Effects of water availability, nitrogen supply and atmospheric CO2 concentrations on plant nitrogen natural abundance values

Functional Plant Biology : FPB
William D Stock, John R Evans

Abstract

The relative effects of soil N, water supply and elevated atmospheric CO2 on foliar δ15N values were examined. Phalaris arundinacea L. (Holdfast) and Physalis peruviana L. (Cape Gooseberry) were grown for 80 d with three water availability treatments, two atmospheric CO2 concentrations and four N supply rates. Elevated CO2 increased total plant biomass and N for each treatment and decreased allocation to roots, leaf N concentrations and stomatal conductance. Leaves had less negative leaf δ13C values under low water supply associated with decreased stomatal conductance and increased leaf N concentration, which decreased the ratio of intercellular to ambient CO2 concentration. The δ15N value of the supplied nitrate (4.15‰) was similar to the value for Phalaris leaves (4.11‰), but Cape Gooseberry leaves were enriched (6.52‰). The effects of elevated CO2 on leaf δ15N values were small, with Phalaris showing no significant change, while Cape Gooseberry showed a significant (P < 0.05) decline of 0.42 ‰. Variation in δ15N values was unrelated to stomatal conductance, transpiration, differential use of N forms or denitrification. Plants with low foliar N concentrations tended to be depleted in 15N. We suggest that changes in N allocati...Continue Reading

References

Feb 17, 2001·Trends in Ecology & Evolution·D Robinson
Mar 26, 2003·The American Naturalist·Ian J WrightMark Westoby
Jun 1, 1997·Annual Review of Plant Physiology and Plant Molecular Biology·Bert G. DrakeSteve P. Long
Apr 23, 2004·Nature·Ian J WrightRafael Villar
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Citations

Feb 11, 2020·The New Phytologist·Jing CuiGuillaume Tcherkez
Jun 1, 2008·Functional Plant Biology : FPB·Iker AranjueloSalvador Nogués
Aug 13, 2010·Plant Biology·B LaddS P Bonser
Jul 25, 2019·Nature Ecology & Evolution·Erika HiltbrunnerAnsgar Kahmen
Jun 28, 2007·Environmental Science & Technology·Andrew R Bukata, T Kurtis Kyser

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