高度(三角形)
纬度
真菌多样性
多样性(政治)
地理
生物
生态学
大气科学
环境科学
地质学
大地测量学
数学
几何学
社会学
人类学
作者
Florian Barbi,Tijana Martinović,Iñaki Odriozola,Antonín Macháč,Andrea Moravcová,Camelia Algora,Dalibor Ballian,Sebastian Barthold,Vendula Brabcová,Sandra Awokunle Hollá,Zander Rainier Human,Hojka Kraigher,Jelena Lazarević,Clémentine Lepinay,Lenka Mészárošová,Daniel Morais,Nikolay Nikolov,Ella Thoen,Vojtěch Tláskal,Tomáš Větrovský
摘要
Summary Gradients in species diversity across elevations and latitudes have fascinated biologists for decades. While these gradients have been well documented for macroorganisms, there is limited consensus about their universality, shape and drivers for microorganisms, such as fungi, despite the importance of fungal diversity for ecosystem functions and services. We conducted a comprehensive survey of fungal species richness in forests across 17 elevational transects along a latitudinal gradient covering the continental scale of Europe. Diversity patterns along elevational and latitudinal gradients differed among fungal ecological guilds. Diversity of saprotrophs declined with elevation while ectomycorrhizal (ECM) fungal diversity peaked in mid‐elevations. Moreover, the diversity of root endophytic fungi increased with latitude but did not change with elevation. Bayesian species distribution modeling suggests that fungal diversity is structured by deterministic rather than stochastic drivers. Importantly, ECM fungal diversity pattern persists even after accounting for the effects of environmental conditions. These results suggest that environmental conditions differentially shape the diversity of fungal guilds along elevational and latitudinal gradients, but this goes beyond soil and climatic factors in the case of ECM fungi. This study paves the way toward a better understanding of fungal diversity gradients across elevations and latitudes, with possible implications for macroecological theory, conservation and management.
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