Low Nitrogen Fertilization Adapts Rice Root Microbiome to Low Nutrient Environment by Changing Biogeochemical Functions
Author:
Affiliation:
1. Graduate School of Life Sciences, Tohoku University
2. Memuro Research Station, National Agricultural Research Center for Hokkaido Region
3. Soil Biology and Chemistry, Graduate School of Bioagricultural Sciences, Nagoya University
Publisher
Japanese Society of Microbial Ecology
Subject
Plant Science,Soil Science,General Medicine,Ecology, Evolution, Behavior and Systematics
Link
https://www.jstage.jst.go.jp/article/jsme2/29/1/29_ME13110/_pdf
Reference50 articles.
1. 1. Banger, K, H Tian, and C Lu. 2012. Do nitrogen fertilizers stimulate or inhibit methane emissions from rice fields? Global Change Biol. 18:3257-3267.
2. 2. Barraquio, WL, MLG Daroy, AC Tirol, JK Ladha, and I Watanabe. 1986. Laboratory acetylene reduction assay for relative measurement of N2-fixing activities associated with field-grown wetland rice plants. Plant Soil. 90:357-372.
3. 3. Blaha, D, C Prigent-Combaret, S Mirza, and Y Moenne-Loccoz. 2006. Phylogeny of the 1-aminocyclopropane-1-carbxylic acid deaminase-encoding gene acdS in phytobeneficial and pathogenic Proteobacteria and relation with strain biogeography. FEMS Microbiol Ecol. 56:455-470.
4. 4. Bodelier, PEL. 2011. Interactions between nitrogenous fertilizers and methane cycling in wetland and upland soils. Curr Opin Environ Sustain. 3:379-388.
5. 5. Bodelier, PLE, P Roslev, T Henckel, and P Frenzel. 2000. Stimulation by ammonium-based fertilizer of methane oxidation in soil around rice roots. Nature. 403:421-424.
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