(Table 1) Normalized difference vegetation index in control and warming plots, Abisco Research Station

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Main Authors: Bokhorst, Stef, Tømmervik, H, Callaghan, Terry V, Phoenix, Gareth K, Bjerke, Jarle W
Format: Dataset Open Access
Language:en
Published: PANGAEA 2012
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author Bokhorst, Stef
Tømmervik, H
Callaghan, Terry V
Phoenix, Gareth K
Bjerke, Jarle W
author_facet Bokhorst, Stef
Tømmervik, H
Callaghan, Terry V
Phoenix, Gareth K
Bjerke, Jarle W
collection Datos científicos de ciencias marinas y ambientales
contents Extreme winter warming events in the sub-Arctic have caused considerable vegetation damage due to rapid changes in temperature and loss of snow cover. The frequency of extreme weather is expected to increase due to climate change thereby increasing the potential for recurring vegetation damage in Arctic regions. Here we present data on vegetation recovery from one such natural event and multiple experimental simulations in the sub-Arctic using remote sensing, handheld passive proximal sensors and ground surveys. Normalized difference vegetation index (NDVI) recovered fast (2 years), from the 26% decline following one natural extreme winter warming event. Recovery was associated with declines in dead Empetrum nigrum (dominant dwarf shrub) from ground surveys. However, E. nigrum healthy leaf NDVI was also reduced (16%) following this winter warming event in experimental plots (both control and treatments), suggesting that non-obvious plant damage (i.e., physiological stress) had occurred in addition to the dead E. nigrum shoots that was considered responsible for the regional 26% NDVI decline. Plot and leaf level NDVI provided useful additional information that could not be obtained from vegetation surveys and regional remote sensing (MODIS) alone. The major damage of an extreme winter warming event appears to be relatively transitory. However, potential knock-on effects on higher trophic levels (e.g., rodents, reindeer, and bear) could be unpredictable and large. Repeated warming events year after year, which can be expected under winter climate warming, could result in damage that may take much longer to recover.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_807879
institution PANGAEA
language en
publishDate 2012
publisher PANGAEA
record_format pangaea
spellingShingle (Table 1) Normalized difference vegetation index in control and warming plots, Abisco Research Station
Bokhorst, Stef
Tømmervik, H
Callaghan, Terry V
Phoenix, Gareth K
Bjerke, Jarle W
Abisko_ANS; Abisko, Lappland, northern Sweden; Abisko Scientific Research Station; DATE/TIME; Incubation of surface soil/sediment, in-situ; International Polar Year (2007-2008); IPY; Method comment; Normalized Difference Vegetation Index; Standard error; Treatment
Extreme winter warming events in the sub-Arctic have caused considerable vegetation damage due to rapid changes in temperature and loss of snow cover. The frequency of extreme weather is expected to increase due to climate change thereby increasing the potential for recurring vegetation damage in Arctic regions. Here we present data on vegetation recovery from one such natural event and multiple experimental simulations in the sub-Arctic using remote sensing, handheld passive proximal sensors and ground surveys. Normalized difference vegetation index (NDVI) recovered fast (2 years), from the 26% decline following one natural extreme winter warming event. Recovery was associated with declines in dead Empetrum nigrum (dominant dwarf shrub) from ground surveys. However, E. nigrum healthy leaf NDVI was also reduced (16%) following this winter warming event in experimental plots (both control and treatments), suggesting that non-obvious plant damage (i.e., physiological stress) had occurred in addition to the dead E. nigrum shoots that was considered responsible for the regional 26% NDVI decline. Plot and leaf level NDVI provided useful additional information that could not be obtained from vegetation surveys and regional remote sensing (MODIS) alone. The major damage of an extreme winter warming event appears to be relatively transitory. However, potential knock-on effects on higher trophic levels (e.g., rodents, reindeer, and bear) could be unpredictable and large. Repeated warming events year after year, which can be expected under winter climate warming, could result in damage that may take much longer to recover.
title (Table 1) Normalized difference vegetation index in control and warming plots, Abisco Research Station
topic Abisko_ANS; Abisko, Lappland, northern Sweden; Abisko Scientific Research Station; DATE/TIME; Incubation of surface soil/sediment, in-situ; International Polar Year (2007-2008); IPY; Method comment; Normalized Difference Vegetation Index; Standard error; Treatment
url https://doi.org/10.1594/PANGAEA.807879