Development and collaborative validation of an event-specific quantitative real-time PCR method for detection of genetically modified CC-2 maize

Front Plant Sci. 2024 Sep 10:15:1460038. doi: 10.3389/fpls.2024.1460038. eCollection 2024.

Abstract

As one of the developed genetically modified (GM) maize varieties in China, CC-2 has demonstrated promising commercial prospects during demonstration planting. The establishment of detection methods is a technical prerequisite for effective supervision and regulation of CC-2 maize. In this study, we have developed an event-specific quantification method that targets the junction region between the exogenous gene and the 5' flanking genomic DNA (gDNA) of CC-2. The accuracy and precision of this method were evaluated across high, medium, and low levels of CC-2 maize content, revealing biases within ±25% and satisfactory precision data. Additionally, we determined the limits of quantification of the method to be 0.05% (equivalent to 20 copies) of the CC-2 maize. A collaborative trial further confirmed that our event-specific method for detecting CC-2 produces reliable, comparable, and reproducible results when applied to five different samples provided by various sources. Furthermore, we calculated the expanded uncertainty associated with determining the content level of CC-2 in these samples.

Keywords: detection; event-specific PCR; genetically modified maize CC-2; quantification; real-time quantitative PCR; validation.

Grants and funding

The author(s) declare financial support was received for the research, authorship, and/or publication of this article. This work was supported by the National Biological Breeding - Major Project (grant no. 2022ZX0402010); Jilin Scientific and Technological Development Program, China (grant no. 20230508091RC); Agricultural Quality Standards and Testing Technology Institute Innovation fund Project (grant no. CXGC2023SJ107).