Ventre Lespiaucq Agustina, Jacquemyn Hans, Rasmussen Hanne N, Méndez Marcos
Plant Conservation and Population Biology, Department of Biology, KU Leuven, Leuven, 3001, Belgium.
Department of Geosciences and Nature Management, Section for Forest, Nature and Biomass, University of Copenhagen, Copenhagen, 1958, Denmark.
New Phytol. 2021 Jun;230(5):1690-1699. doi: 10.1111/nph.17291. Epub 2021 Apr 4.
Temporal turnover events in biotic interactions involving plants are rarely assessed, although such changes might afford a considerable acclimation potential to the plant. This could enable fairly rapid responses to short-term fluctuations in growth conditions as well as lasting responses to long-term climatic trends. Here, we present a classification of temporal turnover encompassing 11 possible scenarios. Using orchid mycorrhiza as a study model, we show that temporal changes are common, and discuss under which conditions temporal turnover of fungal symbiont is expected. We provide six research questions and identify technical challenges that we deem most important for future studies. Finally, we discuss how the same framework can be applied to other types of biotic interactions.
涉及植物的生物相互作用中的时间周转事件很少被评估,尽管这种变化可能赋予植物相当大的适应潜力。这可以使植物对生长条件的短期波动做出相当快速的反应,以及对长期气候趋势做出持久反应。在这里,我们提出了一个涵盖11种可能情况的时间周转分类。以兰花菌根为研究模型,我们表明时间变化很常见,并讨论了在哪些条件下预计真菌共生体的时间周转会发生。我们提出了六个研究问题,并确定了我们认为对未来研究最重要的技术挑战。最后,我们讨论了如何将相同的框架应用于其他类型的生物相互作用。