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Homepage>BS Standards>67 FOOD TECHNOLOGY>67.050 General methods of tests and analysis for food products>PD ISO/TS 21569-2:2021 Molecular biomarker analysis. Methods of analysis for the detection of genetically modified organisms and derived products Construct-specific real-time PCR method for detection of event FP967 in linseed and linseed products
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PD ISO/TS 21569-2:2021 Molecular biomarker analysis. Methods of analysis for the detection of genetically modified organisms and derived products Construct-specific real-time PCR method for detection of event FP967 in linseed and linseed products

PD ISO/TS 21569-2:2021

Molecular biomarker analysis. Methods of analysis for the detection of genetically modified organisms and derived products Construct-specific real-time PCR method for detection of event FP967 in linseed and linseed products

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Standard number:PD ISO/TS 21569-2:2021
Pages:18
Released:2021-08-04
ISBN:978 0 539 15975 2
Status:Standard
PD ISO/TS 21569-2:2021 - Molecular Biomarker Analysis

PD ISO/TS 21569-2:2021 - Molecular Biomarker Analysis

Standard Number: PD ISO/TS 21569-2:2021

Pages: 18

Released: 2021-08-04

ISBN: 978 0 539 15975 2

Status: Standard

Overview

In the rapidly evolving field of molecular biomarker analysis, the PD ISO/TS 21569-2:2021 standard stands out as a critical resource for professionals involved in the detection of genetically modified organisms (GMOs) and their derived products. This standard provides a comprehensive and construct-specific real-time PCR method for the detection of event FP967 in linseed and linseed products.

Why Choose PD ISO/TS 21569-2:2021?

The detection of GMOs is a crucial aspect of modern biotechnology, agriculture, and food safety. The PD ISO/TS 21569-2:2021 standard offers a robust and reliable method for identifying the presence of the FP967 event in linseed, ensuring that your analysis is both accurate and compliant with international standards.

Key Features

  • Construct-Specific Detection: This standard focuses on the detection of the specific genetic construct associated with event FP967 in linseed, providing precise and targeted results.
  • Real-Time PCR Method: Utilizing real-time PCR technology, this standard ensures high sensitivity and specificity in the detection process, making it a valuable tool for laboratories and research facilities.
  • Comprehensive Guidelines: With 18 pages of detailed instructions and guidelines, this standard covers all aspects of the detection process, from sample preparation to data interpretation.
  • International Compliance: Released on 2021-08-04, this standard is up-to-date with the latest international regulations and best practices, ensuring that your methods are globally recognized and accepted.

Applications

The PD ISO/TS 21569-2:2021 standard is designed for a wide range of applications, including:

  • Food Safety Testing: Ensure that linseed and linseed products are free from unauthorized GMOs, protecting consumer health and complying with regulatory requirements.
  • Agricultural Biotechnology: Monitor and verify the presence of genetically modified traits in linseed crops, supporting research and development efforts.
  • Regulatory Compliance: Meet the stringent requirements of international regulatory bodies by adhering to a recognized and validated detection method.
  • Research and Development: Utilize the standard in academic and industrial research to advance the understanding of GMO detection and its applications.

Benefits

Adopting the PD ISO/TS 21569-2:2021 standard offers numerous benefits, including:

  • Enhanced Accuracy: The construct-specific real-time PCR method ensures precise detection of the FP967 event, reducing the risk of false positives and negatives.
  • Improved Efficiency: Streamline your detection processes with clear and detailed guidelines, saving time and resources in the laboratory.
  • Global Recognition: Align your methods with internationally recognized standards, enhancing the credibility and acceptance of your results.
  • Regulatory Assurance: Stay compliant with the latest regulations and standards, minimizing the risk of non-compliance and associated penalties.

Technical Specifications

The PD ISO/TS 21569-2:2021 standard includes the following technical specifications:

  • Standard Number: PD ISO/TS 21569-2:2021
  • Pages: 18
  • Released: 2021-08-04
  • ISBN: 978 0 539 15975 2
  • Status: Standard

Conclusion

In conclusion, the PD ISO/TS 21569-2:2021 standard is an essential tool for professionals involved in the detection of genetically modified organisms and their derived products. With its construct-specific real-time PCR method, comprehensive guidelines, and international compliance, this standard provides a reliable and efficient solution for detecting the FP967 event in linseed and linseed products. Enhance the accuracy, efficiency, and credibility of your GMO detection processes by adopting this state-of-the-art standard.

DESCRIPTION

PD ISO/TS 21569-2:2021


This standard PD ISO/TS 21569-2:2021 Molecular biomarker analysis. Methods of analysis for the detection of genetically modified organisms and derived products is classified in these ICS categories:
  • 67.050 General methods of tests and analysis for food products

This document specifies a procedure for the detection of a DNA sequence present in a genetically modified linseed (Linum usitatissimum) line (event FP967, also named as “CDC Triffid”). For this purpose, extracted DNA is used in a real-time PCR and the genetic modification (GM) is specifically detected by amplification of a 105 bp DNA sequence representing the transition between the nopaline synthase gene terminator (Tnos) from Agrobacterium tumefaciens and the dihydrofolate reductase gene (dfrA1) from a Class 1 integron of Escherichia coli.

The method described is applicable for the analysis of DNA extracted from foodstuffs. It can also be suitable for the analysis of DNA extracted from other products such as feedstuffs and seeds. The application of this method requires the extraction of an adequate amount of amplifiable DNA from the relevant matrix for the purpose of analysis.