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PMID: 16855013 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Nitrogen fixation by white lupin under phosphorus deficiency.

Annals of botany ·Vol. 98 ·No. 4 ·2006-10-00 ·Pages 731-40

Schulze J, Temple G, Temple SJ, Beschow H, Vance CP

Abstract

White lupin is highly adapted to growth in a low-P environment. The objective of the present study was to evaluate whether white lupin grown under P-stress has adaptations in nodulation and N2 fixation that facilitate continued functioning. Nodulated plants were grown in silica sand supplied with N-free nutrient solution containing 0 to 0.5 mm P. At 21 and 37 d after inoculation (DAI) growth, nodulation, P and N concentration, N2 fixation (15N2 uptake and H2 evolution), root/nodule net CO2 evolution and CO2 fixation (14CO2 uptake) were measured. Furthermore, at 21 DAI in-vitro activities and transcript abundance of key enzymes of the C and N metabolism in nodules were determined. Moreover, nodulation in cluster root zones was evaluated. Treatment without P led to a lower P concentration in shoots, roots, and nodules. In both treatments, with or without P, the P concentration in nodules was greater than that in the other organs. At 21 DAI nitrogen fixation rates did not differ between treatments and the plants displayed no symptoms of P or N deficiency on their shoots. Although nodule number at 21 DAI increased in response to P-deficiency, total nodule mass remained constant. Increased nodule number in P-deficient plants was associated with cluster root formation. A higher root/nodule CO2 fixation in the treatment without P led to a lower net CO2 release per unit fixed N, although the total CO2 released per unit fixed N was higher in the treatment without P. The higher CO2 fixation was correlated with increased transcript abundance and enzyme activities of phosphoenolpyruvate carboxylase and malate dehydrogenase in nodules. Between 21 and 37 DAI, shoots of plants grown without P developed symptoms of N- and P-deficiency. By 37 DAI the P concentration had decreased in all organs of the plants treated with no P. At 37 DAI, nitrogen fixation in the treatment without P had almost ceased. Enhanced nodulation in cluster root zones and increased potential for organic acid production in root nodules appear to contribute to white lupin's resilience to P-deficiency.

MeSH Terms
Carbon Dioxide/metabolism Lupinus/metabolism Nitrogen/metabolism Nitrogen Fixation/physiology Phosphorus/deficiency,metabolism Root Nodules, Plant/anatomy & histology,growth & development,metabolism
Chemicals
Carbon Dioxide Phosphorus Nitrogen
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Schulze Joachim
Department of Crop Science, Plant Nutrition, Georg-August-University Göttingen, Carl-Sprengel-Weg 1, D-37075 Göttingen, Germany. jschulz2@gwdg.de
Temple Glena
Temple Stephen J
Beschow Heidrun
Vance Carroll P
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Article Info
Journal
Annals of botany
Abbr.
Ann Bot
ISSN
0305-7364
Published
2006-10-00
Epub
2006-00-19
Pages
731-40
Language
English
Region
England
NLM ID
0372347
PMCID
PMC2806177
Subset
IM
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