Roy Julien, Reichel Rüdiger, Brüggemann Nicolas, Hempel Stefan, Rillig Matthias C
Institut für Biologie, Ökologie der Pflanzen, Freie Universität Berlin, 14195 Berlin, Germany.
Berlin-Brandenburg Institute of Advanced Biodiversity Research, 14195 Berlin, Germany.
FEMS Microbiol Ecol. 2017 Sep 1;93(9). doi: 10.1093/femsec/fix102.
Arbuscular mycorrhizal (AM) fungi provide a range of functions in natural and managed ecosystems. However, the trajectory of AM fungal diversity after land degradation is poorly known. We studied the succession of AM fungi along an agricultural recultivation chronosequence after open-cast mining near Cologne, Germany. We used high-throughput sequencing of the large-subunit ribosomal RNA genes to characterize the soil AM fungal communities of 10 agricultural fields spanning 52 years of recultivation. During three years, soils are recultivated with a legume, and then converted to agriculture to be later returned to local farmers implementing conventional agriculture. Our data reveal a quick and strong recovery of AM fungal richness after a few years of recultivation, but also a rapid decline following years of conventional agriculture. The community structure was strongly correlated to mineral nitrogen and phosphorus, richness peaking at high N:P ratio. This work represents the first molecular data documenting temporal patterns of AM fungal communities in agriculture; it shows the deleterious effect of conventional agricultural practices on AM fungal communities developing over time. Nonetheless, the highly dynamic nature of AM fungal communities suggests strategies for site-level management for which considering N:P stoichiometry is crucial.
丛枝菌根(AM)真菌在自然生态系统和人工管理生态系统中发挥着一系列功能。然而,土地退化后AM真菌多样性的变化轨迹却鲜为人知。我们研究了德国科隆附近露天采矿后农业复垦时间序列上AM真菌的演替情况。我们使用大亚基核糖体RNA基因的高通量测序来表征10个农业田地的土壤AM真菌群落,这些田地跨越了52年的复垦时间。在三年时间里,先用豆科植物进行土壤复垦,然后转为农业用地,之后再归还给采用传统农业方式的当地农民。我们的数据显示,经过几年的复垦,AM真菌丰富度迅速且强劲地恢复,但在多年的传统农业之后又迅速下降。群落结构与矿质氮和磷密切相关,丰富度在高氮磷比时达到峰值。这项工作提供了首个记录农业中AM真菌群落时间模式的分子数据;它表明了传统农业做法对AM真菌群落随时间发展的有害影响。尽管如此,AM真菌群落的高度动态性提示了在场地层面进行管理的策略,其中考虑氮磷化学计量比至关重要。