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评估玉米对非靶标害虫的影响,采用人口统计学和生活史测量终点。

Assessing the effects of maize on the non-target pest by demographic and life-history measurement endpoints.

机构信息

Dipartimento di Scienze e Tecnologie Agro-Alimentari, Alma Mater Studiorum - Università di Bologna, Bologna, Italy.

Dipartimento di Scienze e Tecnologie, Università di Napoli Parthenope, Napoli, Italy.

出版信息

Bull Entomol Res. 2022 Feb;112(1):29-43. doi: 10.1017/S0007485321000481. Epub 2021 Jul 5.

Abstract

The most commercialized Bt maize plants in Europe were transformed with genes which express a truncated form of the insecticidal delta-endotoxin (Cry1Ab) from the soil bacterium Bacillus thuringiensis (Bt) specifically against Lepidoptera. Studies on the effect of transgenic maize on non-target arthropods have mainly converged on beneficial insects. However, considering the worldwide extensive cultivation of Bt maize, an increased availability of information on their possible impact on non-target pests is also required. In this study, the impact of Bt-maize on the non-target corn leaf aphid, Rhopalosiphum maidis, was examined by comparing biological traits and demographic parameters of two generations of aphids reared on transgenic maize with those on untransformed near-isogenic plants. Furthermore, free and bound phenolics content on transgenic and near-isogenic plants were measured. Here we show an increased performance of the second generation of R. maidis on Bt-maize that could be attributable to indirect effects, such as the reduction of defense against pests due to unintended changes in plant characteristics caused by the insertion of the transgene. Indeed, the comparison of Bt-maize with its corresponding near-isogenic line strongly suggests that the transformation could have induced adverse effects on the biosynthesis and accumulation of free phenolic compounds. In conclusion, even though there is adequate evidence that aphids performed better on Bt-maize than on non-Bt plants, aphid economic damage has not been reported in commercial Bt corn fields in comparison to non-Bt corn fields. Nevertheless, Bt-maize plants can be more easily exploited by R. maidis, possibly due to a lower level of secondary metabolites present in their leaves. The recognition of this mechanism increases our knowledge concerning how insect-resistant genetically modified plants impact on non-target arthropods communities, including tritrophic web interactions, and can help support a sustainable use of genetically modified crops.

摘要

欧洲商业化的 Bt 玉米植株是利用基因转化技术培育的,这些基因表达的是来自土壤细菌苏云金芽孢杆菌(Bt)的杀虫蛋白 δ-内毒素(Cry1Ab)的截短形式,专门针对鳞翅目昆虫。关于转基因玉米对非靶标节肢动物影响的研究主要集中在有益昆虫上。然而,考虑到 Bt 玉米在全球范围内的广泛种植,也需要增加关于其对非靶标害虫可能产生影响的信息。在这项研究中,通过比较两代玉米蚜在转 Bt 玉米和未转化近等基因系植株上的生物特性和种群参数,研究了 Bt 玉米对非靶标玉米叶蝉的影响。此外,还测量了转 Bt 玉米和近等基因系植株上的游离和结合酚类物质含量。结果表明,第二代玉米蚜在转 Bt 玉米上的表现增强,这可能归因于间接影响,如由于插入的转基因导致植物特征发生意外变化,从而降低了对害虫的防御能力。事实上,将 Bt 玉米与相应的近等基因系进行比较强烈表明,转化可能对游离酚类化合物的生物合成和积累产生不利影响。综上所述,尽管有充分的证据表明玉米蚜在转 Bt 玉米上的表现优于非转 Bt 玉米,但与非转 Bt 玉米田相比,在商业 Bt 玉米田中尚未报道玉米蚜的经济损害。然而,Bt 玉米植株更容易被玉米蚜利用,可能是因为其叶片中存在较低水平的次生代谢物。认识到这种机制增加了我们对抗虫转基因植物如何影响非靶标节肢动物群落(包括三营养级网相互作用)的知识,并有助于支持对转基因作物的可持续利用。

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