Tate Ann T, Graham Andrea L
Department of Biology and Biochemistry, University of Houston, Houston, Texas 77204.
Am Nat. 2015 Oct;186(4):495-512. doi: 10.1086/682705. Epub 2015 Aug 11.
The integration of physiological mechanisms into life-history theory is an emerging frontier in our understanding of the constraints and drivers of life-history evolution. Dynamic patterns of antagonism between developmental and immunological pathways in juvenile insects illustrate the importance of mechanisms for determining life-history strategy optima in the face of trade-offs. For example, developmental interference occurs when developmental processes transiently take priority over resources or pathway architecture, preventing allocation to immunity or other traits. We designed a within-host model of infected larval development to explore the impact of developmental dynamics on optimal resource mobilization and allocation strategies as well as on larval resistance and tolerance phenotypes. The model incorporates mechanism-inspired functional forms of developmental interference with immunity against parasites that attack specific larval stages. We find that developmental interference generally increases optimal investment in constitutive immunity and decreases optimal resource mobilization rates, but the results are sensitive to the developmental stage at first infection. Moreover, developmental interference reduces resistance but generally increases tolerance of infection. We demonstrate the potential impact of these dynamics on empirical estimates of host susceptibility and discuss the general implications of incorporating realistic physiological mechanisms and developmental dynamics for life-history theory in insects and other organisms.
将生理机制整合到生活史理论中,是我们理解生活史进化的限制因素和驱动因素方面一个新兴的前沿领域。幼年昆虫发育途径和免疫途径之间动态的拮抗模式,说明了在面临权衡时决定生活史策略最优值的机制的重要性。例如,当发育过程暂时优先占用资源或途径结构时,就会发生发育干扰,从而阻止资源分配给免疫或其他性状。我们设计了一个受感染幼虫发育的宿主体内模型,以探讨发育动态对最佳资源调动和分配策略以及幼虫抗性和耐受性表型的影响。该模型纳入了受机制启发的发育干扰功能形式,以及针对攻击特定幼虫阶段的寄生虫的免疫功能。我们发现,发育干扰通常会增加对组成性免疫的最佳投入,并降低最佳资源调动率,但结果对首次感染时的发育阶段很敏感。此外,发育干扰会降低抗性,但通常会增加对感染的耐受性。我们展示了这些动态对宿主易感性实证估计的潜在影响,并讨论了将现实的生理机制和发育动态纳入昆虫及其他生物生活史理论的一般意义。