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Seasonal reproduction leads to population collapse and an Allee effect in a stage-structured consumer-resource biomass model when mortality rate increases

机译:当死亡率增加时季节性繁殖会导致种群崩溃和阶段结构的消费者资源生物量模型中的Allee效应

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摘要

Many populations collapse suddenly when reaching low densities even if they have abundant food conditions, a phenomenon known as an Allee effect. Such collapses can have disastrous consequences, for example, for loss of biodiversity. In this paper, we formulate a stage-structured consumer-resource biomass model in which adults only reproduce at the beginning of each growing season, and investigate the effect of an increasing stage-independent background mortality rate of the consumer. As the main difference with previously studied continuous-time models, seasonal reproduction can result in an Allee effect and consumer population collapses at high consumer mortality rate. However, unlike the mechanisms reported in the literature, in our model the Allee effect results from the time difference between the maturation of juveniles and the reproduction of adults. The timing of maturation plays a crucial role because it not only determines the body size of the individuals at maturation but also influences the duration of the period during which adults can invest in reproductive energy, which together determine the reproductive output at the end of the season. We suggest that there exists an optimal timing of maturation and that consumer persistence is promoted if individuals mature later in the season at a larger body size, rather than maturing early, despite high food availability supporting rapid growth.
机译:即使人口充足,许多人口达到低密度时也会突然崩溃,这种现象被称为阿利效应。这种崩溃可能造成灾难性后果,例如,生物多样性的丧失。在本文中,我们建立了一个阶段结构的消费者资源生物量模型,在该模型中,成年人仅在每个生长季节的开始繁殖,并研究了消费者阶段无关的背景死亡率增加的影响。与以前研究的连续时间模型的主要区别在于,季节性复制会导致Allee效应,并且在高消费者死亡率的情况下,消费者群体会崩溃。但是,与文献中报道的机制不同,在我们的模型中,Allee效应是由幼虫成熟和成年繁殖之间的时间差引起的。成熟的时机起着至关重要的作用,因为它不仅决定了成熟时个体的体型,而且还影响了成年人可以投资生殖能量的时期的长短,这些时间共同决定了季节结束时的生殖产量。我们建议,存在一个最佳的成熟时机,如果个体在本季节后期以较大的体型成熟而不是早熟,则可以提高消费者的持久性,尽管可获得的大量食物支持快速增长。

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  • 作者

    Zepeng Sun; André M. de Roos;

  • 作者单位
  • 年(卷),期 -1(12),10
  • 年度 -1
  • 页码 e0187338
  • 总页数 16
  • 原文格式 PDF
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