Natural Resources Canada, Canadian Forest Service, Laurentian Forestry Centre, Quebec City, QC, Canada.
Centre for Forest Research, Department of Biology, Université du Québec à Montréal, Montréal, QC, Canada.
Commun Biol. 2022 May 16;5(1):463. doi: 10.1038/s42003-022-03407-8.
Top-down effects, like predation, are drivers of insect outbreaks, but bottom-up effects, like host nutritional quality, also influence outbreaks and could in turn be altered by insect-caused defoliation. We evaluated the prediction that herbivory leads to a positive feedback on outbreak severity as nutrient concentration in plant tissues increases through improved soil nutrient availability from frass and litter deposition. Over seven years of a spruce budworm outbreak, we quantified litter nutrient fluxes, soil nitrogen availability, and host tree foliar nutrient status along a forest susceptibility gradient. As the outbreak progressed, both soil nutrient fluxes and availability increased which, in turn, improved foliage quality in surviving host trees. This is consistent with boosted insect fitness and increased population density and defoliation as outbreaks grow. Our results suggest that a positive bottom-up feedback to forest ecosystems from defoliation may result in conditions favorable to self-amplifying population dynamics in insect herbivores that can contribute to driving broad-scale outbreaks.
自上而下的影响,如捕食,是昆虫爆发的驱动因素,但自下而上的影响,如宿主营养质量,也会影响爆发,并且可能反过来被昆虫引起的落叶所改变。我们评估了这样一种预测,即随着植物组织中营养浓度的增加,通过凋落物和凋落物沉积改善土壤养分供应,食草作用会对爆发的严重程度产生正反馈。在云杉卷叶蛾爆发的七年多时间里,我们沿着森林易感性梯度量化了凋落物养分通量、土壤氮素有效性和宿主树叶片养分状况。随着爆发的发展,土壤养分通量和有效性都增加了,这反过来又提高了幸存宿主树木的叶片质量。这与昆虫适应性的提高、种群密度的增加和落叶的增加相一致,因为爆发会加剧。我们的研究结果表明,落叶对森林生态系统的正向自下而上反馈可能导致有利于昆虫食草动物自我放大种群动态的条件,从而有助于推动大规模爆发。