution-PCR methods, are discussed. Where information on modified gene sequences is not available, new approaches, such as near-infrared spectrometry, might tackle the problem of detection of non-approved genetically modified (GM) foods. The efficiency of screening, identification and confirmation strategies should be examined with respect to false-positive rates, disappearance of marker genes, increased use of specific regulator sequences and the increasing number of GM foods.

Key words: genetically modified organism (GMO), genetically modified food (GM-food), western blots, enzyme-linked immunosorbant assay (ELISA), lateral flow strips, Southern blots, qualitative-PCR, quantitative-PCR, real-time-PCR, limiting dilution-PCR    
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