Biological Nitrogen Fixation: A Key Process for the Response of Grassland Ecosystems to Elevated Atmospheric [CO2]
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/3-540-31237-4_18
Reference60 articles.
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2. Almeida JFP, Lüscher A, Frehner M, Oberson A, Nösberger J (1999) Partitioning of P and the activity of root acid phosphatase in white clover (Trifolium repens L) are modified by increased atmospheric CO2 and P fertilisation. Plant Soil 210:159–166
3. Almeida JPF, Hartwig UA, Frehner M, Nösberger J, Lüscher A (2000) Evidence that P deficiency induces N feedback regulation of symbiotic N2 fixation in white clover (Trifolium repens L). J Exp Bot 51:1289–1297
4. Arnone JA III (1997) Indices of plant N availability in an alpine grassland under elevated CO2. Plant Soil 190:61–66
5. Arnone JA III (1999) Symbiotic N2 fixation in a high Alpine grassland: effects of four growing seasons of elevated CO2. Funct Ecol 13:383–387
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1. Wheat and white lupin differ in rhizosphere priming of soil organic carbon under elevated CO2;Plant and Soil;2017-09-30
2. Nitrogen cycle responses to elevated CO2 depend on ecosystem nutrient status;Nutrient Cycling in Agroecosystems;2015-02-17
3. A reduced fraction of plant N derived from atmospheric N (%Ndfa) and reduced rhizobial nifH gene numbers indicate a lower capacity for nitrogen fixation in nodules of white clover exposed to long-term CO<sub>2</sub> enrichment;Biogeosciences;2013-12-16
4. Selective grazing modifies previously anticipated responses of plant community composition to elevated CO2in a temperate grassland;Global Change Biology;2013-11-11
5. A reduced fraction of plant N derived from atmospheric N (%Ndfa) and reduced rhizobial nifH gene numbers indicate a lower capacity for nitrogen fixation in nodules of white clover exposed to long-term CO<sub>2</sub> enrichment;2013-06-18
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