TY - JOUR
T1 - Approaching a thermal tipping point in the Eurasian boreal forest at its southern margin
AU - Rao, Mukund Palat
AU - Davi, Nicole K.
AU - Magney, Troy S.
AU - Andreu-Hayles, Laia
AU - Nachin, Baatarbileg
AU - Suran, Byambagerel
AU - Varuolo-Clarke, Arianna M.
AU - Cook, Benjamin I.
AU - D’Arrigo, Rosanne D.
AU - Pederson, Neil
AU - Odrentsen, Lkhagvajargal
AU - Rodríguez-Catón, Milagros
AU - Leland, Caroline
AU - Burentogtokh, Jargalan
AU - Gardner, William R.M.
AU - Griffin, Kevin L.
N1 - Publisher Copyright:
© 2023, The Author(s).
PY - 2023/12
Y1 - 2023/12
N2 - Climate change is increasing the intensity and frequency of extreme heat events. Ecological responses to extreme heat will depend on vegetation physiology and thermal tolerance. Here we report that Larix sibirica, a foundation species across boreal Eurasia, is vulnerable to extreme heat at its southern range margin due to its low thermal tolerance (Tcrit of photosynthesis: ~ 37–48 °C). Projections from CMIP6 Earth System Models (ESMs) suggest that leaf temperatures might exceed the 25th percentile of Larix sibirica’s Tcrit by two to three days per year within the next two to three decades (by 2050) under high emission scenarios (SSP3-7.0 and SSP5-8.5). This degree of warming will threaten the biome’s continued ability to assimilate and sequester carbon. This work highlights that under high emission trajectories we may approach an abrupt ecological tipping point in southern boreal Eurasian forests substantially sooner than ESM estimates that do not consider plant thermal tolerance traits.
AB - Climate change is increasing the intensity and frequency of extreme heat events. Ecological responses to extreme heat will depend on vegetation physiology and thermal tolerance. Here we report that Larix sibirica, a foundation species across boreal Eurasia, is vulnerable to extreme heat at its southern range margin due to its low thermal tolerance (Tcrit of photosynthesis: ~ 37–48 °C). Projections from CMIP6 Earth System Models (ESMs) suggest that leaf temperatures might exceed the 25th percentile of Larix sibirica’s Tcrit by two to three days per year within the next two to three decades (by 2050) under high emission scenarios (SSP3-7.0 and SSP5-8.5). This degree of warming will threaten the biome’s continued ability to assimilate and sequester carbon. This work highlights that under high emission trajectories we may approach an abrupt ecological tipping point in southern boreal Eurasian forests substantially sooner than ESM estimates that do not consider plant thermal tolerance traits.
UR - https://www.scopus.com/pages/publications/85164476721
U2 - 10.1038/s43247-023-00910-6
DO - 10.1038/s43247-023-00910-6
M3 - Article
AN - SCOPUS:85164476721
SN - 2662-4435
VL - 4
JO - Communications Earth and Environment
JF - Communications Earth and Environment
IS - 1
M1 - 247
ER -