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首页> 外文期刊>Journal of Mathematical Biology >A branching process for the early spread of a transposable element in a diploid population
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A branching process for the early spread of a transposable element in a diploid population

机译:二倍体群体中转座因子早期传播的分支过程

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Transposable elements (TEs) face significant challenges upon transfer into a new host population, invariably beginning their invasion with only a single element. The fate of this element is a product of its internal properties, the population dynamics of the host species, and genetic drift. We present a continuous-time multi-type branching process to model the early stages of TE spread. The model incorporates seasonal population size changes and is applicable to diploid hosts for prevalences up to 10%. We reproduce standard results of TE population dynamics and show that population growth may have a greater influence on reducing TE loss probability than a transpositional burst. These results are applied to the planned use of a TE to drive an antimalarial gene into an Anopheles gambiae population. The model favors a transgenic release immediately following the dry season when the An. gambiae population begins to grow. Increasing the number of transgenic hosts released has the greatest influence on reducing the probability of TE loss. Following release, the rate at which the TE increases its proportion in the population is most sensitive to its replicative transposition rate. The model recommends a replicative transposition rate greater than 0.1 per TE per generation to satisfy public health goals.
机译:转座因子(TEs)在转移到新的宿主种群中时面临着严峻的挑战,始终只能通过单一元素开始入侵。该元素的命运是其内部特性,宿主物种的种群动态以及遗传漂移的产物。我们提出了一个连续时间的多类型分支过程来模拟TE传播的早期阶段。该模型结合了季节性种群规模的变化,适用于二倍体宿主,患病率最高为10%。我们重现了TE种群动态的标准结果,并表明,与转座爆发相比,种群增长对减少TE损失概率的影响更大。这些结果被应用于计划将TE驱使抗疟基因进入冈比亚按蚊种群的计划应用。该模型支持干旱季节紧接着An。之后立即转基因释放。冈比亚人口开始增长。增加释放的转基因宿主数量对降低TE丢失的可能性影响最大。释放后,TE在种群中所占比例增加的速率对其复制转座速率最为敏感。该模型建议每代每个TE的复制转座率大于0.1,以满足公共卫生目标。

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