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Genetic and Environmental Controls on Nitrous Oxide Accumulation in Lakes

We studied potential links between environmental factors, nitrous oxide (N(2)O) accumulation, and genetic indicators of nitrite and N(2)O reducing bacteria in 12 boreal lakes. Denitrifying bacteria were investigated by quantifying genes encoding nitrite and N(2)O reductases (nirS/nirK and nosZ, resp...

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Autores principales: Saarenheimo, Jatta, Rissanen, Antti J., Arvola, Lauri, Nykänen, Hannu, Lehmann, Moritz F., Tiirola, Marja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4355481/
https://www.ncbi.nlm.nih.gov/pubmed/25756328
http://dx.doi.org/10.1371/journal.pone.0121201
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author Saarenheimo, Jatta
Rissanen, Antti J.
Arvola, Lauri
Nykänen, Hannu
Lehmann, Moritz F.
Tiirola, Marja
author_facet Saarenheimo, Jatta
Rissanen, Antti J.
Arvola, Lauri
Nykänen, Hannu
Lehmann, Moritz F.
Tiirola, Marja
author_sort Saarenheimo, Jatta
collection PubMed
description We studied potential links between environmental factors, nitrous oxide (N(2)O) accumulation, and genetic indicators of nitrite and N(2)O reducing bacteria in 12 boreal lakes. Denitrifying bacteria were investigated by quantifying genes encoding nitrite and N(2)O reductases (nirS/nirK and nosZ, respectively, including the two phylogenetically distinct clades nosZ (I) and nosZ (II)) in lake sediments. Summertime N(2)O accumulation and hypolimnetic nitrate concentrations were positively correlated both at the inter-lake scale and within a depth transect of an individual lake (Lake Vanajavesi). The variability in the individual nirS, nirK, nosZ (I), and nosZ (II) gene abundances was high (up to tenfold) among the lakes, which allowed us to study the expected links between the ecosystem’s nir-vs-nos gene inventories and N(2)O accumulation. Inter-lake variation in N(2)O accumulation was indeed connected to the relative abundance of nitrite versus N(2)O reductase genes, i.e. the (nirS+nirK)/nosZ (I) gene ratio. In addition, the ratios of (nirS+nirK)/nosZ (I) at the inter-lake scale and (nirS+nirK)/nosZ (I+II) within Lake Vanajavesi correlated positively with nitrate availability. The results suggest that ambient nitrate concentration can be an important modulator of the N(2)O accumulation in lake ecosystems, either directly by increasing the overall rate of denitrification or indirectly by controlling the balance of nitrite versus N(2)O reductase carrying organisms.
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spelling pubmed-43554812015-03-17 Genetic and Environmental Controls on Nitrous Oxide Accumulation in Lakes Saarenheimo, Jatta Rissanen, Antti J. Arvola, Lauri Nykänen, Hannu Lehmann, Moritz F. Tiirola, Marja PLoS One Research Article We studied potential links between environmental factors, nitrous oxide (N(2)O) accumulation, and genetic indicators of nitrite and N(2)O reducing bacteria in 12 boreal lakes. Denitrifying bacteria were investigated by quantifying genes encoding nitrite and N(2)O reductases (nirS/nirK and nosZ, respectively, including the two phylogenetically distinct clades nosZ (I) and nosZ (II)) in lake sediments. Summertime N(2)O accumulation and hypolimnetic nitrate concentrations were positively correlated both at the inter-lake scale and within a depth transect of an individual lake (Lake Vanajavesi). The variability in the individual nirS, nirK, nosZ (I), and nosZ (II) gene abundances was high (up to tenfold) among the lakes, which allowed us to study the expected links between the ecosystem’s nir-vs-nos gene inventories and N(2)O accumulation. Inter-lake variation in N(2)O accumulation was indeed connected to the relative abundance of nitrite versus N(2)O reductase genes, i.e. the (nirS+nirK)/nosZ (I) gene ratio. In addition, the ratios of (nirS+nirK)/nosZ (I) at the inter-lake scale and (nirS+nirK)/nosZ (I+II) within Lake Vanajavesi correlated positively with nitrate availability. The results suggest that ambient nitrate concentration can be an important modulator of the N(2)O accumulation in lake ecosystems, either directly by increasing the overall rate of denitrification or indirectly by controlling the balance of nitrite versus N(2)O reductase carrying organisms. Public Library of Science 2015-03-10 /pmc/articles/PMC4355481/ /pubmed/25756328 http://dx.doi.org/10.1371/journal.pone.0121201 Text en © 2015 Saarenheimo et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Saarenheimo, Jatta
Rissanen, Antti J.
Arvola, Lauri
Nykänen, Hannu
Lehmann, Moritz F.
Tiirola, Marja
Genetic and Environmental Controls on Nitrous Oxide Accumulation in Lakes
title Genetic and Environmental Controls on Nitrous Oxide Accumulation in Lakes
title_full Genetic and Environmental Controls on Nitrous Oxide Accumulation in Lakes
title_fullStr Genetic and Environmental Controls on Nitrous Oxide Accumulation in Lakes
title_full_unstemmed Genetic and Environmental Controls on Nitrous Oxide Accumulation in Lakes
title_short Genetic and Environmental Controls on Nitrous Oxide Accumulation in Lakes
title_sort genetic and environmental controls on nitrous oxide accumulation in lakes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4355481/
https://www.ncbi.nlm.nih.gov/pubmed/25756328
http://dx.doi.org/10.1371/journal.pone.0121201
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