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首页> 外文期刊>Journal of Theoretical Biology >Complex interaction of resource availability, life-history and demography determines the dynamics and stability of stage-structured populations
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Complex interaction of resource availability, life-history and demography determines the dynamics and stability of stage-structured populations

机译:资源可用性,寿命历史和人口管理的复杂互动决定了舞台结构群体的动态和稳定性

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The dynamics of stage-structured populations facing stage-specific variability in resource availability and/or demographic factors like unequal sex-ratios, remains poorly understood. We addressed these issues using a stage-structured individual-based model that incorporates life-history parameters common to many holometabolous insects. The model was calibrated using time series data from a 49-generation experiment on laboratory populations of Drosophila melanogaster, subjected to four different combinations of larval and adult nutritional levels. The model was able to capture multiple qualitative and quantitative aspects of the empirical time series across three independent studies. We then simulated the model to explore the interaction of various life-history parameters and nutritional levels in determining population stability. In all nutritional regimes, constancy stability of the populations was reduced upon increasing egg-hatchability, critical mass, and proportion of body resource allocated to female fecundity. However, the effects of increasing sensitivity of female-fecundity to adult density on constancy stability varied across nutrition regimes. The effects of unequal sex-ratio and sex-specific culling were greatly influenced by fecundity but not by levels of juvenile nutrition. Finally, we investigated the implications of some of these insights on the efficiency of the widely-used pest control method, the Sterile Insect Technique (SIT). We show that increasing the amount of juvenile food had no effects on SIT efficiency when the density-independent fecundity is low, but reduces SIT efficiency when the density-independent fecundity is high.
机译:舞台结构群体的动态结构阶段的资源可用性和/或人口因子等阶段特定的可变性,如不平等的性别比率,仍然很清楚。我们使用基于舞台结构的个性化的模型来解决这些问题,该模型包含许多全袋昆虫的终身历史参数。使用来自果蝇的49代实验的时间序列数据校准了该模型的果蝇群体的实验室群体,受到幼虫和成人营养水平的四种不同组合。该模型能够在三项独立研究中捕获经验时间序列的多种定性和定量方面。然后,我们模拟了模型,探讨了各种寿命参数和营养水平的相互作用在确定人口稳定性方面。在所有营养制度中,在增加鸡蛋 - 孵化率,临界质量和分配给女性繁殖力的身体资源的比例时,降低了群体的恒定稳定性。然而,增加女性繁殖力对成年密度对营养制度的恒定稳定性敏感性的影响。不平等性别比和性别剔除的影响受到繁殖力的影响,但不受少年营养的水平影响。最后,我们调查了一些这些见解对效率的效率,无菌昆虫技术(SIT)的影响。我们表明,当密度无关的繁殖力低时,增加少年食物的数量对静力效率没有影响,但是当密度无关的繁殖力高时降低效率。

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