Agroscope, Research Division Plant Breeding, Breeding Research Group, Mueller-Thurgau-Strasse 29, 8820 Waedenswil, Switzerland; Molecular Plant Breeding, Institute of Agricultural Sciences, ETH Zurich, Universitaetstrasse 2, 8092 Zurich, Switzerland.
Agroscope, Research Division Agroecology and Environment, Biosafety Research Group, Reckenholzstrasse 191, 8046 Zurich, Switzerland.
Ecotoxicol Environ Saf. 2022 Aug;241:113749. doi: 10.1016/j.ecoenv.2022.113749. Epub 2022 Jun 11.
Genetic modification of apple cultivars through cisgenesis can introduce traits, such as disease resistance from wild relatives, quickly and without crossing. This approach was used to generate the cisgenic apple line C44.4.146, a 'Gala Galaxy' carrying the fire blight resistance gene FB_MR5. In contrast to traditionally bred apple cultivars, genetically modified (GM) plants need to undergo a regulatory risk assessment considering unintended effects before approval for commercial release. To determine potential unintended effects of C44.4.146, we assessed major leaf components and effects on the fitness of the decomposers Drosophila melanogaster (fruit fly) and Folsomia candida (collembolan), which were fed a diet amended with powdered apple leaf material. Leaf material of 'Gala Galaxy', several natural 'Gala' mutants, and the unrelated apple cultivar 'Ladina' were used for comparison. The genetic modification did not alter major leaf components and did not adversely affect survival, growth, or fecundity of the two decomposers. Consistent with previous studies with other GM crops, the differences between conventionally bred cultivars were greater than between the GM line and its non-GM wild type. These data provide a baseline for future risk assessments.
通过顺式基因操作对苹果品种进行遗传修饰,可以快速、无需杂交地引入来自野生近缘种的抗性等特性。本研究利用该方法生成了 cisgenic 苹果品系 C44.4.146,该品系为 Gala Galaxy 携带了火疫病抗性基因 FB_MR5。与传统培育的苹果品种不同,转基因(GM)植物在获得商业释放批准之前,需要进行监管风险评估,以考虑其意外影响。为了确定 C44.4.146 的潜在意外影响,我们评估了主要叶片成分及其对以添加粉末状苹果叶片材料的饲料为食的黑腹果蝇(果蝇)和球跳虫(跳虫)的适应性的影响。我们使用 Gala Galaxy、几种天然 Gala 突变体和不相关的苹果品种 Ladina 的叶片材料进行了比较。遗传修饰没有改变主要叶片成分,也没有对两种分解者的存活、生长或繁殖能力产生不利影响。与其他转基因作物的先前研究一致,传统培育品种之间的差异大于 GM 系与其非 GM 野生型之间的差异。这些数据为未来的风险评估提供了基线。