Xin Yue, Shi Yu, He Wei-Ming
College of Forestry, Hebei Agricultural University, Baoding, China.
State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng, China.
Front Microbiol. 2022 Dec 19;13:1074064. doi: 10.3389/fmicb.2022.1074064. eCollection 2022.
Soil microbiomes are characterized by their composition and networks, which are linked to soil nitrogen (N) availability. In nature, inorganic N dominates at one end and organic N dominates at the other end along soil N gradients; however, little is known about how this shift influences soil microbiome composition and co-occurrence networks, as well as their controls. To this end, we conducted an experiment with the host plant , which was subject to three N regimes: inorganic N-dominated, co-dominated by inorganic and organic N (CIO), and organic N-dominated. Organic N dominance exhibited stronger effects on the composition and co-occurrence networks of soil microbiomes than inorganic N dominance. The predominant control was plant traits for bacterial and fungal richness, and soil pH for keystone species. Relative to the CIO regime, inorganic N dominance did not affect fungal richness and increased keystone species; organic N dominance decreased fungal richness and keystone species. Pathogenic fungi and arbuscular mycorrhizal fungi were suppressed by organic N dominance but not by inorganic N dominance. These findings suggest that the shift from soil inorganic N-dominance to soil organic N-dominance could strongly shape soil microbiome composition and co-occurrence networks by altering species diversity and topological properties.
土壤微生物群落以其组成和网络为特征,这些与土壤氮(N)有效性相关。在自然界中,沿着土壤氮梯度,一端以无机氮为主,另一端以有机氮为主;然而,对于这种转变如何影响土壤微生物群落组成和共现网络以及它们的调控机制,人们了解甚少。为此,我们对宿主植物进行了一项实验,该植物处于三种氮素处理方式下:以无机氮为主、无机氮和有机氮共同主导(CIO)以及以有机氮为主。与无机氮主导相比,有机氮主导对土壤微生物群落的组成和共现网络具有更强的影响。主要的调控因素是细菌和真菌丰富度的植物性状以及关键物种的土壤pH值。相对于CIO处理方式,无机氮主导不影响真菌丰富度,但增加了关键物种;有机氮主导降低了真菌丰富度和关键物种。有机氮主导抑制了致病真菌和丛枝菌根真菌,但无机氮主导没有。这些发现表明,从土壤无机氮主导到土壤有机氮主导的转变可能通过改变物种多样性和拓扑特性来强烈塑造土壤微生物群落组成和共现网络。