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Anthony King

Dusenge M, Warren JM, Reich P, Ward EJ, Murphy B, Stefanski A, Bermudez R, Cruz M, McLennan DA, King AW, et al. 2024. Photosynthetic capacity in middle-aged larch and spruce acclimates independently to experimental warming and elevated CO2. . Plant, Cell & Environment. 47(12):4886–4902. doi:10.1111/pce.15068.
Dusenge M, Warren JM, Reich P, Ward EJ, Murphy B, Stefanski A, Villanueva R, Cruz M, McLennan DA, King AW, et al. 2023. Boreal conifers maintain carbon uptake with warming despite failure to track optimal temperatures. Nature Communications. 14:4667. doi:10.1038/s41467-023-40248-3.
Jensen AM, Warren JM, King AW, Ricciuto DM, Hanson PJ, Wullschleger SD. 2019. Simulated projections of boreal forest peatland ecosystem productivity are sensitive to observed seasonality in leaf physiology. Tree Physiology. 39(4):556–572. doi:10.1093/treephys/tpy140.

Publications

2024

  1. Dusenge M, Warren JM, Reich P, Ward EJ, Murphy B, Stefanski A, Bermudez R, Cruz M, McLennan DA, King AW, et al. 2024. Photosynthetic capacity in middle-aged larch and spruce acclimates independently to experimental warming and elevated CO2. . Plant, Cell & Environment. 47(12):4886–4902. doi:10.1111/pce.15068.

2023

  1. Dusenge M, Warren JM, Reich P, Ward EJ, Murphy B, Stefanski A, Villanueva R, Cruz M, McLennan DA, King AW, et al. 2023. Boreal conifers maintain carbon uptake with warming despite failure to track optimal temperatures. Nature Communications. 14:4667. doi:10.1038/s41467-023-40248-3.

2019

  1. Jensen AM, Warren JM, King AW, Ricciuto DM, Hanson PJ, Wullschleger SD. 2019. Simulated projections of boreal forest peatland ecosystem productivity are sensitive to observed seasonality in leaf physiology. Tree Physiology. 39(4):556–572. doi:10.1093/treephys/tpy140.

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