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EFFECTS OF SUPERINFECTION AND COST OF IMMUNITY ON HOST-PARASITE CO-EVOLUTION

机译:过度感染和免疫费用对寄生虫共进化的影响

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In this paper, we investigate the cost of immunological up-regulation caused by infection in a between-host transmission dynamical model with superinfection. After introducing a mutant host to an existing model, we explore this problem in (A) monomorphic case and (B) dimorphic case. For (A) , we assume that only strain 1 parasite can infect the mutant host. We identify an appropriate fitness for the invasion of the mutant host by analyzing the local stability of the mutant free equilibrium. After specifying a trade-off between the production and recovery rates of infected hosts, we employ the adaptive dynamical approach to analyze the evolutionary and convergence stabilities of the corresponding singular strategy, leading to some conditions for continuously stable strategy, evolutionary branching point and repeller. For (B) , a new fitness is introduced to measure the invasion of mutant host under the assumption that both parasite strains can infect the mutant host. By considering two trade-off functions, we can study the conditions for evolutionary stability, isoclinic stability and absolute convergence stability of the singular strategy. Our results show that the host evolution would not favour high degree of immunological up-regulation; moreover, superinfection would help the parasite with weaker virulence persist in hosts.
机译:在本文中,我们研究了在具有超级感染的宿主之间传播动力学模型中,由感染引起的免疫上调的成本。将突变体宿主引入现有模型后,我们在(A)单态情况和(B)双态情况下探索此问题。对于(A),我们假设只有菌株1寄生虫才能感染突变宿主。通过分析突变体自由平衡的局部稳定性,我们确定了适合突变体宿主入侵的适应性。在确定感染宿主的生产率和恢复率之间进行权衡后,我们采用自适应动力学方法来分析相应奇异策略的进化和收敛稳定性,从而为连续稳定策略,进化分支点和推斥子创造了一些条件。对于(B),在两种寄生虫菌株均可感染突变宿主的假设下,引入了一种新的适应度来测量突变宿主的入侵。通过考虑两个折衷函数,我们可以研究奇异策略的演化稳定性,等斜稳定性和绝对收敛稳定性的条件。我们的结果表明,宿主的进化不会支持高度的免疫学上调。此外,超级感染将帮助弱毒力的寄生虫在宿主中持续存在。

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