Strong sesquiterpene emissions from Amazonian soils

Recent measurements in the Amazon rainforest indicate missing sources of volatile organic compounds (VOCs). Here the authors show that soil microorganisms are a strong, unaccounted source of highly reactive sesquiterpenes, a class of VOCs that can regulate ozone chemistry within the forest canopy.

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Autores principales: E. Bourtsoukidis, T. Behrendt, A. M. Yañez-Serrano, H. Hellén, E. Diamantopoulos, E. Catão, K. Ashworth, A. Pozzer, C. A. Quesada, D. L. Martins, M. Sá, A. Araujo, J. Brito, P. Artaxo, J. Kesselmeier, J. Lelieveld, J. Williams
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/e56d4242e3774126902019871d77f1ab
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spelling oai:doaj.org-article:e56d4242e3774126902019871d77f1ab2021-12-02T17:33:05ZStrong sesquiterpene emissions from Amazonian soils10.1038/s41467-018-04658-y2041-1723https://doaj.org/article/e56d4242e3774126902019871d77f1ab2018-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-04658-yhttps://doaj.org/toc/2041-1723Recent measurements in the Amazon rainforest indicate missing sources of volatile organic compounds (VOCs). Here the authors show that soil microorganisms are a strong, unaccounted source of highly reactive sesquiterpenes, a class of VOCs that can regulate ozone chemistry within the forest canopy.E. BourtsoukidisT. BehrendtA. M. Yañez-SerranoH. HellénE. DiamantopoulosE. CatãoK. AshworthA. PozzerC. A. QuesadaD. L. MartinsM. SáA. AraujoJ. BritoP. ArtaxoJ. KesselmeierJ. LelieveldJ. WilliamsNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-11 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
E. Bourtsoukidis
T. Behrendt
A. M. Yañez-Serrano
H. Hellén
E. Diamantopoulos
E. Catão
K. Ashworth
A. Pozzer
C. A. Quesada
D. L. Martins
M. Sá
A. Araujo
J. Brito
P. Artaxo
J. Kesselmeier
J. Lelieveld
J. Williams
Strong sesquiterpene emissions from Amazonian soils
description Recent measurements in the Amazon rainforest indicate missing sources of volatile organic compounds (VOCs). Here the authors show that soil microorganisms are a strong, unaccounted source of highly reactive sesquiterpenes, a class of VOCs that can regulate ozone chemistry within the forest canopy.
format article
author E. Bourtsoukidis
T. Behrendt
A. M. Yañez-Serrano
H. Hellén
E. Diamantopoulos
E. Catão
K. Ashworth
A. Pozzer
C. A. Quesada
D. L. Martins
M. Sá
A. Araujo
J. Brito
P. Artaxo
J. Kesselmeier
J. Lelieveld
J. Williams
author_facet E. Bourtsoukidis
T. Behrendt
A. M. Yañez-Serrano
H. Hellén
E. Diamantopoulos
E. Catão
K. Ashworth
A. Pozzer
C. A. Quesada
D. L. Martins
M. Sá
A. Araujo
J. Brito
P. Artaxo
J. Kesselmeier
J. Lelieveld
J. Williams
author_sort E. Bourtsoukidis
title Strong sesquiterpene emissions from Amazonian soils
title_short Strong sesquiterpene emissions from Amazonian soils
title_full Strong sesquiterpene emissions from Amazonian soils
title_fullStr Strong sesquiterpene emissions from Amazonian soils
title_full_unstemmed Strong sesquiterpene emissions from Amazonian soils
title_sort strong sesquiterpene emissions from amazonian soils
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/e56d4242e3774126902019871d77f1ab
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