Literature DB >> 11427711

Wheat leaves emit nitrous oxide during nitrate assimilation.

D R Smart1, A J Bloom.   

Abstract

Nitrous oxide (N(2)O) is a key atmospheric greenhouse gas that contributes to global climatic change through radiative warming and depletion of stratospheric ozone. In this report, N(2)O flux was monitored simultaneously with photosynthetic CO(2) and O(2) exchanges from intact canopies of 12 wheat seedlings. The rates of N(2)O-N emitted ranged from <2 pmol x m(-2) x s(-1) when NH(4)(+) was the N source, to 25.6 +/- 1.7 pmol x m(-2) x s(-1) (mean +/- SE, n = 13) when the N source was shifted to NO(3)(-). Such fluxes are among the smallest reported for any trace gas emitted by a higher plant. Leaf N(2)O emissions were correlated with leaf nitrate assimilation activity, as measured by using the assimilation quotient, the ratio of CO(2) assimilated to O(2) evolved. (15)N isotopic signatures on N(2)O emitted from leaves supported direct N(2)O production by plant NO(3)(-) assimilation and not N(2)O produced by microorganisms on root surfaces and emitted in the transpiration stream. In vitro production of N(2)O by both intact chloroplasts and nitrite reductase, but not by nitrate reductase, indicated that N(2)O produced by leaves occurred during photoassimilation of NO(2)(-) in the chloroplast. Given the large quantities of NO(3)(-) assimilated by plants in the terrestrial biosphere, these observations suggest that formation of N(2)O during NO(2)(-) photoassimilation could be an important global biogenic N(2)O source.

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Year:  2001        PMID: 11427711      PMCID: PMC35435          DOI: 10.1073/pnas.131572798

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  16 in total

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Journal:  Appl Environ Microbiol       Date:  1982-12       Impact factor: 4.792

Review 4.  Nitrate reductase: a target for molecular and cellular studies in higher plants.

Authors:  M Caboche; P Rouzé
Journal:  Trends Genet       Date:  1990-06       Impact factor: 11.639

5.  Nitrogen balance for wheat canopies (Triticum aestivum cv. Veery 10) grown under elevated and ambient CO2 concentrations.

Authors:  D R Smart; K Ritchie; A J Bloom; B B Bugbee
Journal:  Plant Cell Environ       Date:  1998       Impact factor: 7.228

6.  On the use of antibiotics to reduce rhizoplane microbial populations in root physiology and ecology investigations.

Authors:  D R Smart; A Ferro; K Ritchie; B G Bugbee
Journal:  Physiol Plant       Date:  1995       Impact factor: 4.500

7.  Nitric Oxide and Nitrous Oxide Production by Soybean and Winged Bean during the in Vivo Nitrate Reductase Assay.

Authors:  J V Dean; J E Harper
Journal:  Plant Physiol       Date:  1986-11       Impact factor: 8.340

8.  Contamination of Ammonium-Based Nutrient Solutions by Nitrifying Organisms and the Conversion of Ammonium to Nitrate.

Authors:  P. E. Padgett; R. T. Leonard
Journal:  Plant Physiol       Date:  1993-01       Impact factor: 8.340

9.  Nitrous oxide emissions from an irrigated cornfield.

Authors:  G L Hutchinson; A R Mosier
Journal:  Science       Date:  1979-09-14       Impact factor: 47.728

10.  Nitrate reduction and assimilation in Chlorella.

Authors:  M CRAMER; J MYERS
Journal:  J Gen Physiol       Date:  1948-09-10       Impact factor: 4.086

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  21 in total

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Authors:  K K Baruah; Boby Gogoi; Leena Borah; Manoshi Gogoi; R Boruah
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3.  Genetic Diversity in Nitrogen Fertiliser Responses and N Gas Emission in Modern Wheat.

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Review 4.  Plant mitochondrial function during anaerobiosis.

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5.  Quantifying nitrous oxide fluxes on multiple spatial scales in the Upper Midwest, USA.

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Review 6.  A paradigm shift towards low-nitrifying production systems: the role of biological nitrification inhibition (BNI).

Authors:  G V Subbarao; K L Sahrawat; K Nakahara; I M Rao; M Ishitani; C T Hash; M Kishii; D G Bonnett; W L Berry; J C Lata
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7.  Evidence for biological nitrification inhibition in Brachiaria pastures.

Authors:  G V Subbarao; K Nakahara; M P Hurtado; H Ono; D E Moreta; A F Salcedo; A T Yoshihashi; T Ishikawa; M Ishitani; M Ohnishi-Kameyama; M Yoshida; M Rondon; I M Rao; C E Lascano; W L Berry; O Ito
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8.  Nitrous oxide emission by aquatic macrofauna.

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9.  The role of tryptophan in the ferredoxin-dependent nitrite reductase of spinach.

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Review 10.  Hemoglobin: a nitric-oxide dioxygenase.

Authors:  Paul R Gardner
Journal:  Scientifica (Cairo)       Date:  2012-12-19
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