Plant Taxonomic Diversity Better Explains Soil Fungal and Bacterial Diversity than Functional Diversity in Restored Forest Ecosystems
文献类型: 外文期刊
第一作者: Abu Hanif, Md
作者: Abu Hanif, Md;Guo, Zhiming;He, Dan;Yu, Qingshui;Rao, Xingquan;Liu, Suping;Tan, Xiangping;Shen, Weijun;Abu Hanif, Md;Guo, Zhiming;He, Dan;Yu, Qingshui;Rao, Xingquan;Liu, Suping;Tan, Xiangping;Shen, Weijun;Abu Hanif, Md;Moniruzzaman, M.
作者机构:
关键词: plant-soil feedback; soil bacterial community; soil fungal community; taxonomic diversity; plant functional traits; 16S sequencing
期刊名称:PLANTS-BASEL ( 影响因子:3.935; )
ISSN:
年卷期: 2019 年 8 卷 11 期
页码:
收录情况: SCI
摘要: Plant attributes have direct and indirect effects on soil microbes via plant inputs and plant-mediated soil changes. However, whether plant taxonomic and functional diversities can explain the soil microbial diversity of restored forest ecosystems remains elusive. Here, we tested the linkage between plant attributes and soil microbial communities in four restored forests (Acacia species, Eucalyptus species, mixed coniferous species, mixed native species). The trait-based approaches were applied for plant properties and high-throughput Illumina sequencing was applied for fungal and bacterial diversity. The total number of soil microbial operational taxonomic units (OTUs) varied among the four forests. The highest richness of fungal OTUs was found in the Acacia forest. However, bacterial OTUs were highest in the Eucalyptus forest. Species richness was positively and significantly related to fungal and bacterial richness. Plant taxonomic diversity (species richness and species diversity) explained more of the soil microbial diversity than the functional diversity and soil properties. Prediction of fungal richness was better than that of bacterial richness. In addition, root traits explained more variation than the leaf traits. Overall, plant taxonomic diversity played a more important role than plant functional diversity and soil properties in shaping the soil microbial diversity of the four forests.
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