Adamo Irene, Ortiz-Malavasi Edgar, Chazdon Robin, Chaverri Priscila, Ter Steege Hans, Geml József
Tropical Botany Research Group, Naturalis Biodiversity Center, 2300 Leiden, RA, The Netherlands.
Faculty of Science, Leiden University, 2300 Leiden, RA, The Netherlands.
Biology (Basel). 2021 Oct 31;10(11):1120. doi: 10.3390/biology10111120.
Successional dynamics of plants and animals during tropical forest regeneration have been thoroughly studied, while fungal compositional dynamics during tropical forest succession remain unknown, despite the crucial roles of fungi in ecological processes. We combined tree data and soil fungal DNA metabarcoding data to compare richness and community composition along secondary forest succession in Costa Rica and assessed the potential roles of abiotic factors influencing them. We found a strong coupling of tree and soil fungal community structure in wet tropical primary and regenerating secondary forests. Forest age, edaphic variables, and regional differences in climatic conditions all had significant effects on tree and fungal richness and community composition in all functional groups. Furthermore, we observed larger site-to-site compositional differences and greater influence of edaphic and climatic factors in secondary than in primary forests. The results suggest greater environmental heterogeneity and greater stochasticity in community assembly in the early stages of secondary forest succession and a certain convergence on a set of taxa with a competitive advantage in the more persisting environmental conditions in old-growth forests. Our work provides unprecedented insights into the successional dynamics of fungal communities during secondary tropical forest succession.
热带森林再生过程中植物和动物的演替动态已得到充分研究,然而,尽管真菌在生态过程中发挥着关键作用,但热带森林演替过程中的真菌组成动态仍不为人知。我们结合树木数据和土壤真菌DNA宏条形码数据,比较了哥斯达黎加次生林演替过程中的丰富度和群落组成,并评估了影响它们的非生物因素的潜在作用。我们发现,在湿润的热带原始森林和正在再生的次生林中,树木和土壤真菌群落结构存在强烈的耦合关系。森林年龄、土壤变量以及气候条件的区域差异,对所有功能组中的树木和真菌丰富度及群落组成均有显著影响。此外,我们观察到,与原始森林相比,次生林中不同地点之间的组成差异更大,土壤和气候因素的影响也更大。结果表明,次生林演替早期群落组装中的环境异质性更大、随机性更强,而在老龄森林中更持久的环境条件下,一组具有竞争优势的分类群会出现一定程度的趋同。我们的工作为次生热带森林演替过程中真菌群落的演替动态提供了前所未有的见解。