Contrasting patterns and drivers of soil fungal communities in subtropical deciduous and evergreen broadleaved forests

被引:0
作者
Liang Chen
Wenhua Xiang
Huili Wu
Shuai Ouyang
Pifeng Lei
Yajun Hu
Tida Ge
Jun Ye
Yakov Kuzyakov
机构
[1] Central South University of Forestry and Technology,Faculty of Life Science and Technology
[2] Huitong National Station for Scientific Observation and Research of Chinese Fir Plantation Ecosystems in Hunan Province,Key Laboratory of Agro
[3] Chinese Academy of Sciences,ecological Processes in Subtropical Regions, Changsha Research Station for Agricultural & Environmental Monitoring, Institute of Subtropical Agriculture
[4] The University of Queensland,Australian Centre for Ecogenomics
[5] University of Goettingen,Department of Soil Science of Temperate Ecosystems, Department of Agricultural Soil Science
[6] Russian Academy of Sciences,Institute of Physicochemical and Biological Problems in Soil Science
来源
Applied Microbiology and Biotechnology | 2019年 / 103卷
关键词
Assembly; Broadleaved forests; Co-occurrence network; FUNGuild; High-throughput sequencing;
D O I
暂无
中图分类号
学科分类号
摘要
Subtropical broadleaved forests play a crucial role in supporting terrestrial ecosystem functions, but little is known about their belowground soil fungal communities despite that they have central functions in C, N, and P cycles. This study investigated the structures and identified the drivers of soil fungal communities in subtropical deciduous and evergreen broadleaved forests, using high-throughput sequencing and FUNGuild for fungal identification and assignment to the trophic guild. Fungal richness was much higher in the deciduous than in the evergreen forest. Both forests were dominated by Ascomycota and Basidiomycota phyla, but saprophytic fungi were more abundant in the deciduous forest and ectomycorrhizal fungi predominated in the evergreen forest. Fungal communities had strong links to plant and soil properties. Specifically, plant diversity and litter biomass were the main aboveground drivers of fungal diversity and composition in the deciduous forest, while host effects were prominent in the evergreen forest. The belowground factors, i.e., soil pH, water content, and nutrients especially available P, were identified as the primary drivers of soil fungal communities in the broadleaved forests. Co-occurrence network analysis revealed assembly of fungal composition in broadleaved forest soils was non-random. The smaller modularity of the network in the deciduous forest reflects lower resistance to environment changes. Concluding, these results showed that plant community attributes, soil properties, and potential interactions among fungal functional guilds operate jointly on the divergence of soil fungal community assembly in the two broadleaved forest types.
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页码:5421 / 5433
页数:12
相关论文
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