The naturally occurring nitrogen (N) isotopes, N and N, exhibit different reaction rates during many microbial N transformation processes, which results in N isotope fractionation. Such isotope effects are critical parameters for interpreting natural stable isotope abundances as proxies for biological process rates in the environment across scales. The kinetic isotope effect of ammonia oxidation (AO) to nitrite (NO ), performed by ammonia-oxidizing archaea (AOA) and ammonia-oxidizing bacteria (AOB), is generally ascribed to the enzyme ammonia monooxygenase (AMO), which catalyzes the first step in this process. However, the kinetic isotope effect of AMO, or ε , has been typically determined based on isotope kinetics during product formation (cumulative product, NO ) alone, which may have overestimated ε due to possible accumulation of chemical intermediates and alternative sinks of ammonia/ammonium (NH/NH ). Here, we analyzed N isotope fractionation during archaeal ammonia oxidation based on both isotopic changes in residual substrate (RS, NH ) and cumulative product (CP, NO ) pools in pure cultures of the soil strain EN76 and in highly enriched cultures of the marine strain NF5, under non-limiting substrate conditions. We obtained ε values of 31.9-33.1‰ for both strains based on RS (δNH ) and showed that estimates based on CP (δNO ) give larger isotope fractionation factors by 6-8‰. Complementary analyses showed that, at the end of the growth period, microbial biomass was N-enriched (10.1‰), whereas nitrous oxide (NO) was highly N depleted (-38.1‰) relative to the initial substrate. Although we did not determine the isotope effect of NH assimilation (biomass formation) and NO production by AOA, our results nevertheless show that the discrepancy between ε estimates based on RS and CP might have derived from the incorporation of N-enriched residual NH after AMO reaction into microbial biomass and that NO production did not affect isotope fractionation estimates significantly.
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http://dx.doi.org/10.3389/fmicb.2020.01710 | DOI Listing |
Nucl Med Rev Cent East Eur
December 2024
Department of Radiology & Nuclear Medicine, Sultan Qaboos Comprehensive Cancer Care, and Research Center, Muscat, Oman.
Background: In radioembolization therapy for hepatic malignancies, the accurate estimation of lung shunt fraction (LSF) is crucial to minimize the risk of radiation-induced pneumonitis and fibrosis due to hepatopulmonary shunting of yttrium-90 (90Y)-microspheres. This study aimed to compare the accuracy and precision of LSF estimation using technetium-99m macroaggregated albumin single photon emission computed tomography ([99mTc]Tc-MAA SPECT) LSF, [99mTc]Tc-MAA planar LSF, and 90Y PET LSF in patients undergoing 90Y-radioembolization.
Material And Methods: A retrospective study was conducted involving 15 patients diagnosed with hepatocellular carcinoma (HCC) or liver metastases and planned to undergo transarterial radioembolization with 90Y SirSpheres after multidisplinary team discussion.
Environ Pollut
December 2024
Nu instruments, Wrexham Industrial Estate, 74 Clywedog Road South, Wrexham LL13 9XS, United Kingdom.
Zinc (Zn) is an essential element for all living organisms, and Zn isotopes play a key role in studying the formation of disease. Despite extensive studies on Zn isotopes in healthy and diseased human tissues, the role of Zn isotopes in urinary stones remains unexplored. This study investigates Zn isotopes in 37 urinary stones using multi-collector inductively coupled plasma mass spectrometry.
View Article and Find Full Text PDFEnviron Sci Technol
December 2024
Soil Chemistry Group, Institute of Biogeochemistry and Pollutant Dynamics, CHN, ETH Zürich, 8092 Zürich, Switzerland.
Coastal sediments are a key contributor to oceanic phosphorus (P) removal, impacting P bioavailability and primary productivity. Vivianite, an Fe(II)-phosphate mineral, can be a major P sink in nonsulfidic, reducing coastal sediments. Despite its importance, vivianite formation processes in sediments remain poorly understood.
View Article and Find Full Text PDFThe conversion of tropical rainforests to agriculture causes population declines and biodiversity loss across taxa. This impacts ants (Formicidae), a crucial tropical group for ecosystem functioning. While biodiversity loss among ants is well documented, the responses of individual ant taxa and their adjustments in trophic strategies to land-use change are little studied.
View Article and Find Full Text PDFChemosphere
December 2024
Département des sciences de la Terre et de l'atmosphère, Université du Québec à Montréal, Montréal, QC, H2X 1Y4, Canada; Geotop Research Centre, Montréal, QC, H2X 3Y7, Canada. Electronic address:
Many processes can contribute to the attenuation of the frequently detected and toxic herbicides atrazine and metolachlor in surface water, including photodegradation. Multi-element compound-specific isotope analysis has the potential to decipher between these different degradation pathways as Cl is a promising tool for both pathway identification and a sensitive indicator of degradation for both atrazine and metolachlor. In this study, photodegradation experiments of atrazine and metolachlor were conducted under simulated sunlight in buffered solutions (direct photodegradation) and with nitrate (indirect photodegradation by OH radicals) to determine kinetics, transformation products and isotope fractionation for C, N and for the first time Cl.
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