TY - JOUR
T1 - Improved method for isotopic measurement of free-living nitrogen fixation
AU - Zhou, Qianchen
AU - Mulvaney, Richard L.
AU - Nunes, Vander L.N.
N1 - Partial funding for the work reported was provided by the US Department of Agriculture, National Institute of Food and Agriculture under Grant number 2022\u201067019\u201036109. Appreciation is expressed to the Department of NRES and Lynn Connor, USDA Agricultural Research Service, for availability of some of the laboratory facilities used in our work. Appreciation is also expressed to Will Glazik, Cow Creek Farm, for providing access in collecting one of the soils studied, and to Tianyang Sha for assistance with image processing.
Partial funding for the work reported was provided by the US Department of Agriculture, National Institute of Food and Agriculture under Grant number 2022-67019-36109. Appreciation is expressed to the Department of NRES and Lynn Connor, USDA Agricultural Research Service, for availability of some of the laboratory facilities used in our work. Appreciation is also expressed to Will Glazik, Cow Creek Farm, for providing access in collecting one of the soils studied, and to Tianyang Sha for assistance with image processing.
PY - 2025/1/1
Y1 - 2025/1/1
N2 - The use of 15N-labeled dinitrogen (15N2) affords the only direct means of measuring free-living nitrogen fixation (FLNF); however, progress in utilizing this approach has been impeded by methodological limitations arising from the presence of nitrogenous contaminants, a lack of atmospheric uniformity, and incomplete description of procedural details. Such constraints are eliminated with an ex situ technique comprehensively described herein, which involves circulating 15N2 generated by hypobromite oxidation through a closed system that includes chemical (sulfuric acid–potassium permanganate) and cryogenic (isopentane–liquid N2) traps for atmospheric purification and an incubation chamber consisting of a desiccator equipped with a pressure gauge. Studies to evaluate the circulation system described showed that a uniform atmosphere was readily achieved with a 10-L desiccator by pumping for 30 min, and that both chemical and cryogenic traps were necessary to ensure complete (98.8%–99.6%) removal of gaseous contaminants subject to physicochemical retention by sterilized soil samples. The method proposed was successfully demonstrated in detecting the stimulatory effect of organic carbon (C) on FLNF in active soils, and can be further utilized to improve the reliability of ex situ assessment of FLNF in relation to soil processing and storage, climatic conditions, microbial dynamics, and land management practices.
AB - The use of 15N-labeled dinitrogen (15N2) affords the only direct means of measuring free-living nitrogen fixation (FLNF); however, progress in utilizing this approach has been impeded by methodological limitations arising from the presence of nitrogenous contaminants, a lack of atmospheric uniformity, and incomplete description of procedural details. Such constraints are eliminated with an ex situ technique comprehensively described herein, which involves circulating 15N2 generated by hypobromite oxidation through a closed system that includes chemical (sulfuric acid–potassium permanganate) and cryogenic (isopentane–liquid N2) traps for atmospheric purification and an incubation chamber consisting of a desiccator equipped with a pressure gauge. Studies to evaluate the circulation system described showed that a uniform atmosphere was readily achieved with a 10-L desiccator by pumping for 30 min, and that both chemical and cryogenic traps were necessary to ensure complete (98.8%–99.6%) removal of gaseous contaminants subject to physicochemical retention by sterilized soil samples. The method proposed was successfully demonstrated in detecting the stimulatory effect of organic carbon (C) on FLNF in active soils, and can be further utilized to improve the reliability of ex situ assessment of FLNF in relation to soil processing and storage, climatic conditions, microbial dynamics, and land management practices.
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U2 - 10.1002/saj2.70016
DO - 10.1002/saj2.70016
M3 - Article
AN - SCOPUS:85215942504
SN - 0361-5995
VL - 89
JO - Soil Science Society of America Journal
JF - Soil Science Society of America Journal
IS - 1
M1 - e70016
ER -