Oberdoerfer Regina B, Shillito Raymond D, de Beuckeleer Marc, Mitten Donna H
Bayer CropScience, 2 T. W. Alexander Drive, Research Triangle Park, North Carolina 27709, USA.
J Agric Food Chem. 2005 Mar 9;53(5):1457-65. doi: 10.1021/jf0486500.
This publication presents an approach to assessing compositional equivalence between grain derived from glufosinate-tolerant rice grain, genetic event LLRICE62, and its nontransgenic counterpart. Rice was grown in the same manner as is common for commercial production, using either conventional weed control practices or glufosinate-ammonium herbicide. A two-season multisite trial design provided a robust data set to evaluate environmental effects between the sites. Statistical comparisons to test for equivalence were made between glufosinate-tolerant rice and a conventional counterpart variety. The key nutrients, carbohydrates, protein, iron, calcium, thiamin, riboflavin, and niacin, for which rice can be the principal dietary source, were investigated. The data demonstrate that rice containing the genetic locus LLRICE62 has the same nutritional value as its nontransgenic counterpart, and most results for nutritional components fall within the range of values reported for rice commodities in commerce.
本出版物介绍了一种评估来自抗草铵膦水稻品种LLRICE62的谷物与其非转基因对照之间成分等效性的方法。水稻采用与商业生产相同的方式种植,使用传统杂草控制方法或草铵膦铵盐除草剂。两季多地点试验设计提供了一个强大的数据集,以评估不同地点之间的环境影响。在抗草铵膦水稻和传统对照品种之间进行了统计比较,以测试等效性。研究了水稻作为主要膳食来源的关键营养素,包括碳水化合物、蛋白质、铁、钙、硫胺素、核黄素和烟酸。数据表明,含有基因位点LLRICE62的水稻与其非转基因对照具有相同的营养价值,并且大多数营养成分的结果落在商业水稻商品报告的值范围内。