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Increased photosynthesis during spring drought in energy-limited ecosystems
by
Fisher, Joshua B.
, Keenan, Trevor F.
, Miller, David L.
, Xiao, Jingfeng
, Zaitchik, Benjamin F.
, Wolf, Sebastian
in
631/158/2445
/ 704/47/4113
/ Air temperature
/ Biosphere
/ Carbon
/ Covariance
/ Drought
/ Droughts
/ Ecosystem
/ Ecosystems
/ Energy
/ Energy limitation
/ Environment models
/ Humanities and Social Sciences
/ multidisciplinary
/ Northern Hemisphere
/ Photosynthesis
/ Precipitation
/ Productivity
/ Remote sensing
/ Science
/ Science (multidisciplinary)
/ Seasons
/ Sensitivity
/ Spring
/ Spring (season)
/ Vortices
2023
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Increased photosynthesis during spring drought in energy-limited ecosystems
by
Fisher, Joshua B.
, Keenan, Trevor F.
, Miller, David L.
, Xiao, Jingfeng
, Zaitchik, Benjamin F.
, Wolf, Sebastian
in
631/158/2445
/ 704/47/4113
/ Air temperature
/ Biosphere
/ Carbon
/ Covariance
/ Drought
/ Droughts
/ Ecosystem
/ Ecosystems
/ Energy
/ Energy limitation
/ Environment models
/ Humanities and Social Sciences
/ multidisciplinary
/ Northern Hemisphere
/ Photosynthesis
/ Precipitation
/ Productivity
/ Remote sensing
/ Science
/ Science (multidisciplinary)
/ Seasons
/ Sensitivity
/ Spring
/ Spring (season)
/ Vortices
2023
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Increased photosynthesis during spring drought in energy-limited ecosystems
by
Fisher, Joshua B.
, Keenan, Trevor F.
, Miller, David L.
, Xiao, Jingfeng
, Zaitchik, Benjamin F.
, Wolf, Sebastian
in
631/158/2445
/ 704/47/4113
/ Air temperature
/ Biosphere
/ Carbon
/ Covariance
/ Drought
/ Droughts
/ Ecosystem
/ Ecosystems
/ Energy
/ Energy limitation
/ Environment models
/ Humanities and Social Sciences
/ multidisciplinary
/ Northern Hemisphere
/ Photosynthesis
/ Precipitation
/ Productivity
/ Remote sensing
/ Science
/ Science (multidisciplinary)
/ Seasons
/ Sensitivity
/ Spring
/ Spring (season)
/ Vortices
2023
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Increased photosynthesis during spring drought in energy-limited ecosystems
Journal Article
Increased photosynthesis during spring drought in energy-limited ecosystems
2023
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Overview
Drought is often thought to reduce ecosystem photosynthesis. However, theory suggests there is potential for increased photosynthesis during meteorological drought, especially in energy-limited ecosystems. Here, we examine the response of photosynthesis (gross primary productivity, GPP) to meteorological drought across the water-energy limitation spectrum. We find a consistent increase in eddy covariance GPP during spring drought in energy-limited ecosystems (83% of the energy-limited sites). Half of spring GPP sensitivity to precipitation was predicted solely from the wetness index (R
2
= 0.47,
p
< 0.001), with weaker relationships in summer and fall. Our results suggest GPP increases during spring drought for 55% of vegetated Northern Hemisphere lands ( >30° N). We then compare these results to terrestrial biosphere model outputs and remote sensing products. In contrast to trends detected in eddy covariance data, model mean GPP always declined under spring precipitation deficits after controlling for air temperature and light availability. While remote sensing products captured the observed negative spring GPP sensitivity in energy-limited ecosystems, terrestrial biosphere models proved insufficiently sensitive to spring precipitation deficits.
Ecosystem productivity generally declines under drought. Here, the authors show that spring droughts are linked to increases in gross primary productivity in energy-limited ecosystems in the Northern Hemisphere, and that terrestrial biosphere models tend not to capture this.
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