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首页> 外文期刊>Frontiers in Plant Science >Toxicological and Biochemical Analyses Demonstrate the Absence of Lethal or Sublethal Effects of cry1C- or cry2A-Expressing Bt Rice on the Collembolan Folsomia candida
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Toxicological and Biochemical Analyses Demonstrate the Absence of Lethal or Sublethal Effects of cry1C- or cry2A-Expressing Bt Rice on the Collembolan Folsomia candida

机译:毒理学和生化分析表明, italic> cry1C- cry2A -表达 Bt 水稻对Collembolan Folsomia candida的致死或亚致死作用没有

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Assessing the potential effects of insect-resistant genetically engineered (GE) plants on collembolans is important because these common soil arthropods may be exposed to insecticidal proteins produced in GE plants by ingestion of plant residues, crop pollen, or root exudates. Laboratory studies were conducted to evaluate the potential effects of two Bacillus thuringiensis ( Bt )-rice lines expressing Cry1C and Cry2A in pollen and leaves and of their non- Bt conventional isolines on the fitness of the collembolan Folsomia candida and on the activities of its antioxidant-related enzymes, superoxide dismutase and peroxidase, and of its detoxification-related enzymes, glutathione reductase and glutathione S -transferase. Survival, development, reproduction, and the intrinsic rate of increase ( r _(m)) were not significantly reduced when F. candida fed on the Bt rice pollen or leaf powder than on the non- Bt rice materials; these parameters, however, were significantly reduced when F. candida fed on non- Bt rice pollen or non- Bt leaf-based diets containing the protease inhibitor E-64 at 75 μg/g. The activities of the antioxidant-related and detoxification-related enzymes in F. candida were not significantly affected when F. candida fed on the Bt rice materials, but were significantly increased when F. candida fed on the non- Bt rice materials containing E-64. The results demonstrate that Cry1C and Cry2A are not toxic to F. candida , and also indicate the absence of unintended effects on the collembolan caused by any change in plant tissue nutritional composition due to foreign gene transformation.
机译:评估抗虫基因工程(GE)植物对collembolans的潜在影响非常重要,因为这些常见的土壤节肢动物可能会因摄入植物残渣,农作物花粉或根系分泌物而暴露于GE植物产生的杀虫蛋白中。进行了实验室研究,以评估两种在花粉和叶片中表达Cry1C和Cry2A的苏云金芽孢杆菌(Bt)-水稻株系及其非Bt常规同工异株对胶体念珠菌的适应性及其抗氧化活性的潜在影响相关的酶,超氧化物歧化酶和过氧化物酶,以及与排毒相关的酶,谷胱甘肽还原酶和谷胱甘肽S-转移酶。用Bt水稻花粉或叶粉饲喂F. Candida的念珠菌的存活,发育,繁殖和内在的增长速率(r _(m))没有显着降低;然而,当念珠菌饲喂含蛋白酶抑制剂E-64的非Bt水稻花粉或非Bt叶基日粮的饲料浓度为75μg/ g时,这些参数会显着降低。饲喂Bt水稻材料的念珠菌时,念珠菌中抗氧化剂和解毒相关酶的活性未受到显着影响,而饲喂含E-的非Bt水稻材料的念珠菌时,其活性显着增加。 64。结果表明,Cry1C和Cry2A对念珠菌无毒,并且还表明由于外源基因转化导致植物组织营养成分发生任何变化,从而对collembolan产生了意想不到的影响。

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