Related Experiment Video
Updated: Apr 24, 2026

Development of Targeting Induced Local Lesions IN Genomes TILLING Populations in Small Grain Crops by Ethyl Methanesulfonate Mutagenesis
Published on: July 16, 2019
Model-based tolerance intervals derived from cumulative historical composition data: application for substantial
Bonnie Hong1, Tracey L Fisher, Theresa S Sult
1Pioneer Hi-Bred International, Inc., 2450 S.E. Oak Tree Court, Ankeny, Iowa 50021, United States.
Abstract:
Compositional analysis is a requisite component of the substantial equivalence framework utilized to assess genetically modified (GM) crop safety. Statistical differences in composition data between GM and non-GM crops require a context in which to determine biological relevance. This context is provided by surveying the natural variation of key nutrient and antinutrient levels within the crop population with a history of safe use. Data accumulated from various genotypes with a history of safe use cultivated in relevant commercial crop-growing environments over multiple seasons are discussed as the appropriate data representative of this natural variation. A model-based parametric tolerance interval approach, which accounts for the correlated and unbalanced data structure of cumulative historical data collected from multisite field studies conducted over multiple seasons, is presented. This paper promotes the application of this tolerance interval approach to generate reference ranges for evaluation of the biological relevance of statistical differences identified during substantial equivalence assessment of a GM crop.
Related Concept Videos
Bioequivalence Data: Statistical Interpretation
Plant Breeding and Biotechnology

