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首页> 外文期刊>Pedobiologia >Does GM wheat affect saprophagous Diptera species (Drosophilidae, Phoridae)?
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Does GM wheat affect saprophagous Diptera species (Drosophilidae, Phoridae)?

机译:转基因小麦会影响腐烂双翅目物种(果蝇科,蝇科)吗?

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Genetically modified (GM) plants might affect ecosystem functioning through effects on non-target decomposer organisms, which play an important role in the decomposition of organic matter and nutrient release. These organisms can be affected directly by the transgene products, or indirectly by pleiotropic effects, which may influence the composition of plant compounds, such as the lignin content or the C/N ratio that could even modify matter flux. Therefore, an ecological risk assessment for GM plants also has to include decomposers. In a laboratory diet experiment, we investigated possible effects of transgenic antifungal wheat on two saprophagous Diptera species, the drosophilid Drosophila melanogaster and the phorid Megaselia scalaris. We used several experimental transgenic wheat varieties with a specific antifungal powdery mildew resistance (Pm3b) and varieties with a broad antifungal resistance, which is based on the expression of chitinase and glucanase. We determined if important fitness parameters, such as fertility, development time and sex ratio differed when the two saprophagous Diptera species were fed with either leaves of transgenic or non-transgenic wheat. To include potential long-term effects, we performed our experiments over four fly generations. Additionally, we analysed the C/N ratio, and the cellulose, hemicellulose and lignin contents of the different wheat lines to investigate any changes in the diet composition, which may alter food quality through potential pleiotropic effects. We found occasional differences in development time or the number of offspring for both dipteran species in several investigated diet comparisons but we found no consistent pattern of GM wheat effects on the tested dipteran species. Though some wheat lines showed an altered chemical composition, possibly indicating a pleiotropic effect, we found no correlation between diet quality of the wheat lines and fitness parameters. Our study shows also that dipterans represent useful model species with M. scalaris being the most suitable species, and that our experimental approach is an appropriate laboratory method to investigate the decomposition of GM material by insect larvae.
机译:转基因(GM)植物可能通过对非目标分解生物产生影响,从而影响生态系统的功能,这些分解生物在有机物的分解和养分的释放中起着重要的作用。这些生物可直接受转基因产物影响,或受多效作用间接影响,多效作用可能会影响植物化合物的组成,例如木质素含量或C / N比甚至可能会改变物质通量。因此,转基因植物的生态风险评估也必须包括分解剂。在实验室饮食实验中,我们研究了转基因抗真菌小麦对两种腐烂双翅目属植物(果蝇Drosophila melanogaster和果蝇Megaselia scalaris)的可能影响。我们使用了几种具有特定抗真菌白粉病抗性(Pm3b)的实验性转基因小麦品种和具有广泛抗真菌性的品种,这些品种基于几丁质酶和葡聚糖酶的表达。我们确定了当两种腐烂双翅目物种分别饲喂转基因或非转基因小麦的叶子时,重要的适应性参数(例如生育力,发育时间和性别比)是否不同。为了包括潜在的长期影响,我们进行了四代苍蝇的实验。此外,我们分析了不同小麦品系的C / N比以及纤维素,半纤维素和木质素含量,以研究饮食组成的任何变化,这些变化可能通过潜在的多效效应而改变食品质量。我们在几个调查的饮食比较中发现了两种二倍体物种在发育时间或后代数量上的偶然差异,但我们没有发现转基因小麦对被测二倍体物种具有一致的作用模式。尽管一些小麦品系的化学成分发生了变化,可能表明其具有多效性,但我们发现小麦品系的日粮品质与适应性参数之间没有相关性。我们的研究还表明,二倍体动物代表了有用的模型物种,其中标尺分枝杆菌是最合适的物种,并且我们的实验方法是研究昆虫幼虫分解GM材料的合适实验室方法。

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