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Semiparametric functional mapping of quantitative trait loci governing long-term HIV dynamics

机译:定量特征基因座控制长期HIV动态的半参数功能图

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Motivation: Functional mapping has proven to be powerful for characterizing quantitative trait loci (QTL) that control complex dynamic traits. More recently, functional mapping has been extended to identify the host QTL responsible for HIV dynamics by incorporating a parametric bi-exponential function for earlier stages of viral load trajectories. However, existing functional mapping cannot be used to map long-term HIV dynamics because no mathematical functions are available for later stages of HIV dynamic changes. Results: We derived a statistical model for functional mapping of dynamic QTL through characterizing HIV load trajectories during a long-term period semiparametrically. The new model was constructed within the maximum likelihood framework and implemented with the EM-simplex algorithm. It allows for the test of differences in the genetic control of short-and long-term HIV dynamics and the characterization of the effects of viral-host genome interaction. Extensive simulation studies have been performed to test the statistical behavior of this model. The new model will provide an important tool for genetic and genomic studies of human complex diseases like HIV/AIDS and their pathological progression.
机译:动机:功能映射已证明对表征控制复杂动态性状的数量性状基因座(QTL)具有强大的功能。最近,功能映射已被扩展以通过合并用于病毒载量轨迹早期阶段的参数化双指数函数来识别负责HIV动态的宿主QTL。但是,现有功能映射不能用于映射长期HIV动态,因为没有数学函数可用于HIV动态变化的后期。结果:我们通过半参数长期表征HIV负荷轨迹,得出了动态QTL功能图的统计模型。新模型是在最大似然框架内构建的,并使用EM-simplex算法实现。它允许测试短期和长期HIV动态的遗传控制差异以及病毒-宿主基因组相互作用的影响特征。已经进行了广泛的仿真研究以测试该模型的统计行为。新模型将为人类复杂疾病(如HIV / AIDS)及其病理进展的遗传和基因组研究提供重要工具。

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