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作 者:芮玉奎[1] 黄昆仑[1] 王为民[2] 郭晶[1] 金银花[1] 罗云波[1]
机构地区:[1]中国农业大学食品科学与营养工程学院,北京100083 [2]农业部科技发展中心,北京100026
出 处:《光谱学与光谱分析》2006年第12期2190-2192,共3页Spectroscopy and Spectral Analysis
基 金:中国农业大学科研启动基金项目(2005028);国家重点基础研究规划"973"项目(G1999011701);国家自然科学基金项目(30270934)资助
摘 要:随着转基因食品的迅速发展,人们越来越关心其食用安全性。以转基因油菜及其亲本为实验材料,借助于近红外光谱仪对转基因油菜及其亲本中的芥酸和硫甙进行了测定分析:扫描区间为12000-4000cm^-1,分辨率为4cm^-1,扫描次数为64次。结果显示近红外检测样品的结果与通用方法结果相近,说明通过扫描光谱加上数学和计算机软件分析,非常准确、方便的测定了转基因油菜中的芥酸和硫甙。结果表明,转基因油菜中的芥酸含量明显高于亲本中的含量,芥酸含量是非转基因亲本1.5~2.0倍;硫甙含量也表现出芥酸相同的规律,转基因油菜中显著高于其相应亲本,是亲本含量的1.3~1.51倍以上。所以,在转基因作物的育种过程中,在改善个别性状的同时,如何保持其他优良性状应当引起重视。With the rapid development of transgenic food, more and more transgenic food has been pouring into the market, raising great concern about transgenic food's edible safety. To analyze the content of erucic acid and glucosinolate in transgenie rapeseed and its parents, all the seeds were scanned intact by continuous wave of near infrared diffuse reflectance spectrometry ranging from 12000 to 4 000 cm^-1 with a resolution of 4 cm^-1 and 64 times of scanning. Bruker OPUS software package was applied for quantification, while the results were compared with the standard methods. The results showed that the method of NIRS was very precise, which proved that infrared diffuse reflectance spectroscopy can be applied to detect the toxins in transgenic food. On the other hand, the results also showed that the content of erucic acid in transgenic rapeseeds is 0. 5-1.0 times higher than that of their parents, and the content of glucosinolate in transgenic rapeseeds is 1.3-0. 6 times higher than that of their parents.
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