转bt水稻(Bt-9)的分子生物学分析及其对大水蚤取食的影响

Sung‐Dug Oh, 윤도원, Ancheol Chang, Yu-jin Lee, 임명호
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引用次数: 1

摘要

通过将苏云金芽孢杆菌改良基因mCry1Ac1插入到传统水稻品种Ilmi的基因组中,获得了抗虫转基因Bt-9水稻。关于安全等潜在问题,作为转基因作物环境风险评估的一个基本要素,对非目标生物的评价是必要的。我们研究了Bt-9水稻对水蚤(cantor Daphnia magna)存活的影响,水蚤是生态毒理学研究中常用的模式生物。D. magna以bt转基因水稻(Bt-9)和在相同环境下生长的非转基因水稻(Ilmi)为食(100%碾碎的水稻悬浮液)。经PCR和酶联免疫吸附试验证实,Bt-9水稻有插入的T-DNA和蛋白表达。取食研究表明,大水蚤在Bt-9稻和Ilmi稻之间具有相似的累积不动和异常反应。Bt-9和Ilmi水稻的48 h-EC50值分别为4400 mg/L(95%置信限:3861.01 5015.01 mg/L)和5564 mg/L(95%置信限:4780.03 6476.93 mg/L)。水稻对D. magna的NOEC(无效应浓度)值建议为1620 mg/L。结果表明,Bt-9和Ilmi对大蠊具有相似的累积不动性,并且Bt-9的生长不影响非目标昆虫。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular biological analysis of Bt-transgenic (Bt-9) rice and its effect on Daphnia magna feeding
Insect-resistant transgenic (Bt-9) rice was generated by inserting mCry1Ac1, a modified gene from the soil bacterium Bacillus thuringiensis, into the genome of a conventional variety of rice (Ilmi). With regard to potential problems such as safety, an evaluation of non-target organisms is necessary as an essential element of an environmental risk assessment of genetically modified (GM) crops. We studied the effects of the Bt-9 rice on the survival of cantor Daphnia magna, a commonly used model organism in ecotoxicological studies. D. magna fed on the Bt-transgenic rice (Bt-9) and its near non-GM counterparts (Ilmi) grown in the same environment (a 100% ground rice suspension). The Bt-9 rice was confirmed to have the inserted T-DNA and protein expression evident by the PCR and ELISA analyses. The feeding study showed a similar cumulative immobility and abnormal response of the Daphnia magna between the Bt-9 rice and Ilmi. Additionally, the 48 h-EC50 values of the Bt-9 and Ilmi rice were 4,400 mg/L (95% confidence limits: 3861.01 5015.01 mg/L) and 5,564 mg/L (95% confidence limits: 4780.03 6476.93 mg/L), respectively. The rice NOEC (No observed effect concentration) value for D. magna was suggested to be 1,620 mg/L. We conclude that the tested Bt-9 and Ilmi have a similar cumulative immobility for D. magna, a widely used model organism, and the growth of Bt-9 did not affect non-target insects.
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