Delayed responses of an Arctic ecosystem to an extreme summer: impacts on net ecosystem exchange and vegetation functioning

The importance and consequences of extreme events on the global carbon budget are inadequately understood. This includes the differential impact of extreme events on various ecosystem components, lag effects, recovery times, and compensatory processes. In the summer of 2007 in Barrow, Arctic Alaska,...

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Published in:Biogeosciences
Main Authors: Zona, D., Lipson, D. A., Richards, J. H., Phoenix, G. K., Liljedahl, A. K., Ueyama, M., Sturtevant, C. S., Oechel, W. C.
Format: Text
Language:English
Published: 2018
Subjects:
Online Access:https://doi.org/10.5194/bg-11-5877-2014
https://www.biogeosciences.net/11/5877/2014/
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spelling ftcopernicus:oai:publications.copernicus.org:bg22116 2023-05-15T14:55:40+02:00 Delayed responses of an Arctic ecosystem to an extreme summer: impacts on net ecosystem exchange and vegetation functioning Zona, D. Lipson, D. A. Richards, J. H. Phoenix, G. K. Liljedahl, A. K. Ueyama, M. Sturtevant, C. S. Oechel, W. C. 2018-09-27 application/pdf https://doi.org/10.5194/bg-11-5877-2014 https://www.biogeosciences.net/11/5877/2014/ eng eng doi:10.5194/bg-11-5877-2014 https://www.biogeosciences.net/11/5877/2014/ eISSN: 1726-4189 Text 2018 ftcopernicus https://doi.org/10.5194/bg-11-5877-2014 2019-12-24T09:54:06Z The importance and consequences of extreme events on the global carbon budget are inadequately understood. This includes the differential impact of extreme events on various ecosystem components, lag effects, recovery times, and compensatory processes. In the summer of 2007 in Barrow, Arctic Alaska, there were unusually high air temperatures (the fifth warmest summer over a 65-year period) and record low precipitation (the lowest over a 65-year period). These abnormal conditions were associated with substantial desiccation of the Sphagnum layer and a reduced net Sphagnum CO 2 sink but did not affect net ecosystem exchange (NEE) from this wet-sedge arctic tundra ecosystem. Microbial biomass, NH 4 + availability, gross primary production (GPP), and ecosystem respiration ( R eco ) were generally greater during this extreme summer. The cumulative ecosystem CO 2 sink in 2007 was similar to the previous summers, suggesting that vascular plants were able to compensate for Sphagnum CO 2 uptake, despite the impact on other functions and structure such as desiccation of the Sphagnum layer. Surprisingly, the lowest ecosystem CO 2 sink over a five summer record (2005–2009) was observed during the 2008 summer (~70% lower), directly following the unusually warm and dry summer, rather than during the extreme summer. This sink reduction cannot solely be attributed to the potential damage to mosses, which typically contribute ~40% of the entire ecosystem CO 2 sink. Importantly, the return to a substantial cumulative CO 2 sink occurred two summers after the extreme event, which suggests a substantial resilience of this tundra ecosystem to at least an isolated extreme event. Overall, these results show a complex response of the CO 2 sink and its sub-components to atypically warm and dry conditions. The impact of multiple extreme events requires further investigation. Text Arctic Barrow Tundra Alaska Copernicus Publications: E-Journals Arctic Biogeosciences 11 20 5877 5888
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collection Copernicus Publications: E-Journals
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language English
description The importance and consequences of extreme events on the global carbon budget are inadequately understood. This includes the differential impact of extreme events on various ecosystem components, lag effects, recovery times, and compensatory processes. In the summer of 2007 in Barrow, Arctic Alaska, there were unusually high air temperatures (the fifth warmest summer over a 65-year period) and record low precipitation (the lowest over a 65-year period). These abnormal conditions were associated with substantial desiccation of the Sphagnum layer and a reduced net Sphagnum CO 2 sink but did not affect net ecosystem exchange (NEE) from this wet-sedge arctic tundra ecosystem. Microbial biomass, NH 4 + availability, gross primary production (GPP), and ecosystem respiration ( R eco ) were generally greater during this extreme summer. The cumulative ecosystem CO 2 sink in 2007 was similar to the previous summers, suggesting that vascular plants were able to compensate for Sphagnum CO 2 uptake, despite the impact on other functions and structure such as desiccation of the Sphagnum layer. Surprisingly, the lowest ecosystem CO 2 sink over a five summer record (2005–2009) was observed during the 2008 summer (~70% lower), directly following the unusually warm and dry summer, rather than during the extreme summer. This sink reduction cannot solely be attributed to the potential damage to mosses, which typically contribute ~40% of the entire ecosystem CO 2 sink. Importantly, the return to a substantial cumulative CO 2 sink occurred two summers after the extreme event, which suggests a substantial resilience of this tundra ecosystem to at least an isolated extreme event. Overall, these results show a complex response of the CO 2 sink and its sub-components to atypically warm and dry conditions. The impact of multiple extreme events requires further investigation.
format Text
author Zona, D.
Lipson, D. A.
Richards, J. H.
Phoenix, G. K.
Liljedahl, A. K.
Ueyama, M.
Sturtevant, C. S.
Oechel, W. C.
spellingShingle Zona, D.
Lipson, D. A.
Richards, J. H.
Phoenix, G. K.
Liljedahl, A. K.
Ueyama, M.
Sturtevant, C. S.
Oechel, W. C.
Delayed responses of an Arctic ecosystem to an extreme summer: impacts on net ecosystem exchange and vegetation functioning
author_facet Zona, D.
Lipson, D. A.
Richards, J. H.
Phoenix, G. K.
Liljedahl, A. K.
Ueyama, M.
Sturtevant, C. S.
Oechel, W. C.
author_sort Zona, D.
title Delayed responses of an Arctic ecosystem to an extreme summer: impacts on net ecosystem exchange and vegetation functioning
title_short Delayed responses of an Arctic ecosystem to an extreme summer: impacts on net ecosystem exchange and vegetation functioning
title_full Delayed responses of an Arctic ecosystem to an extreme summer: impacts on net ecosystem exchange and vegetation functioning
title_fullStr Delayed responses of an Arctic ecosystem to an extreme summer: impacts on net ecosystem exchange and vegetation functioning
title_full_unstemmed Delayed responses of an Arctic ecosystem to an extreme summer: impacts on net ecosystem exchange and vegetation functioning
title_sort delayed responses of an arctic ecosystem to an extreme summer: impacts on net ecosystem exchange and vegetation functioning
publishDate 2018
url https://doi.org/10.5194/bg-11-5877-2014
https://www.biogeosciences.net/11/5877/2014/
geographic Arctic
geographic_facet Arctic
genre Arctic
Barrow
Tundra
Alaska
genre_facet Arctic
Barrow
Tundra
Alaska
op_source eISSN: 1726-4189
op_relation doi:10.5194/bg-11-5877-2014
https://www.biogeosciences.net/11/5877/2014/
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container_title Biogeosciences
container_volume 11
container_issue 20
container_start_page 5877
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