School of Environmental Science, Simon Fraser University, Burnaby, BC, Canada.
J Anim Ecol. 2022 Aug;91(8):1558-1561. doi: 10.1111/1365-2656.13753.
Research Highlight: McIntosh, A. R., Greig, H. S., & Howard, S. (2022). Regulation of open populations of a stream insect through larval density dependence. Journal of Animal Ecology. https://doi.org/10.1111/1365-2656.13696. Despite decades of research on population regulation through density dependence, it remains challenging to identify and understand the relative importance of mechanisms governing open populations of organisms with complex life cycles. McIntosh et al. (2022) manipulated density of aquatic invertebrates in the field, and then followed populations for 2 years to track the effects on abundance through multiple life-history stages. The authors found that their density manipulation, performed on larvae that were about to pupate, had minimal effects on the number of emergent adults collected several months later. The manipulation had a similarly negligible influence on the number of egg masses laid at study locations. The authors attribute this to stochasticity around dispersal of flying adults through the terrestrial environment. However, later in the study, the authors found evidence of density-dependent population regulation among larval stages, seemingly controlled by resource availability. These results suggest that population dynamics depend on multiple mechanisms operating at different points in organisms' life history, which could either help or hinder population persistence with disturbance or environmental change.
麦金托什、A.R.、格里格、H.S. 和霍华德、S.(2022 年)。通过幼虫密度依赖性调节溪流昆虫的开放种群。动物生态学杂志。https://doi.org/10.1111/1365-2656.13696.尽管数十年来一直通过密度依赖性研究种群调节,但仍然难以确定和理解控制具有复杂生命周期的生物体开放种群的机制的相对重要性。麦金托什等人(2022 年)在野外操纵水生无脊椎动物的密度,然后跟踪种群 2 年,以追踪通过多个生命史阶段对丰度的影响。作者发现,他们在即将化蛹的幼虫上进行的密度操纵对几个月后收集的成虫数量几乎没有影响。这种操纵对在研究地点产卵的卵块数量也几乎没有影响。作者将这归因于成虫在陆地环境中通过扩散的随机性。然而,在研究的后期,作者发现幼虫阶段存在密度依赖的种群调节的证据,这似乎受资源可用性的控制。这些结果表明,种群动态取决于生物体生命史中不同点的多个作用机制,这些机制可能有助于或阻碍种群在受到干扰或环境变化时的生存。