Changes
On February 13, 2025 at 3:09:04 PM UTC,
-
Changed value of field
publication
to{"publication_year":"2016", "publisher": "EnviDat"}
in FACE: Stillberg CO2 enrichment and soil warming study
f | 1 | { | f | 1 | { |
2 | "author": "[{\"affiliation\": \"WSL Institute for Snow and Avalanche | 2 | "author": "[{\"affiliation\": \"WSL Institute for Snow and Avalanche | ||
3 | Research SLF\", \"affiliation_02\": \"\", \"affiliation_03\": \"\", | 3 | Research SLF\", \"affiliation_02\": \"\", \"affiliation_03\": \"\", | ||
4 | \"email\": \"melissa.dawes@slf.ch\", \"given_name\": \"Melissa\", | 4 | \"email\": \"melissa.dawes@slf.ch\", \"given_name\": \"Melissa\", | ||
5 | \"identifier\": \"\", \"name\": \"Dawes\"}, {\"affiliation\": \"Swiss | 5 | \"identifier\": \"\", \"name\": \"Dawes\"}, {\"affiliation\": \"Swiss | ||
6 | Federal Institute for Forest, Snow and Landscape Research WSL\", | 6 | Federal Institute for Forest, Snow and Landscape Research WSL\", | ||
7 | \"affiliation_02\": \"\", \"affiliation_03\": \"\", \"email\": | 7 | \"affiliation_02\": \"\", \"affiliation_03\": \"\", \"email\": | ||
8 | \"frank.hagedorn@wsl.ch\", \"given_name\": \"Frank\", \"identifier\": | 8 | \"frank.hagedorn@wsl.ch\", \"given_name\": \"Frank\", \"identifier\": | ||
9 | \"0000-0001-5218-7776\", \"name\": \"Hagedorn\"}, {\"affiliation\": | 9 | \"0000-0001-5218-7776\", \"name\": \"Hagedorn\"}, {\"affiliation\": | ||
10 | \"WSL Institute for Snow and Avalanche Research SLF\", | 10 | \"WSL Institute for Snow and Avalanche Research SLF\", | ||
11 | \"affiliation_02\": \"\", \"affiliation_03\": \"\", \"email\": | 11 | \"affiliation_02\": \"\", \"affiliation_03\": \"\", \"email\": | ||
12 | \"bebi@slf.ch\", \"given_name\": \"Peter\", \"identifier\": | 12 | \"bebi@slf.ch\", \"given_name\": \"Peter\", \"identifier\": | ||
13 | \"0000-0001-8868-6569\", \"name\": \"Bebi\"}, {\"affiliation\": \"WSL | 13 | \"0000-0001-8868-6569\", \"name\": \"Bebi\"}, {\"affiliation\": \"WSL | ||
14 | Institute for Snow and Avalanche Research SLF\", \"affiliation_02\": | 14 | Institute for Snow and Avalanche Research SLF\", \"affiliation_02\": | ||
15 | \"\", \"affiliation_03\": \"\", \"email\": \"lia.lechler@slf.ch\", | 15 | \"\", \"affiliation_03\": \"\", \"email\": \"lia.lechler@slf.ch\", | ||
16 | \"given_name\": \"Lia\", \"identifier\": \"\", \"name\": \"Lechler\"}, | 16 | \"given_name\": \"Lia\", \"identifier\": \"\", \"name\": \"Lechler\"}, | ||
17 | {\"affiliation\": \"Swiss Federal Research Institute WSL\", | 17 | {\"affiliation\": \"Swiss Federal Research Institute WSL\", | ||
18 | \"affiliation_02\": \"\", \"affiliation_03\": \"\", \"email\": | 18 | \"affiliation_02\": \"\", \"affiliation_03\": \"\", \"email\": | ||
19 | \"esther.frei@wsl.ch\", \"given_name\": \"Esther R.\", \"identifier\": | 19 | \"esther.frei@wsl.ch\", \"given_name\": \"Esther R.\", \"identifier\": | ||
20 | \"0000-0003-1910-7900\", \"name\": \"Frei\"}, {\"affiliation\": \"WSL | 20 | \"0000-0003-1910-7900\", \"name\": \"Frei\"}, {\"affiliation\": \"WSL | ||
21 | Institute for Snow and Avalanche Research SLF\", \"affiliation_02\": | 21 | Institute for Snow and Avalanche Research SLF\", \"affiliation_02\": | ||
22 | \"\", \"affiliation_03\": \"\", \"email\": \"rixen@slf.ch\", | 22 | \"\", \"affiliation_03\": \"\", \"email\": \"rixen@slf.ch\", | ||
23 | \"given_name\": \"Christian\", \"identifier\": | 23 | \"given_name\": \"Christian\", \"identifier\": | ||
24 | \"0000-0002-2486-9988\", \"name\": \"Rixen\"}]", | 24 | \"0000-0002-2486-9988\", \"name\": \"Rixen\"}]", | ||
25 | "author_email": null, | 25 | "author_email": null, | ||
26 | "creator_user_id": "c7c7a6fd-8a44-421e-bf1a-f3cfd900cc37", | 26 | "creator_user_id": "c7c7a6fd-8a44-421e-bf1a-f3cfd900cc37", | ||
27 | "date": "[{\"date\": \"2001-01-01\", \"date_type\": \"collected\", | 27 | "date": "[{\"date\": \"2001-01-01\", \"date_type\": \"collected\", | ||
28 | \"end_date\": \"2012-12-31\"}]", | 28 | \"end_date\": \"2012-12-31\"}]", | ||
29 | "doi": "10.16904/envidat.46", | 29 | "doi": "10.16904/envidat.46", | ||
30 | "extras": [ | 30 | "extras": [ | ||
31 | { | 31 | { | ||
32 | "key": "dora_link", | 32 | "key": "dora_link", | ||
33 | "value": "" | 33 | "value": "" | ||
34 | } | 34 | } | ||
35 | ], | 35 | ], | ||
36 | "funding": "[{\"grant_number\": \"31-061428.00\", \"institution\": | 36 | "funding": "[{\"grant_number\": \"31-061428.00\", \"institution\": | ||
37 | \"Swiss National Science Foundation (2001-2005)\", | 37 | \"Swiss National Science Foundation (2001-2005)\", | ||
38 | \"institution_url\": \"\"}, {\"grant_number\": \"315200-116861\", | 38 | \"institution_url\": \"\"}, {\"grant_number\": \"315200-116861\", | ||
39 | \"institution\": \"Swiss National Science Foundation (2007-2010)\", | 39 | \"institution\": \"Swiss National Science Foundation (2007-2010)\", | ||
40 | \"institution_url\": \"\"}, {\"grant_number\": \"\", \"institution\": | 40 | \"institution_url\": \"\"}, {\"grant_number\": \"\", \"institution\": | ||
41 | \"ANR - Biodiversit\u00e9 (2006-2008)\", \"institution_url\": \"\"}, | 41 | \"ANR - Biodiversit\u00e9 (2006-2008)\", \"institution_url\": \"\"}, | ||
42 | {\"grant_number\": \"371\", \"institution\": \"Velux Foundation | 42 | {\"grant_number\": \"371\", \"institution\": \"Velux Foundation | ||
43 | (2007-2012)\", \"institution_url\": \"\"}, {\"grant_number\": \"\", | 43 | (2007-2012)\", \"institution_url\": \"\"}, {\"grant_number\": \"\", | ||
44 | \"institution\": \"CCES-ETH Project \u2018MOUNTLAND\u2019\", | 44 | \"institution\": \"CCES-ETH Project \u2018MOUNTLAND\u2019\", | ||
45 | \"institution_url\": \"\"}]", | 45 | \"institution_url\": \"\"}]", | ||
46 | "groups": [ | 46 | "groups": [ | ||
47 | { | 47 | { | ||
48 | "description": "The European Long-term Treeline Ecosystem | 48 | "description": "The European Long-term Treeline Ecosystem | ||
49 | Research (eLTER) site Stillberg, Switzerland, was established in 1975. | 49 | Research (eLTER) site Stillberg, Switzerland, was established in 1975. | ||
50 | In almost 50 years, a wealth of ecological and environmental data was | 50 | In almost 50 years, a wealth of ecological and environmental data was | ||
51 | collected. Datasets related to the Stillberg research site are listed | 51 | collected. Datasets related to the Stillberg research site are listed | ||
52 | within this project and include (as of 24/04/2023): \r\n\r\n\u2022 | 52 | within this project and include (as of 24/04/2023): \r\n\r\n\u2022 | ||
53 | Long-term afforestation experiment at the Alpine treeline site | 53 | Long-term afforestation experiment at the Alpine treeline site | ||
54 | Stillberg, Switzerland\r\n\r\n\u2022 Long-term meteorological station | 54 | Stillberg, Switzerland\r\n\r\n\u2022 Long-term meteorological station | ||
55 | Stillberg, Davos, Switzerland at 2090 m a.s.l.\r\n\r\n\u2022 FACE: | 55 | Stillberg, Davos, Switzerland at 2090 m a.s.l.\r\n\r\n\u2022 FACE: | ||
56 | Stillberg CO2 enrichment and soil warming study\r\n\r\n\u2022 | 56 | Stillberg CO2 enrichment and soil warming study\r\n\r\n\u2022 | ||
57 | Nutrient addition experiment at the Alpine treeline site Stillberg, | 57 | Nutrient addition experiment at the Alpine treeline site Stillberg, | ||
58 | Switzerland \r\n\r\n\u2022 G-TREE: Global Treeline Range Expansion | 58 | Switzerland \r\n\r\n\u2022 G-TREE: Global Treeline Range Expansion | ||
n | 59 | Experiment Davos, Switzerland\r\n\r\nIf you want to read more about | n | 59 | Experiment Davos, Switzerland\r\n\r\nFor further descriptions and |
60 | the Stillberg site, please follow these links:\r\n* | 60 | information on the Stillberg treeline research site, please follow | ||
61 | these links:\r\n\r\nPublication on the open research data project | ||||
62 | Treeline Research Stillberg Switzerland:\r\nLechler, L., Rixen, C., | ||||
63 | Bebi, P, Bavay, M., Marty, M. Barbeito, I., Dawes, M.A., Hagedorn, F., | ||||
64 | Krumm, F., M\u00f6hl, P., Schaub, M. and Frei, E.R., 2024. Five | ||||
65 | decades of ecological and meteorological data enhance the mechanistic | ||||
66 | understanding of global change impacts on the treeline ecotone in the | ||||
67 | European Alps. _Agricultural and Forest Meteorology_, __355__:110126. | ||||
68 | https://doi.org/10.1016/j.agrformet.2024.110126>\r\n\r\nWebsites:\r\n* | ||||
61 | gsflaechen-gebirgsoekosysteme/versuchsaufforstung-stillberg.html>\r\n* | 69 | gsflaechen-gebirgsoekosysteme/versuchsaufforstung-stillberg.html>\r\n* | ||
62 | birgsoekosysteme/waldgrenzen/langzeitforschung-am-stillberg.html>\r\n* | 70 | birgsoekosysteme/waldgrenzen/langzeitforschung-am-stillberg.html>\r\n* | ||
63 | <https://www.slf.ch/en/projects/stillbergdat.html>", | 71 | <https://www.slf.ch/en/projects/stillbergdat.html>", | ||
64 | "display_name": "Treeline Research Stillberg Switzerland", | 72 | "display_name": "Treeline Research Stillberg Switzerland", | ||
65 | "id": "607c6f6e-1f07-44fd-8dad-7a4c8cc5715a", | 73 | "id": "607c6f6e-1f07-44fd-8dad-7a4c8cc5715a", | ||
66 | "image_display_url": | 74 | "image_display_url": | ||
67 | LF/Versuchsanlagen_Labors/gebirgsoekosysteme/Stillberg/stillberg.png", | 75 | LF/Versuchsanlagen_Labors/gebirgsoekosysteme/Stillberg/stillberg.png", | ||
68 | "name": "treeline-research-stillberg-switzerland", | 76 | "name": "treeline-research-stillberg-switzerland", | ||
69 | "title": "Treeline Research Stillberg Switzerland" | 77 | "title": "Treeline Research Stillberg Switzerland" | ||
70 | } | 78 | } | ||
71 | ], | 79 | ], | ||
72 | "id": "0d88fc12-285e-4a64-b2d6-d8a7bf0603f8", | 80 | "id": "0d88fc12-285e-4a64-b2d6-d8a7bf0603f8", | ||
73 | "isopen": true, | 81 | "isopen": true, | ||
74 | "language": "en", | 82 | "language": "en", | ||
75 | "license_id": "cc-by-sa", | 83 | "license_id": "cc-by-sa", | ||
76 | "license_title": "Creative Commons Attribution Share-Alike | 84 | "license_title": "Creative Commons Attribution Share-Alike | ||
77 | (CC-BY-SA)", | 85 | (CC-BY-SA)", | ||
78 | "license_url": "https://creativecommons.org/licenses/by-sa/4.0/", | 86 | "license_url": "https://creativecommons.org/licenses/by-sa/4.0/", | ||
79 | "maintainer": "{\"affiliation\": \"\", \"email\": \"rixen@slf.ch\", | 87 | "maintainer": "{\"affiliation\": \"\", \"email\": \"rixen@slf.ch\", | ||
80 | \"given_name\": \"Christian\", \"identifier\": \"\", \"name\": | 88 | \"given_name\": \"Christian\", \"identifier\": \"\", \"name\": | ||
81 | \"Rixen\"}", | 89 | \"Rixen\"}", | ||
82 | "maintainer_email": null, | 90 | "maintainer_email": null, | ||
83 | "metadata_created": "2016-11-04T13:12:58.251405", | 91 | "metadata_created": "2016-11-04T13:12:58.251405", | ||
n | 84 | "metadata_modified": "2023-10-19T15:27:00.847306", | n | 92 | "metadata_modified": "2025-02-13T15:09:04.479202", |
85 | "name": "face-stillberg", | 93 | "name": "face-stillberg", | ||
86 | "notes": "# Background information\r\n\r\nHigh elevation ecosystems | 94 | "notes": "# Background information\r\n\r\nHigh elevation ecosystems | ||
87 | are important in research about environmental change because shifts in | 95 | are important in research about environmental change because shifts in | ||
88 | climate associated with anthropogenic greenhouse gas emissions are | 96 | climate associated with anthropogenic greenhouse gas emissions are | ||
89 | predicted to be more pronounced in these areas compared to most other | 97 | predicted to be more pronounced in these areas compared to most other | ||
90 | regions of the world. This project involved a Free Air CO2 Enrichment | 98 | regions of the world. This project involved a Free Air CO2 Enrichment | ||
91 | (FACE) and soil warming experiment located in a natural treeline | 99 | (FACE) and soil warming experiment located in a natural treeline | ||
92 | environment near Davos, Switzerland (Stillberg, 2200 m a.s.l.). | 100 | environment near Davos, Switzerland (Stillberg, 2200 m a.s.l.). | ||
93 | Elevated atmospheric CO2 concentrations (+200 ppm) were applied from | 101 | Elevated atmospheric CO2 concentrations (+200 ppm) were applied from | ||
94 | 2001 until 2009, and a soil warming treatment (+4 \u00b0C) was applied | 102 | 2001 until 2009, and a soil warming treatment (+4 \u00b0C) was applied | ||
95 | from 2007 until 2012. The combined CO2 enrichment and warming | 103 | from 2007 until 2012. The combined CO2 enrichment and warming | ||
96 | treatment reflects conditions expected to occur in this region in | 104 | treatment reflects conditions expected to occur in this region in | ||
97 | approximately 2050. A broad range of ecological and biogeochemical | 105 | approximately 2050. A broad range of ecological and biogeochemical | ||
98 | research was carried out as part of this environmental change | 106 | research was carried out as part of this environmental change | ||
99 | project.\r\n\r\n# Experimental design\r\n\r\nThe experiment consisted | 107 | project.\r\n\r\n# Experimental design\r\n\r\nThe experiment consisted | ||
100 | of 40 hexagonal 1.1 m\u00b2 plots, 20 with a *Pinus mugo* ssp. | 108 | of 40 hexagonal 1.1 m\u00b2 plots, 20 with a *Pinus mugo* ssp. | ||
101 | *uncinata* (mountain pine, evergreen) individual in the centre and 20 | 109 | *uncinata* (mountain pine, evergreen) individual in the centre and 20 | ||
102 | with a *Larix decidua* (European larch, deciduous) individual in the | 110 | with a *Larix decidua* (European larch, deciduous) individual in the | ||
103 | centre. A dense cover of understorey vegetation surrounded the tree in | 111 | centre. A dense cover of understorey vegetation surrounded the tree in | ||
104 | each plot, including the dominant dwarf shrub species *Vaccinium | 112 | each plot, including the dominant dwarf shrub species *Vaccinium | ||
105 | myrtillus* (bilberry), *Vaccinium gaultherioides* (group *V. | 113 | myrtillus* (bilberry), *Vaccinium gaultherioides* (group *V. | ||
106 | uliginosum agg.*, northern bilberry) and *Empetrum nigrum* ssp. | 114 | uliginosum agg.*, northern bilberry) and *Empetrum nigrum* ssp. | ||
107 | *hermaphroditum* (crowberry) plus several herbaceous and non-vascular | 115 | *hermaphroditum* (crowberry) plus several herbaceous and non-vascular | ||
108 | species.\r\nAt the beginning of the experimental period, the 40 plots | 116 | species.\r\nAt the beginning of the experimental period, the 40 plots | ||
109 | were assigned to ten groups of four neighbouring plots (two larch and | 117 | were assigned to ten groups of four neighbouring plots (two larch and | ||
110 | two pine trees per group) in order to facilitate the logistics of CO2 | 118 | two pine trees per group) in order to facilitate the logistics of CO2 | ||
111 | distribution and regulation. Half of these groups were randomly | 119 | distribution and regulation. Half of these groups were randomly | ||
112 | assigned to an elevated CO2 treatment, while the remaining groups | 120 | assigned to an elevated CO2 treatment, while the remaining groups | ||
113 | served as controls and received no additional CO2. In spring 2007, one | 121 | served as controls and received no additional CO2. In spring 2007, one | ||
114 | plot of each tree species identity was randomly selected from each of | 122 | plot of each tree species identity was randomly selected from each of | ||
115 | the 10 CO2 treatment groups and assigned a soil warming treatment, | 123 | the 10 CO2 treatment groups and assigned a soil warming treatment, | ||
116 | yielding a balanced design with a replication of five individual plots | 124 | yielding a balanced design with a replication of five individual plots | ||
117 | for each combination of CO2 level, warming treatment and tree | 125 | for each combination of CO2 level, warming treatment and tree | ||
118 | species.\r\n\r\n# Data description\r\n\r\nSoil and air conditions have | 126 | species.\r\n\r\n# Data description\r\n\r\nSoil and air conditions have | ||
119 | been monitored closely throughout the study period, with most | 127 | been monitored closely throughout the study period, with most | ||
120 | measurements made during the combined CO2 x warming experiment | 128 | measurements made during the combined CO2 x warming experiment | ||
121 | (2007-2009). The data comprise of air temperature, soil temperature, | 129 | (2007-2009). The data comprise of air temperature, soil temperature, | ||
122 | soil moisture, sapflow, tree diameter and CO2 measurements.", | 130 | soil moisture, sapflow, tree diameter and CO2 measurements.", | ||
123 | "num_resources": 4, | 131 | "num_resources": 4, | ||
124 | "num_tags": 6, | 132 | "num_tags": 6, | ||
125 | "organization": { | 133 | "organization": { | ||
126 | "approval_status": "approved", | 134 | "approval_status": "approved", | ||
127 | "created": "2016-11-15T17:00:55.703329", | 135 | "created": "2016-11-15T17:00:55.703329", | ||
128 | "description": "Mountain ecosystems are characterized by harsh | 136 | "description": "Mountain ecosystems are characterized by harsh | ||
129 | environmental conditions. These include often long lasting snow cover, | 137 | environmental conditions. These include often long lasting snow cover, | ||
130 | short growing seasons and topographically related disturbances such as | 138 | short growing seasons and topographically related disturbances such as | ||
131 | avalanches, rockfall or landslides.Mountain ecosystems and inhabiting | 139 | avalanches, rockfall or landslides.Mountain ecosystems and inhabiting | ||
132 | animal and plant species are generally well adapted to these | 140 | animal and plant species are generally well adapted to these | ||
133 | conditions. However, they may react sensitively to changes of climate, | 141 | conditions. However, they may react sensitively to changes of climate, | ||
134 | land-use and disturbance regimes. Activities of the group focus on | 142 | land-use and disturbance regimes. Activities of the group focus on | ||
135 | mountain ecosystems above and below the treeline (mountain forest, | 143 | mountain ecosystems above and below the treeline (mountain forest, | ||
136 | alpine ecosystems) and represent links between ecosystem research of | 144 | alpine ecosystems) and represent links between ecosystem research of | ||
137 | WSL and snow and avalanche topics of the SLF in | 145 | WSL and snow and avalanche topics of the SLF in | ||
138 | Davos.\r\n\r\n__Further information__: | 146 | Davos.\r\n\r\n__Further information__: | ||
139 | ganization/research-units/community-ecology/mountain-ecosystems.html", | 147 | ganization/research-units/community-ecology/mountain-ecosystems.html", | ||
140 | "id": "f666a8d9-de8b-4dcf-b24f-45dd31937218", | 148 | "id": "f666a8d9-de8b-4dcf-b24f-45dd31937218", | ||
141 | "image_url": "2018-07-10-090212.143084LogoWSL.svg", | 149 | "image_url": "2018-07-10-090212.143084LogoWSL.svg", | ||
142 | "is_organization": true, | 150 | "is_organization": true, | ||
143 | "name": "mountain-ecosystems", | 151 | "name": "mountain-ecosystems", | ||
144 | "state": "active", | 152 | "state": "active", | ||
145 | "title": "Mountain Ecosystems", | 153 | "title": "Mountain Ecosystems", | ||
146 | "type": "organization" | 154 | "type": "organization" | ||
147 | }, | 155 | }, | ||
148 | "owner_org": "f666a8d9-de8b-4dcf-b24f-45dd31937218", | 156 | "owner_org": "f666a8d9-de8b-4dcf-b24f-45dd31937218", | ||
149 | "private": false, | 157 | "private": false, | ||
t | 150 | "publication": "{\"publication_year\": \"2016\", \"publisher\": | t | 158 | "publication": "{\"publication_year\":\"2016\", \"publisher\": |
151 | \"WSL Institute for Snow and Avalanche Research SLF\"}", | 159 | \"EnviDat\"}", | ||
152 | "publication_state": "published", | 160 | "publication_state": "published", | ||
153 | "related_datasets": "EnviDat Project: Treeline Research Stillberg | 161 | "related_datasets": "EnviDat Project: Treeline Research Stillberg | ||
154 | Switzerland | 162 | Switzerland | ||
155 | ttps://www.envidat.ch/group/treeline-research-stillberg-switzerland>", | 163 | ttps://www.envidat.ch/group/treeline-research-stillberg-switzerland>", | ||
156 | "related_publications": "Dawes, M.A., Hagedorn, F., Zumbrunn, T., | 164 | "related_publications": "Dawes, M.A., Hagedorn, F., Zumbrunn, T., | ||
157 | Handa, I.T., H\u00e4ttenschwiler, S., Wipf, S. and Rixen, C., 2011. | 165 | Handa, I.T., H\u00e4ttenschwiler, S., Wipf, S. and Rixen, C., 2011. | ||
158 | Growth and community responses of alpine dwarf shrubs to in situ CO2 | 166 | Growth and community responses of alpine dwarf shrubs to in situ CO2 | ||
159 | enrichment and soil warming. *New Phytologist*, 191(3), pp.806-818. | 167 | enrichment and soil warming. *New Phytologist*, 191(3), pp.806-818. | ||
160 | <https://doi.org/10.1111/j.1469-8137.2011.03722.x>\r\n\r\nDawes, M.A., | 168 | <https://doi.org/10.1111/j.1469-8137.2011.03722.x>\r\n\r\nDawes, M.A., | ||
161 | H\u00e4ttenschwiler, S., Bebi, P., Hagedorn, F., Handa, I.T., | 169 | H\u00e4ttenschwiler, S., Bebi, P., Hagedorn, F., Handa, I.T., | ||
162 | K\u00f6rner, C. and Rixen, C., 2011. Species\u2010specific tree growth | 170 | K\u00f6rner, C. and Rixen, C., 2011. Species\u2010specific tree growth | ||
163 | responses to 9 years of CO2 enrichment at the alpine treeline. | 171 | responses to 9 years of CO2 enrichment at the alpine treeline. | ||
164 | *Journal of Ecology*, 99(2), pp.383-394. | 172 | *Journal of Ecology*, 99(2), pp.383-394. | ||
165 | <https://doi.org/10.1111/j.1365-2745.2010.01764.x>\r\n\r\nDawes, M.A., | 173 | <https://doi.org/10.1111/j.1365-2745.2010.01764.x>\r\n\r\nDawes, M.A., | ||
166 | Zweifel, R., Dawes, N., Rixen, C. and Hagedorn, F., 2014. CO 2 | 174 | Zweifel, R., Dawes, N., Rixen, C. and Hagedorn, F., 2014. CO 2 | ||
167 | enrichment alters diurnal stem radius fluctuations of | 175 | enrichment alters diurnal stem radius fluctuations of | ||
168 | 36\u2010yr\u2010old Larix decidua growing at the alpine tree line. | 176 | 36\u2010yr\u2010old Larix decidua growing at the alpine tree line. | ||
169 | *New Phytologist*, 202(4), pp.1237-1248. | 177 | *New Phytologist*, 202(4), pp.1237-1248. | ||
170 | <https://doi.org/10.1111/nph.12742>\r\n\r\nDawes, M.A., Philipson, | 178 | <https://doi.org/10.1111/nph.12742>\r\n\r\nDawes, M.A., Philipson, | ||
171 | C.D., Fonti, P., Bebi, P., H\u00e4ttenschwiler, S., Hagedorn, F. and | 179 | C.D., Fonti, P., Bebi, P., H\u00e4ttenschwiler, S., Hagedorn, F. and | ||
172 | Rixen, C., 2015. Soil warming and CO 2 enrichment induce biomass | 180 | Rixen, C., 2015. Soil warming and CO 2 enrichment induce biomass | ||
173 | shifts in alpine tree line vegetation. *Global Change Biology*, 21(5), | 181 | shifts in alpine tree line vegetation. *Global Change Biology*, 21(5), | ||
174 | pp.2005-2021. <https://doi.org/10.1111/gcb.12819>\r\n\r\nRixen, C., | 182 | pp.2005-2021. <https://doi.org/10.1111/gcb.12819>\r\n\r\nRixen, C., | ||
175 | Dawes, M.A., Wipf, S. and Hagedorn, F., 2012. Evidence of enhanced | 183 | Dawes, M.A., Wipf, S. and Hagedorn, F., 2012. Evidence of enhanced | ||
176 | freezing damage in treeline plants during six years of CO2 enrichment | 184 | freezing damage in treeline plants during six years of CO2 enrichment | ||
177 | and soil warming. *Oikos*, 121(10), pp.1532-1543. | 185 | and soil warming. *Oikos*, 121(10), pp.1532-1543. | ||
178 | <https://doi.org/10.1111/j.1600-0706.2011.20031.x>\r\n\r\nStreit, K., | 186 | <https://doi.org/10.1111/j.1600-0706.2011.20031.x>\r\n\r\nStreit, K., | ||
179 | Rinne, K.T., Hagedorn, F., Dawes, M.A., Saurer, M., Hoch, G., Werner, | 187 | Rinne, K.T., Hagedorn, F., Dawes, M.A., Saurer, M., Hoch, G., Werner, | ||
180 | R.A., Buchmann, N. and Siegwolf, R.T., 2013. Tracing fresh assimilates | 188 | R.A., Buchmann, N. and Siegwolf, R.T., 2013. Tracing fresh assimilates | ||
181 | through Larix decidua exposed to elevated CO 2 and soil warming at the | 189 | through Larix decidua exposed to elevated CO 2 and soil warming at the | ||
182 | alpine treeline using compound\u2010specific stable isotope analysis. | 190 | alpine treeline using compound\u2010specific stable isotope analysis. | ||
183 | *New Phytologist*, 197(3), pp.838-849. | 191 | *New Phytologist*, 197(3), pp.838-849. | ||
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