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首页> 外文期刊>Journal of Mathematical Biology >Transient dynamics in multilocus invasions by transgenic organisms
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Transient dynamics in multilocus invasions by transgenic organisms

机译:转基因生物入侵多基因座的瞬时动力学

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With recent advances in molecular genetics, it is likely that releases of genetically modified organisms will be used for a variety of purposes. In many cases, such systems would utilize organisms that have been modified on multiple genetic loci. Predicting the effect of such releases will require an understanding of the transient dynamics in the system. However, theoretical understanding of transient dynamics in multilocus systems is limited, particularly for early generations when gametic disequilibrium is still high. I derive approximate expressions for marginal allele frequency and marginal two-locus disequilibrium that are applicable in this initial period, assuming infinite population size, two alleles per locus, and weak viability selection. I then apply these results to exploring the effect of parameters on the frequency of the resident gamete type in a release of organisms carrying an autocidal allele on multiple loci. This leads to simple approximate expressions for the optimal number of loci carrying the autocidal allele (as a function of release size and the degree of natural selection against the alleles) and the size of release needed to overcome a given level of selection against the released alleles. [References: 15]
机译:随着分子遗传学的最新进展,转基因生物的释放可能会用于多种目的。在许多情况下,此类系统将利用在多个遗传基因座上经过修饰的生物。预测此类释放的影响将需要了解系统中的瞬态动力学。但是,对多基因座系统中瞬态动力学的理论理解是有限的,尤其是对于配子不平衡仍然很高的早期代。我推导了适用于此初始阶段的边际等位基因频率和边际两基因座不平衡的近似表达式,假设种群数量无限,每个基因座两个等位基因,且生存力选择较弱。然后,我将这些结果应用于探索在多个基因座上带有杀伤性等位基因的生物释放过程中,参数对驻留配子类型频率的影响。这导致携带杀灭性等位基因的最佳基因座数目的简单近似表达式(取决于释放大小和针对等位基因的自然选择程度)以及克服给定水平的针对释放的等位基因所需的释放大小。 [参考:15]

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