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Genetic Control of Insect Populations: I. Cage Studies of Chromosome Replacement by Compound Autosomes in DROSOPHILA MELANOGASTER

机译:昆虫种群的遗传控制:I.果蝇中复合常染色体替代染色体的笼子研究

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摘要

A genetic method for insect control was evaluated using the test organism, Drosophila melanogaster. The technique involved the displacement under a system of continuous reproduction, of standard strains by those carrying compound autosomes. The eradication of the replacements could subsequently be achieved through the use of temperature-sensitive lethal mutations.—While certain compound autosome strains failed to displace standards in population cages, even at the initial release ratio of 25:1, others were highly successful. Indeed, for some strains when the ratio of compounds to standards was as low as 9:1, the population rapidly went to fixation in favor of the compound line.—Hatchability was found to be an insufficient index of fitness to estimate the initial ratios of compounds to standards that would guarantee fixation of the former. Differences in other fitness components, such as development time, were detected that could seriously modify displacement, especially with continuous overlapping generations. The importance of examining the fitness of various compound lines and selecting the most competitive in cages, prior to field tests, cannot be overemphasized.
机译:使用测试有机体果蝇(Drosophila melanogaster)评估了一种昆虫控制的遗传方法。该技术涉及在带有标准常染色体的菌株的连续繁殖系统下,这些菌株携带了化合物常染色体。随后可以通过使用对温度敏感的致死突变来根除替代品。尽管某些复合常染色体菌株即使在初始释放比例为25:1的情况下,也无法取代种群笼中的标准品,但其他菌株还是非常成功的。实际上,对于某些菌株,当化合物与标准品的比例低至9:1时,种群迅速趋向于固定以支持化合物系。-发现孵化率不足以用来估计初始比例的适应性指标。符合保证前者固定的标准的化合物。检测到其他适应性组件的差异(例如发育时间)会严重改变位移,尤其是连续重叠的一代。在实地测试之前,检查各种复合管线的适应性并选择最有竞争力的笼子的重要性不可过分强调。

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