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PMID: 16660534 Published · ppublish English Journal Article

Simultaneous measurement of nitrogen fixation estimated by acetylene-ethylene assay and nitrate absorption by soybeans.

Plant physiology ·Vol. 62 ·No. 3 ·1978-09-00 ·Pages 443-8

Wych RD, Rains DW

Abstract

An apparatus was designed for simultaneous measurement of rates of N(2) fixation estimated by C(2)H(2)-C(2)H(4) assay (N(2)[C(2)H(2)] fixation) and NO(3) (-) absorption by roots of intact, nodulated soybeans (Glycine max [L.] Merr.). The principal design features include: (a) a gas-tight mist chamber in which nodulated roots can be exposed simultaneously to C(2)H(2) in the gas phase and to a liquid phase containing NO(3) (-) sprayed in a fine mist; and (b) provision for sampling the gas phase for C(2)H(4) determination, and the liquid phase for NO(3) (-) determination.We studied NO(3) (-) absorption by soybeans as affected by nodulation, NO(3) (-) concentration during assay, and previous N nutrition during growth in nutrient solution culture in controlled environment chambers. It was established that 0.5 mm NO(3) (-) nearly saturated the NO(3) (-) absorption system of both nodulated and unnodulated soybeans when the concentration dependence of NO(3) (-) absorption rate was measured just after flowering began. Nitrate absorption rates were measured after development of N stress in unnodulated plants, and during recovery from N stress in nodulated plants. The results suggested that the lower capacity for NO(3) (-) absorption of nodulated plants was a consequence of N stress during the period of nodule growth and development.Nitrogen [C(2)H(2)] fixation rates were compared in intact plants assayed in the mist chamber and in excised roots assayed in both the mist chamber and in glass jars. Excised roots had a lower N(2)[C(2)H(2)] fixation rate than intact plants. The decline observed during the first hour after shoot removal was more pronounced for glass jar-assayed excised roots than for mist chamber-assayed excised roots.We discuss the advantages of our method for assessing the capability of a nodulated legume to acquire nitrogen through both N(2) fixation and absorption and assimilation of NO(3) (-).

Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Wych R D
Department of Agronomy and Range Science, University of California, Davis, California 95616.
Rains D W
References (8)
8 references, click to expand
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    Plant Physiol. 1975 Nov;56(5):665-70 PMID: 16659367
  2. Nitrate uptake and induction of nitrate reductase in excised corn roots.
    Plant Physiol. 1975 Nov;56(5):692-5 PMID: 16659373
  3. In vivo nitrate reduction in relation to nitrate uptake, nitrate content, and in vitro nitrate reductase activity in intact barley seedlings.
    Plant Physiol. 1976 Apr;57(4):519-22 PMID: 16659518
  4. Continuous, automated acetylene reduction assays using intact plants.
    Plant Physiol. 1977 Jun;59(6):1076-81 PMID: 16659997
  5. Nitrate absorption by barley: I. Kinetics and energetics.
    Plant Physiol. 1976 Jan;57(1):55-8 PMID: 16659425
  6. The acetylene-ethylene assay for n(2) fixation: laboratory and field evaluation.
    Plant Physiol. 1968 Aug;43(8):1185-207 PMID: 16656902
  7. Method for growing plants aeroponically.
    Plant Physiol. 1976 Mar;57(3):344-6 PMID: 16659479
  8. Regulation of nitrogen fixation by Rhizobia. Export of fixed N2 as NH+4.
    Biochim Biophys Acta. 1976 Jul 21;437(2):313-21 PMID: 8100
Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
0032-0889
Published
1978-09-00
Pages
443-8
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC1092143
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