Bt (Cry1Ac和Cry2Ab)和非Bt棉对哥伦比亚托利马大蠊和夜蛾复合体代表品种时间变异的影响

Camilo Ignacio Jaramillo-Barrios, Ginna Natalia Cruz-Castiblanco, Buenaventura Monje-Andrade
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引用次数: 0

摘要

苏云金芽孢杆菌(Bacillus thuringiensis Berliner, Bt)转基因棉花对全球害虫综合治理具有重要影响。在哥伦比亚,大花青虫和夜蛾复合体目前被认为是棉花作物的主要害虫。因此,本研究在两年的时间里,评估了Bt (Cry1Ac和Cry2Ab)和非Bt棉花对托利马地区棉铃虫种群消长的影响。害虫变量与产量之间建立了Pearson相关矩阵,气候变量与昆虫种群在4个物候阶段之间建立了Spearman秩相关。并对混合数据进行因子分析,比较不同基因型对昆虫种群消长的影响。对于大田鼠,它们的种群没有差异。但在产量上,非Bt棉与穿孔铃呈较高的负相关。在夜蛾复合体方面,Bt基因型棉花的幼虫数量比非Bt棉花少67.4%。差异有统计学意义。然而,在整个作物周期中并不是完全没有害虫。这些结果表明,如果在研究区域不确定保护区和病虫害管理措施,夜蛾复合体可能产生对转基因植物的抗性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Bt (Cry1Ac and Cry2Ab) and non-Bt cotton on the temporal variation of A. grandis and representatives of the Spodoptera complex in Tolima, Colombia
Transgenic cotton plants (Bacillus thuringiensis Berliner (Bt)) has significant influenced the integrated pest management around the world. In Colombia, Anthonomus grandis Boheman and Spodoptera complex are currently considered the main pests in cotton crops. Therefore, this study evaluated the effect of Bt (Cry1Ac and Cry2Ab) and non-Bt cotton on the population fluctuation during two years in Tolima region. A Pearson correlation matrix was carried out between the pest variables and yield, while climatic variables and insect populations were correlated in four phenological stages with Spearman rank correlations. Additionally, a factor analysis for mixed data was performed in order to compare the effect of genotypes on the population fluctuation of the insects. For A. grandis, no differences in their populations were presented. However, in yield non-Bt cotton plants showed a higher inverse correlation with the perforated bolls compared to Bt cotton. In relation to the Spodoptera complex, the Bt genotype had 67.4% fewer larvae compared to non-Bt cotton. Statistically significant differences were presented. However, there was not a total absence of the pest during the entire crop cycle. These results suggest that if refuge zones and pest management practices are not determined in the study area, Spodoptera complex could generate resistance to genetically modified plants.
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