Chang Xue, Lu Zengbin, Shen Zhicheng, Peng Yufa, Ye Gongyin
State Key Laboratory of Rice Biology & Agricultural Entomology of Ministry of Agriculture, Institute of Insect Sciences, Zhejiang University, Hangzhou 310058, China.
Key Laboratory of Integrated Pest Management on Crops in Northeast of Ministry of Agriculture, Institute of Plant Protection, Jilin Academy of Agricultural Sciences, Gongzhuling 136100, China.
Environ Entomol. 2017 Oct 1;46(5):1171-1176. doi: 10.1093/ee/nvx113.
Harmonia axyridis (Pallas) is a common and abundant predator in China and may be exposed to Cry toxins that are produced in Bt crops either by feeding on plant parts or by feeding on target or nontarget herbivorous insects. A new Bt maize line, expressing the Cry1Ab/Cry2Aj fused protein, has been developed and should be rigorously assessed for the ecological risks on the natural enemy. Laboratory experiments were carried out to study the effects of this Bt maize on nontarget predator H. axyridis via bitrophic interaction of adult H. axyridis feeding on Bt maize pollen and tritrophic interaction of H. axyridis consuming the lepidopteran prey. Spodoptera exigua (Hübner) neonate larvae were used to transfer Bt protein because they could survive after ingesting transgenic cry1Ab/cry2Aj maize kernels in the previous study. ELISA bioassays confirmed that the Bt protein could be transferred, but diluted through Bt maize-prey-predator. Life history parameters such as survival, development, weight, fecundity, and egg hatching rate were not significantly different when H. axyridis consumed prey that had been reared on Bt maize compared with prey reared on a nontransformed parental control. Furthermore, feeding directly on Bt maize pollen also had no detrimental effects on fitness, survival, and weight of female and male adults. In conclusion, our results indicate that transgenic cry1Ab/cry2Aj maize poses no ecological risks on the nontarget predator H. axyridis.
异色瓢虫是中国常见且数量众多的捕食性昆虫,可能会通过取食植物部分或取食目标或非目标食草昆虫而接触到Bt作物中产生的Cry毒素。一种表达Cry1Ab/Cry2Aj融合蛋白的新型Bt玉米品系已被培育出来,应对其对天敌的生态风险进行严格评估。开展了实验室实验,以通过异色瓢虫成虫取食Bt玉米花粉的双营养相互作用以及异色瓢虫取食鳞翅目猎物的三营养相互作用,研究这种Bt玉米对非目标捕食性昆虫异色瓢虫的影响。由于在之前的研究中,甜菜夜蛾初孵幼虫在摄入转基因cry1Ab/cry2Aj玉米籽粒后能够存活,因此被用于转移Bt蛋白。ELISA生物测定证实Bt蛋白可以转移,但会在Bt玉米-猎物-捕食者这条食物链中被稀释。与取食非转基因亲本对照饲养的猎物相比,异色瓢虫取食在Bt玉米上饲养的猎物时,其存活、发育、体重、繁殖力和卵孵化率等生活史参数没有显著差异。此外,直接取食Bt玉米花粉对雌雄成虫的适合度、存活和体重也没有不利影响。总之,我们的结果表明,转基因cry1Ab/cry2Aj玉米对非目标捕食性昆虫异色瓢虫不存在生态风险。