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  Earlier snowmelt may lead to late season declines in plant productivity and carbon sequestration in Arctic tundra ecosystems

Zona, D., Lafleur, P. M., Hufkens, K., Bailey, B., Gioli, B., Burba, G., Goodrich, J. P., Liljedahl, A. K., Euskirchen, E. S., Watts, J. D., Farina, M., Kimball, J. S., Heimann, M., Göckede, M., Pallandt, M., Christensen, T. R., Mastepanov, M., López-Blanco, E., Jackowicz-Korczynski, M., Dolman, A. J., Marchesini, L. B., Commane, R., Wofsy, S. C., Miller, C. E., Lipson, D. A., Hashemi, J., Arndt, K. A., Kutzbach, L., Holl, D., Boike, J., Wille, C., Sachs, T., Kalhori, A., Song, X., Xu, X., Humphreys, E. R., Koven, C. D., Sonnentag, O., Meyer, G., Gosselin, G. H., Marsh, P., Oechel, W. C. (2022): Earlier snowmelt may lead to late season declines in plant productivity and carbon sequestration in Arctic tundra ecosystems. - Scientific Reports, 12, 3986.
https://doi.org/10.1038/s41598-022-07561-1

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Zona, Donatella1, Author
Lafleur, Peter M.1, Author
Hufkens, Koen1, Author
Bailey, Barbara1, Author
Gioli, Beniamino1, Author
Burba, George1, Author
Goodrich, Jordan P.1, Author
Liljedahl, Anna K.1, Author
Euskirchen, Eugénie S.1, Author
Watts, Jennifer D.1, Author
Farina, Mary1, Author
Kimball, John S.1, Author
Heimann, Martin1, Author
Göckede, Mathias1, Author
Pallandt, Martijn1, Author
Christensen, Torben R.1, Author
Mastepanov, Mikhail1, Author
López-Blanco, Efrén1, Author
Jackowicz-Korczynski, Marcin1, Author
Dolman, Albertus J.1, Author
Marchesini, Luca Belelli1, AuthorCommane, Roisin1, AuthorWofsy, Steven C.1, AuthorMiller, Charles E.1, AuthorLipson, David A.1, AuthorHashemi, Josh1, AuthorArndt, Kyle A.1, AuthorKutzbach, Lars1, AuthorHoll, David1, AuthorBoike, Julia1, AuthorWille, C.2, Author              Sachs, T.2, Author              Kalhori, Aram2, Author              Song, Xia1, AuthorXu, Xiaofeng1, AuthorHumphreys, Elyn R.1, AuthorKoven, Charles D.1, AuthorSonnentag, Oliver1, AuthorMeyer, Gesa1, AuthorGosselin, Gabriel H.1, AuthorMarsh, Philip1, AuthorOechel, Walter C.1, Author more..
Affiliations:
1External Organizations, ou_persistent22              
21.4 Remote Sensing, 1.0 Geodesy, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146028              

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Free keywords: Climate science; Ecology; Environmental sciences
 Abstract: Arctic warming is affecting snow cover and soil hydrology, with consequences for carbon sequestration in tundra ecosystems. The scarcity of observations in the Arctic has limited our understanding of the impact of covarying environmental drivers on the carbon balance of tundra ecosystems. In this study, we address some of these uncertainties through a novel record of 119 site-years of summer data from eddy covariance towers representing dominant tundra vegetation types located on continuous permafrost in the Arctic. Here we found that earlier snowmelt was associated with more tundra net CO2 sequestration and higher gross primary productivity (GPP) only in June and July, but with lower net carbon sequestration and lower GPP in August. Although higher evapotranspiration (ET) can result in soil drying with the progression of the summer, we did not find significantly lower soil moisture with earlier snowmelt, nor evidence that water stress affected GPP in the late growing season. Our results suggest that the expected increased CO2 sequestration arising from Arctic warming and the associated increase in growing season length may not materialize if tundra ecosystems are not able to continue sequestering CO2 later in the season.

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Language(s): eng - English
 Dates: 2022-03-212022
 Publication Status: Finally published
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: DOI: 10.1038/s41598-022-07561-1
GFZPOF: p4 T5 Future Landscapes
OATYPE: Gold Open Access
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Title: Scientific Reports
Source Genre: Journal, SCI, Scopus, OA
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Pages: - Volume / Issue: 12 Sequence Number: 3986 Start / End Page: - Identifier: CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals2_395
Publisher: Springer Nature