Changes
On April 14, 2023 at 8:25:04 AM UTC, Lia Lechler:
-
Changed value of field
related_publications
toDawes, M.A., Hagedorn, F., Zumbrunn, T., Handa, I.T., Hättenschwiler, S., Wipf, S. and Rixen, C., 2011. Growth and community responses of alpine dwarf shrubs to in situ CO2 enrichment and soil warming. *New Phytologist*, 191(3), pp.806-818. <https://doi.org/10.1111/j.1469-8137.2011.03722.x> Dawes, M.A., Hättenschwiler, S., Bebi, P., Hagedorn, F., Handa, I.T., Körner, C. and Rixen, C., 2011. Species‐specific tree growth responses to 9 years of CO2 enrichment at the alpine treeline. *Journal of Ecology*, 99(2), pp.383-394. <https://doi.org/10.1111/j.1365-2745.2010.01764.x> Dawes, M.A., Zweifel, R., Dawes, N., Rixen, C. and Hagedorn, F., 2014. CO 2 enrichment alters diurnal stem radius fluctuations of 36‐yr‐old Larix decidua growing at the alpine tree line. *New Phytologist*, 202(4), pp.1237-1248. <https://doi.org/10.1111/nph.12742> Dawes, M.A., Philipson, C.D., Fonti, P., Bebi, P., Hättenschwiler, S., Hagedorn, F. and Rixen, C., 2015. Soil warming and CO 2 enrichment induce biomass shifts in alpine tree line vegetation. *Global Change Biology*, 21(5), pp.2005-2021. <https://doi.org/10.1111/gcb.12819> Rixen, C., Dawes, M.A., Wipf, S. and Hagedorn, F., 2012. Evidence of enhanced freezing damage in treeline plants during six years of CO2 enrichment and soil warming. *Oikos*, 121(10), pp.1532-1543. Streit, K., Rinne, K.T., Hagedorn, F., Dawes, M.A., Saurer, M., Hoch, G., Werner, R.A., Buchmann, N. and Siegwolf, R.T., 2013. Tracing fresh assimilates through Larix decidua exposed to elevated CO 2 and soil warming at the alpine treeline using compound‐specific stable isotope analysis. *New Phytologist*, 197(3), pp.838-849.
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\", \"identifier\": | 19 | \"esther.frei@wsl.ch\", \"given_name\": \"Esther\", \"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 28/11/2022): \r\n\r\na. | 52 | within this project and include (as of 28/11/2022): \r\n\r\na. | ||
53 | Long-term treeline research dataset at Stillberg, Davos \r\nb. | 53 | Long-term treeline research dataset at Stillberg, Davos \r\nb. | ||
54 | Long-term meteorological and snow station at 2090 m a.s.l., Stillberg, | 54 | Long-term meteorological and snow station at 2090 m a.s.l., Stillberg, | ||
55 | Davos, Switzerland (1975 - present)\r\nc. FACE: Stillberg CO2 | 55 | Davos, Switzerland (1975 - present)\r\nc. FACE: Stillberg CO2 | ||
56 | enrichment and soil warming study return\r\nd. G-TREE: Global | 56 | enrichment and soil warming study return\r\nd. G-TREE: Global | ||
57 | Treeline Range Expansion Experiment Davos, Switzerland\r\n\r\nIf you | 57 | Treeline Range Expansion Experiment Davos, Switzerland\r\n\r\nIf you | ||
58 | want to read more about the Stillberg site, please follow these | 58 | want to read more about the Stillberg site, please follow these | ||
59 | links:\r\n* | 59 | links:\r\n* | ||
60 | gsflaechen-gebirgsoekosysteme/versuchsaufforstung-stillberg.html>\r\n* | 60 | gsflaechen-gebirgsoekosysteme/versuchsaufforstung-stillberg.html>\r\n* | ||
61 | birgsoekosysteme/waldgrenzen/langzeitforschung-am-stillberg.html>\r\n* | 61 | birgsoekosysteme/waldgrenzen/langzeitforschung-am-stillberg.html>\r\n* | ||
62 | <https://www.slf.ch/en/projects/stillbergdat.html>", | 62 | <https://www.slf.ch/en/projects/stillbergdat.html>", | ||
63 | "display_name": "Treeline Research Stillberg Switzerland", | 63 | "display_name": "Treeline Research Stillberg Switzerland", | ||
64 | "id": "607c6f6e-1f07-44fd-8dad-7a4c8cc5715a", | 64 | "id": "607c6f6e-1f07-44fd-8dad-7a4c8cc5715a", | ||
65 | "image_display_url": | 65 | "image_display_url": | ||
66 | LF/Versuchsanlagen_Labors/gebirgsoekosysteme/Stillberg/stillberg.png", | 66 | LF/Versuchsanlagen_Labors/gebirgsoekosysteme/Stillberg/stillberg.png", | ||
67 | "name": "treeline-research-stillberg-switzerland", | 67 | "name": "treeline-research-stillberg-switzerland", | ||
68 | "title": "Treeline Research Stillberg Switzerland" | 68 | "title": "Treeline Research Stillberg Switzerland" | ||
69 | } | 69 | } | ||
70 | ], | 70 | ], | ||
71 | "id": "0d88fc12-285e-4a64-b2d6-d8a7bf0603f8", | 71 | "id": "0d88fc12-285e-4a64-b2d6-d8a7bf0603f8", | ||
72 | "isopen": true, | 72 | "isopen": true, | ||
73 | "language": "en", | 73 | "language": "en", | ||
74 | "license_id": "odc-odbl", | 74 | "license_id": "odc-odbl", | ||
75 | "license_title": "ODbL with Database Contents License (DbCL)", | 75 | "license_title": "ODbL with Database Contents License (DbCL)", | ||
76 | "license_url": "https://opendefinition.org/licenses/odc-odbl", | 76 | "license_url": "https://opendefinition.org/licenses/odc-odbl", | ||
77 | "maintainer": "{\"affiliation\": \"WSL Institute for Snow and | 77 | "maintainer": "{\"affiliation\": \"WSL Institute for Snow and | ||
78 | Avalanche Research SLF\", \"email\": \"lia.lechler@slf.ch\", | 78 | Avalanche Research SLF\", \"email\": \"lia.lechler@slf.ch\", | ||
79 | \"given_name\": \"Lia\", \"identifier\": \"\", \"name\": | 79 | \"given_name\": \"Lia\", \"identifier\": \"\", \"name\": | ||
80 | \"Lechler\"}", | 80 | \"Lechler\"}", | ||
81 | "maintainer_email": null, | 81 | "maintainer_email": null, | ||
82 | "metadata_created": "2016-11-04T13:12:58.251405", | 82 | "metadata_created": "2016-11-04T13:12:58.251405", | ||
n | 83 | "metadata_modified": "2023-04-14T08:24:31.856861", | n | 83 | "metadata_modified": "2023-04-14T08:25:04.407234", |
84 | "name": "face-stillberg", | 84 | "name": "face-stillberg", | ||
85 | "notes": "# Background information\r\n\r\nHigh elevation ecosystems | 85 | "notes": "# Background information\r\n\r\nHigh elevation ecosystems | ||
86 | are important in research about environmental change because shifts in | 86 | are important in research about environmental change because shifts in | ||
87 | climate associated with anthropogenic greenhouse gas emissions are | 87 | climate associated with anthropogenic greenhouse gas emissions are | ||
88 | predicted to be more pronounced in these areas compared to most other | 88 | predicted to be more pronounced in these areas compared to most other | ||
89 | regions of the world. This project involved a Free Air CO2 Enrichment | 89 | regions of the world. This project involved a Free Air CO2 Enrichment | ||
90 | (FACE) and soil warming experiment located in a natural treeline | 90 | (FACE) and soil warming experiment located in a natural treeline | ||
91 | environment near Davos, Switzerland (Stillberg, 2200 m a.s.l.). | 91 | environment near Davos, Switzerland (Stillberg, 2200 m a.s.l.). | ||
92 | Elevated atmospheric CO2 concentrations (+200 ppm) were applied from | 92 | Elevated atmospheric CO2 concentrations (+200 ppm) were applied from | ||
93 | 2001 until 2009, and a soil warming treatment (+4 \u00b0C) was applied | 93 | 2001 until 2009, and a soil warming treatment (+4 \u00b0C) was applied | ||
94 | from 2007 until 2012. The combined CO2 enrichment and warming | 94 | from 2007 until 2012. The combined CO2 enrichment and warming | ||
95 | treatment reflects conditions expected to occur in this region in | 95 | treatment reflects conditions expected to occur in this region in | ||
96 | approximately 2050. A broad range of ecological and biogeochemical | 96 | approximately 2050. A broad range of ecological and biogeochemical | ||
97 | research was carried out as part of this environmental change | 97 | research was carried out as part of this environmental change | ||
98 | project.\r\n\r\n# Experimental design\r\n\r\nThe experiment consisted | 98 | project.\r\n\r\n# Experimental design\r\n\r\nThe experiment consisted | ||
99 | of 40 hexagonal 1.1 m\u00b2 plots, 20 with a *Pinus mugo* ssp. | 99 | of 40 hexagonal 1.1 m\u00b2 plots, 20 with a *Pinus mugo* ssp. | ||
100 | *uncinata* (mountain pine, evergreen) individual in the centre and 20 | 100 | *uncinata* (mountain pine, evergreen) individual in the centre and 20 | ||
101 | with a *Larix decidua* (European larch, deciduous) individual in the | 101 | with a *Larix decidua* (European larch, deciduous) individual in the | ||
102 | centre. A dense cover of understorey vegetation surrounded the tree in | 102 | centre. A dense cover of understorey vegetation surrounded the tree in | ||
103 | each plot, including the dominant dwarf shrub species *Vaccinium | 103 | each plot, including the dominant dwarf shrub species *Vaccinium | ||
104 | myrtillus* (bilberry), *Vaccinium gaultherioides* (group *V. | 104 | myrtillus* (bilberry), *Vaccinium gaultherioides* (group *V. | ||
105 | uliginosum agg.*, northern bilberry) and *Empetrum nigrum* ssp. | 105 | uliginosum agg.*, northern bilberry) and *Empetrum nigrum* ssp. | ||
106 | *hermaphroditum* (crowberry) plus several herbaceous and non-vascular | 106 | *hermaphroditum* (crowberry) plus several herbaceous and non-vascular | ||
107 | species.\r\nAt the beginning of the experimental period, the 40 plots | 107 | species.\r\nAt the beginning of the experimental period, the 40 plots | ||
108 | were assigned to ten groups of four neighbouring plots (two larch and | 108 | were assigned to ten groups of four neighbouring plots (two larch and | ||
109 | two pine trees per group) in order to facilitate the logistics of CO2 | 109 | two pine trees per group) in order to facilitate the logistics of CO2 | ||
110 | distribution and regulation. Half of these groups were randomly | 110 | distribution and regulation. Half of these groups were randomly | ||
111 | assigned to an elevated CO2 treatment, while the remaining groups | 111 | assigned to an elevated CO2 treatment, while the remaining groups | ||
112 | served as controls and received no additional CO2. In spring 2007, one | 112 | served as controls and received no additional CO2. In spring 2007, one | ||
113 | plot of each tree species identity was randomly selected from each of | 113 | plot of each tree species identity was randomly selected from each of | ||
114 | the 10 CO2 treatment groups and assigned a soil warming treatment, | 114 | the 10 CO2 treatment groups and assigned a soil warming treatment, | ||
115 | yielding a balanced design with a replication of five individual plots | 115 | yielding a balanced design with a replication of five individual plots | ||
116 | for each combination of CO2 level, warming treatment and tree | 116 | for each combination of CO2 level, warming treatment and tree | ||
117 | species.\r\n\r\n# Data description\r\n\r\nSoil and air conditions have | 117 | species.\r\n\r\n# Data description\r\n\r\nSoil and air conditions have | ||
118 | been monitored closely throughout the study period, with most | 118 | been monitored closely throughout the study period, with most | ||
119 | measurements made during the combined CO2 x warming experiment | 119 | measurements made during the combined CO2 x warming experiment | ||
120 | (2007-2009). The data comprise of air temperature, soil temperature, | 120 | (2007-2009). The data comprise of air temperature, soil temperature, | ||
121 | soil moisture, sapflow, tree diameter and CO2 measurements.", | 121 | soil moisture, sapflow, tree diameter and CO2 measurements.", | ||
122 | "num_resources": 4, | 122 | "num_resources": 4, | ||
123 | "num_tags": 6, | 123 | "num_tags": 6, | ||
124 | "organization": { | 124 | "organization": { | ||
125 | "approval_status": "approved", | 125 | "approval_status": "approved", | ||
126 | "created": "2016-11-15T17:00:55.703329", | 126 | "created": "2016-11-15T17:00:55.703329", | ||
127 | "description": "Mountain ecosystems are characterized by harsh | 127 | "description": "Mountain ecosystems are characterized by harsh | ||
128 | environmental conditions. These include often long lasting snow cover, | 128 | environmental conditions. These include often long lasting snow cover, | ||
129 | short growing seasons and topographically related disturbances such as | 129 | short growing seasons and topographically related disturbances such as | ||
130 | avalanches, rockfall or landslides.Mountain ecosystems and inhabiting | 130 | avalanches, rockfall or landslides.Mountain ecosystems and inhabiting | ||
131 | animal and plant species are generally well adapted to these | 131 | animal and plant species are generally well adapted to these | ||
132 | conditions. However, they may react sensitively to changes of climate, | 132 | conditions. However, they may react sensitively to changes of climate, | ||
133 | land-use and disturbance regimes. Activities of the group focus on | 133 | land-use and disturbance regimes. Activities of the group focus on | ||
134 | mountain ecosystems above and below the treeline (mountain forest, | 134 | mountain ecosystems above and below the treeline (mountain forest, | ||
135 | alpine ecosystems) and represent links between ecosystem research of | 135 | alpine ecosystems) and represent links between ecosystem research of | ||
136 | WSL and snow and avalanche topics of the SLF in | 136 | WSL and snow and avalanche topics of the SLF in | ||
137 | Davos.\r\n\r\n__Further information__: | 137 | Davos.\r\n\r\n__Further information__: | ||
138 | ganization/research-units/community-ecology/mountain-ecosystems.html", | 138 | ganization/research-units/community-ecology/mountain-ecosystems.html", | ||
139 | "id": "f666a8d9-de8b-4dcf-b24f-45dd31937218", | 139 | "id": "f666a8d9-de8b-4dcf-b24f-45dd31937218", | ||
140 | "image_url": "2018-07-10-090212.143084LogoWSL.svg", | 140 | "image_url": "2018-07-10-090212.143084LogoWSL.svg", | ||
141 | "is_organization": true, | 141 | "is_organization": true, | ||
142 | "name": "mountain-ecosystems", | 142 | "name": "mountain-ecosystems", | ||
143 | "state": "active", | 143 | "state": "active", | ||
144 | "title": "Mountain Ecosystems", | 144 | "title": "Mountain Ecosystems", | ||
145 | "type": "organization" | 145 | "type": "organization" | ||
146 | }, | 146 | }, | ||
147 | "owner_org": "f666a8d9-de8b-4dcf-b24f-45dd31937218", | 147 | "owner_org": "f666a8d9-de8b-4dcf-b24f-45dd31937218", | ||
148 | "private": false, | 148 | "private": false, | ||
149 | "publication": "{\"publication_year\": \"2016\", \"publisher\": | 149 | "publication": "{\"publication_year\": \"2016\", \"publisher\": | ||
150 | \"WSL Institute for Snow and Avalanche Research SLF\"}", | 150 | \"WSL Institute for Snow and Avalanche Research SLF\"}", | ||
151 | "publication_state": "published", | 151 | "publication_state": "published", | ||
152 | "related_datasets": "EnviDat Project: Treeline Research Stillberg | 152 | "related_datasets": "EnviDat Project: Treeline Research Stillberg | ||
153 | Switzerland | 153 | Switzerland | ||
154 | ttps://www.envidat.ch/group/treeline-research-stillberg-switzerland>", | 154 | ttps://www.envidat.ch/group/treeline-research-stillberg-switzerland>", | ||
155 | "related_publications": "Dawes, M.A., Hagedorn, F., Zumbrunn, T., | 155 | "related_publications": "Dawes, M.A., Hagedorn, F., Zumbrunn, T., | ||
156 | Handa, I.T., H\u00e4ttenschwiler, S., Wipf, S. and Rixen, C., 2011. | 156 | Handa, I.T., H\u00e4ttenschwiler, S., Wipf, S. and Rixen, C., 2011. | ||
157 | Growth and community responses of alpine dwarf shrubs to in situ CO2 | 157 | Growth and community responses of alpine dwarf shrubs to in situ CO2 | ||
158 | enrichment and soil warming. *New Phytologist*, 191(3), pp.806-818. | 158 | enrichment and soil warming. *New Phytologist*, 191(3), pp.806-818. | ||
159 | <https://doi.org/10.1111/j.1469-8137.2011.03722.x>\n\nDawes, M.A., | 159 | <https://doi.org/10.1111/j.1469-8137.2011.03722.x>\n\nDawes, M.A., | ||
160 | H\u00e4ttenschwiler, S., Bebi, P., Hagedorn, F., Handa, I.T., | 160 | H\u00e4ttenschwiler, S., Bebi, P., Hagedorn, F., Handa, I.T., | ||
161 | K\u00f6rner, C. and Rixen, C., 2011. Species\u2010specific tree growth | 161 | K\u00f6rner, C. and Rixen, C., 2011. Species\u2010specific tree growth | ||
162 | responses to 9 years of CO2 enrichment at the alpine treeline. | 162 | responses to 9 years of CO2 enrichment at the alpine treeline. | ||
163 | *Journal of Ecology*, 99(2), pp.383-394. | 163 | *Journal of Ecology*, 99(2), pp.383-394. | ||
164 | <https://doi.org/10.1111/j.1365-2745.2010.01764.x>\n\nDawes, M.A., | 164 | <https://doi.org/10.1111/j.1365-2745.2010.01764.x>\n\nDawes, M.A., | ||
165 | Zweifel, R., Dawes, N., Rixen, C. and Hagedorn, F., 2014. CO 2 | 165 | Zweifel, R., Dawes, N., Rixen, C. and Hagedorn, F., 2014. CO 2 | ||
166 | enrichment alters diurnal stem radius fluctuations of | 166 | enrichment alters diurnal stem radius fluctuations of | ||
167 | 36\u2010yr\u2010old Larix decidua growing at the alpine tree line. | 167 | 36\u2010yr\u2010old Larix decidua growing at the alpine tree line. | ||
168 | *New Phytologist*, 202(4), pp.1237-1248. | 168 | *New Phytologist*, 202(4), pp.1237-1248. | ||
169 | <https://doi.org/10.1111/nph.12742>\n\nDawes, M.A., Philipson, C.D., | 169 | <https://doi.org/10.1111/nph.12742>\n\nDawes, M.A., Philipson, C.D., | ||
170 | Fonti, P., Bebi, P., H\u00e4ttenschwiler, S., Hagedorn, F. and Rixen, | 170 | Fonti, P., Bebi, P., H\u00e4ttenschwiler, S., Hagedorn, F. and Rixen, | ||
171 | C., 2015. Soil warming and CO 2 enrichment induce biomass shifts in | 171 | C., 2015. Soil warming and CO 2 enrichment induce biomass shifts in | ||
172 | alpine tree line vegetation. *Global Change Biology*, 21(5), | 172 | alpine tree line vegetation. *Global Change Biology*, 21(5), | ||
t | 173 | pp.2005-2021.\n\nRixen, C., Dawes, M.A., Wipf, S. and Hagedorn, F., | t | ||
174 | 2012. Evidence of enhanced freezing damage in treeline plants during | ||||
175 | six years of CO2 enrichment and soil warming. *Oikos*, 121(10), | ||||
176 | pp.1532-1543. <https://doi.org/10.1111/gcb.12819>\n\nStreit, K., | 173 | pp.2005-2021. <https://doi.org/10.1111/gcb.12819>\n\nRixen, C., Dawes, | ||
174 | M.A., Wipf, S. and Hagedorn, F., 2012. Evidence of enhanced freezing | ||||
175 | damage in treeline plants during six years of CO2 enrichment and soil | ||||
176 | warming. *Oikos*, 121(10), pp.1532-1543. \n\nStreit, K., Rinne, K.T., | ||||
177 | Rinne, K.T., Hagedorn, F., Dawes, M.A., Saurer, M., Hoch, G., Werner, | 177 | Hagedorn, F., Dawes, M.A., Saurer, M., Hoch, G., Werner, R.A., | ||
178 | R.A., Buchmann, N. and Siegwolf, R.T., 2013. Tracing fresh assimilates | 178 | Buchmann, N. and Siegwolf, R.T., 2013. Tracing fresh assimilates | ||
179 | through Larix decidua exposed to elevated CO 2 and soil warming at the | 179 | through Larix decidua exposed to elevated CO 2 and soil warming at the | ||
180 | alpine treeline using compound\u2010specific stable isotope analysis. | 180 | alpine treeline using compound\u2010specific stable isotope analysis. | ||
181 | *New Phytologist*, 197(3), pp.838-849.\n", | 181 | *New Phytologist*, 197(3), pp.838-849.\n", | ||
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