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Development and validation of a 48-target analytical method for high-throughput monitoring of genetically modified organisms.


ABSTRACT: The rapid increase in the number of genetically modified (GM) varieties has led to a demand for high-throughput methods to detect genetically modified organisms (GMOs). We describe a new dynamic array-based high throughput method to simultaneously detect 48 targets in 48 samples on a Fludigm system. The test targets included species-specific genes, common screening elements, most of the Chinese-approved GM events, and several unapproved events. The 48 TaqMan assays successfully amplified products from both single-event samples and complex samples with a GMO DNA amount of 0.05?ng, and displayed high specificity. To improve the sensitivity of detection, a preamplification step for 48 pooled targets was added to enrich the amount of template before performing dynamic chip assays. This dynamic chip-based method allowed the synchronous high-throughput detection of multiple targets in multiple samples. Thus, it represents an efficient, qualitative method for GMO multi-detection.

SUBMITTER: Li X 

PROVIDER: S-EPMC5154595 | biostudies-literature | 2015 Jan

REPOSITORIES: biostudies-literature

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Development and validation of a 48-target analytical method for high-throughput monitoring of genetically modified organisms.

Li Xiaofei X   Wu Yuhua Y   Li Jun J   Li Yunjing Y   Long Likun L   Li Feiwu F   Wu Gang G  

Scientific reports 20150105


The rapid increase in the number of genetically modified (GM) varieties has led to a demand for high-throughput methods to detect genetically modified organisms (GMOs). We describe a new dynamic array-based high throughput method to simultaneously detect 48 targets in 48 samples on a Fludigm system. The test targets included species-specific genes, common screening elements, most of the Chinese-approved GM events, and several unapproved events. The 48 TaqMan assays successfully amplified product  ...[more]

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