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Fungal growth and Fusarium mycotoxin content in isogenic traditional maize and genetically modified maize grown in France and Spain

机译:在法国和西班牙种植的等基因传统玉米和转基因玉米中的真菌生长和镰刀菌真菌毒素含量

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摘要

Fungi of the genus Fusarium, are common fungal contaminants of maize and are also known to produce mycotoxins. Maize that has been genetically modified to express a Bt endotoxin has been used to study the effect of insect resistance on fungal infection of maize grains by Fusarium species and their related mycotoxins. Maize grain from Bt hybrids and near-isogenic traditional hybrids was collected in France and Spain from the 1999 crop, which was grown under natural conditions. According to the ergosterol level, the fungal biomass formed on Bt maize grain was 4-18 times lower than that on isogenic maize. Fumonisin B, grain concentrations ranged from 0.05 to 0.3 ppm for Bt maize and from 0.4 to 9 ppm for isogenic maize. Moderate to low concentrations of trichothecenes and zearalenone were measured on transgenic as well as on non-transgenic maize. Nevertheless, significant differences were obtained in certain regions. The protection of maize plants against insect damage (European corn borer and pink stem borer) through the use of Bt technology seems to be a way to reduce the contamination of maize by Fusarium species and the resultant fumonisins in maize grain grown in France and Spain.
机译:镰刀菌属的真菌是玉米的常见真菌污染物,也已知会产生霉菌毒素。经过基因修饰以表达Bt内毒素的玉米已被用于研究昆虫抗性对镰刀菌属及其相关真菌毒素对玉米籽粒真菌感染的影响。在法国和西班牙,从Bt杂种和近等基因传统杂种中收获的玉米籽粒是在自然条件下种植的1999年作物。根据麦角固醇水平,Bt玉米籽粒上形成的真菌生物量比等基因玉米低4-18倍。伏马毒素B,Bt玉米的籽粒浓度范围为0.05至0.3 ppm,等基因玉米的籽粒浓度范围为0.4至9 ppm。在转基因玉米和非转基因玉米上测定了中等至低浓度的毛霉菌素和玉米赤霉烯酮。尽管如此,在某些地区还是取得了显着差异。通过使用Bt技术保护玉米植物免受昆虫伤害(欧洲玉米bore和粉红色茎bore),这似乎是减少镰刀菌属物种和法国和西班牙种植的玉米籽粒中产生的伏马菌素污染玉米的一种方法。

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