Nitrogen fertilizer rate affects root exudation, the rhizosphere microbiome and nitrogen-use-efficiency of maize

被引:264
|
作者
Zhu, Shusheng [1 ]
Vivanco, Jorge M. [2 ]
Manter, Daniel K. [3 ]
机构
[1] Yunnan Agr Univ, Key Lab Agrobiodivers & Pest Management, Educ Minist China, Kunming 650201, Yunnan, Peoples R China
[2] Colorado State Univ, Deptarment Hort & Landscape Architecture, Ft Collins, CO 80525 USA
[3] ARS, Soil Plant Nutrient Res, USDA, Ft Collins, CO 80526 USA
基金
美国国家科学基金会;
关键词
Nitrogen-use-efficiency; Maize; Microbial ecology; Fertilizer; N immobilization; BACTERIAL COMMUNITY STRUCTURE; RIBOSOMAL-RNA SEQUENCES; DIAZOTROPHIC BACTERIA; SOIL; SUGARCANE; CARBON; DENITRIFICATION; COLONIZATION; BIODIVERSITY; NODULATION;
D O I
10.1016/j.apsoil.2016.07.009
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
The composition and function of microbial communities in the rhizosphere of crops have been linked to edaphic factors and root exudate composition. We examined the effect of N fertilizer (urea) rate on maize root exudation, the associated rhizosphere microbial community, and nitrogen-use-efficiency. Increasing N rate had a significant effect on root exudate quantity and composition. Specifically, the total abundance of sugars, sugar alcohols, and phenolics was positively correlated with N rate (p < 0.005). Similarly, the abundance of rhizosphere bacteria (16 S rRNA copies g(-1) soil FW) was enhanced with increasing N rate. Using PICRUSt, we also explored the metagenomic contribution of bacterial OTUs to the abundance of N cycle-related genes in-the maize rhizosphere. On a relative abundance basis, the nitrifying-(pmoA-amoA) and denitrifying-genes (nirK and nosZ) were significantly influenced by N rate (p <0.05); whereas, the nitrogen fixing (nifD and nifH) arid urease (ureC) genes were not influenced by N rate (p > 0.05). However, on a total abundance basis (gene copies g(-1) soil FW) all N-cycle genes increased significantly with increasing N rate (p < 0.05). Percent N recovery from both soil and fertilizer sources showed a curvilinear response that was highest at intermediate N rates; whereas, fertilizer N lost from the system increased significantly at the two highest N rates (p < 0.05). In summary, our results show high N rates increase both root exudation and the abundance of soil bacteria, which may help explain the decline in fertilizer-use efficiency and loss of N from the system at higher N rates. Published by Elsevier B.V.
引用
收藏
页码:324 / 333
页数:10
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