Transfer of Nitrogen and Phosphorus From Cattle Manure to Soil and Oats Under Simulative Cattle Manure Deposition
文献类型: 外文期刊
第一作者: Zhao, Chengzhen
作者: Zhao, Chengzhen;Hu, Juan;Li, Qiang;Fang, Yi;Zhong, Rongzhen;Zhao, Chengzhen;Liu, Di;Liu, Ziguang
作者机构:
关键词: cattle manure deposition; nutrient return; root length; bacteria; fungi
期刊名称:FRONTIERS IN MICROBIOLOGY ( 影响因子:6.064; 五年影响因子:6.843 )
ISSN:
年卷期: 2022 年 13 卷
页码:
收录情况: SCI
摘要: Simulated cattle manure deposition was used to estimate nutrient transfer to soil and oats and to investigate changes in microbial community composition and functional groups in oat rhizospheres. Nutrient absorption and return efficiency were calculated as a series of standard calculation formulas, and total nutrient transfer efficiency was nutrient absorption efficiency plus nutrient return efficiency. In total, 74.83% of nitrogen (N) and 59.30% of phosphorus (P) in cattle manure were transferred to soil and oats, with 11.79% of N and 7.89% of P in cattle manure absorbed by oats, and the remainder sequestered in the soil for 80 days after sowing. Cattle manure increased oat root length, surface, and volume under 0.2 mm diameter, and improved relative abundance of the microbiome known to be beneficial. In response to cattle manure, several bacteria known to be beneficial, such as Proteobacteria, Bacteroidota, and Firmicutes at phyla the level and Pseudoxanthomonas, Pseudomonas, and Sphingomonas at the genus level, were positively related to oat biomass and nutrient accumulation. For fungal communities, the relative abundance of Ascomycota is the predominant phylum, which varied in a larger range in the control treatment (81.0-63.3%) than the cattle manure deposition treatment (37.0-42.9%) as plant growing days extend. The relevant abundance of Basidiomycota known as decomposer was higher in cattle manure deposition treatment compared to that in control treatment at 15 days after sowing. More importantly, cattle manure deposition inhibited trophic mode within pathotroph like Alternaria and Fusarium fungal genus and promoted saprotroph and symbiotroph.
分类号:
- 相关文献
作者其他论文 更多>>
-
Evaluating the effect of biochar rate and combination with fertilizer on the dynamics of soil nitrogen supply in tea plantation
作者:Zhang, Bangwei;Liu, Cenwei;Li, Qiang;Ye, Jing;Lin, Yi;Wang, Yixiang;Zhang, Bangwei;Burton, David L.
关键词:Biochar; Nitrogen synamics; Tea plantation; Soil nitrogen supply; Nitrogen exposure; Biochar-based organic fertilizer
-
A wheat phytohormone atlas spanning major tissues across the entire life cycle provides novel insights into cytokinin and jasmonic acid interplay
作者:Yin, Huanran;Liu, Wei;Hu, Xin;Jia, Jingqi;Liu, Mengmeng;Wei, Jiaqi;Cheng, Yikeng;Gong, Xin;Li, Qiang;Yan, Wenhao;Chen, Wei;Jia, Jizeng;Gao, Lifeng;Fernie, Alisdair R.
关键词:wheat; phytohormones; metabolic regulatory network; DOF
-
Knockout of phosphatidate phosphohydrolase genes confers broad-spectrum disease resistance in plants
作者:Gong, Qiuwen;Sha, Gan;Han, Xinyu;Guo, Zhenhua;Yang, Lei;Yang, Wei;Tan, Ronglei;Liu, Meng;Xia, Fengdie;Li, Guotian;Sha, Gan;Chen, Ting;Chen, Guang;Shen, Xin;Xie, Kabin;Hu, Honghong;Li, Qiang;Li, Yufei;Luo, Jie;Cai, Guangqin;Luo, Jie
关键词:genome-editing; phosphatidic acid; Oryza sativa; Arabidopsis; Magnaporthe oryzae
-
PABPN1 functions as a downstream gene of CREB to inhibit the proliferation of preadipocytes
作者:Zhang, Xiao-Han;Li, Jia-Xin;Wu, Xiao-Xu;Zhang, Qian;Yang, Si-Qi;Yang, Xiu-Qin;Tian, Ming;Liu, Di
关键词:CREB; PABPN1; Preadipocyte; Proliferation; Regulatory Axis
-
Csu-miR-375 and Csu-miR-11631 regulate ryanodine receptor to induce chlorantraniliprole resistance in Chilo suppressalis
作者:Li, Qiang;Mo, Wujia;Lu, Zhongxian;Ullah, Farman;Zheng, Xusong;Xu, Hongxing;Lu, Yanhui
关键词:diamide; miRNA; gene expression; insecticide resistance; rice striped stem borer
-
Comprehensive analysis of transcriptomics and metabolomics provides insights into the mechanism by plant growth regulators affect the quality of jujube (Ziziphus jujuba Mill.) fruit ( vol 19 , e0305185 , 2024)
作者:Liu, Defen;Jiang, Na;Yuan, Yuting;Liu, Hejiang;Ju, Yanjun;Zhao, Duoyong;Kang, Lu;Liu, Defen;Yuan, Yuting;Sun, Wanjin;Jia, Wenzhao;Fang, Yi;Mao, Jiefei;Kang, Lu
关键词:
-
The oxidative stress 3-like protein GsOS3L, substrate of GsSnRK1, enhances salt and cadmium stresses in soybean roots
作者:Sun, Xiaohuan;Bu, Haidong;Lu, Haoran;Li, Qiang;Xiao, Jialei;Ding, Xiaodong;Cao, Lei;Sun, Xiaohuan;Zhang, Junfeng
关键词:Wild soybean; GsOS3L; GsSnRK1; Phosphorylation; Palmitoylation; Abiotic stress