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Changes in fitness-associated traits due to the stacking of transgenic glyphosate resistance and insect resistance in Brassica napus L.

机译:甘蓝型油菜中转基因草甘膦抗性和昆虫抗性的叠加导致健身相关性状的变化。

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摘要

Increasingly, genetically modified crops are being developed to express multiple ‘stacked' traits for different types of transgenes, for example, herbicide resistance, insect resistance, crop quality and tolerance to environmental stresses. The release of crops that express multiple traits could result in ecological changes in weedy environments if feral crop plants or hybrids formed with compatible weeds results in more competitive plants outside of agriculture. To examine the effects of combining transgenes, we developed a stacked line of canola (Brassica napus L.) from a segregating F2 population that expresses both transgenic glyphosate resistance (CP4 EPSPS) and lepidopteran insect resistance (Cry1Ac). Fitness-associated traits were evaluated between this stacked genotype and five other Brassica genotypes in constructed mesocosm plant communities exposed to insect herbivores (Plutella xylostella L.) or glyphosate-drift. Vegetative biomass, seed production and relative fecundity were all reduced in stacked trait plants when compared with non-transgenic plants in control treatments, indicating potential costs of expressing multiple transgenes without selection pressure. Although costs of the transgenes were offset by selective treatment, the stacked genotype continued to produce fewer seeds than either single transgenic line. However, the increase in fitness of the stacked genotype under selective pressure contributed to an increased number of seeds within the mesocosm community carrying unselected, hitchhiking transgenes. These results demonstrate that the stacking of these transgenes in canola results in fitness costs and benefits that are dependent on the type and strength of selection pressure, and could also contribute to changes in plant communities through hitchhiking of unselected traits.
机译:越来越多地开发出转基因作物来表达不同类型转基因的多种“叠加”性状,例如,除草剂抗性,昆虫抗性,农作物质量和对环境胁迫的耐受性。如果野生农作物或与杂草相容的杂草形成的农作物更具竞争力,那么具有多种性状的农作物的释放会导致杂草环境的生态变化。为了检查转基因组合的影响,我们从分离的F2种群中开发了油菜籽(芸苔属油菜)的堆叠株系,该群体同时表达转基因草甘膦抗性(CP4 EPSPS)和鳞翅目昆虫抗性(Cry1Ac)。在暴露于昆虫食草动物(小菜蛾)或草甘膦漂移的人工建造的中观性植物群落中,在该堆叠基因型与其他五个甘蓝型基因型之间评估了与健身相关的性状。与对照处理中的非转基因植物相比,堆叠性状植物的营养生物量,种子产量和相对繁殖力均降低,表明在没有选择压力的情况下表达多种转基因的潜在成本。尽管转基因的成本被选择性处理所抵消,但是堆叠的基因型继续产生的种子少于单个转基因株系。然而,在选择压力下堆积基因型的适应性增加导致了中膜群落中携带未选择的,搭便车的转基因的种子数量增加。这些结果表明,将这些转基因堆叠在双低油菜籽中会导致健身成本和收益,取决于选择压力的类型和强度,并且还可能因搭便未选性状而导致植物群落发生变化。

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