Kristine Y. Crous, Ph.D.

Affiliations: 
2008 University of Michigan, Ann Arbor, Ann Arbor, MI 
Area:
Environmental Sciences, Plant Physiology, Ecology Biology
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"Kristine Crous"

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Mark D. Hunter grad student 2008 University of Michigan
 (Nitrogen availability alters species photosynthetic responses to elevated atmospheric carbon dioxide.)
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Publications

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Wu T, Tissue DT, Jiang M, et al. (2025) Leaf Photosynthetic and Respiratory Thermal Acclimation in Terrestrial Plants in Response to Warming: A Global Synthesis. Global Change Biology. 31: e70026
Carter KR, Cavaleri MA, Atkin OK, et al. (2024) Photosynthetic responses to temperature across the tropics: a meta-analytic approach. Annals of Botany
Asao S, Way DA, Turnbull MH, et al. (2024) Leaf nonstructural carbohydrate residence time, not concentration, correlates with leaf functional traits following the leaf economic spectrum in woody plants. The New Phytologist
Crous KY, Middleby KB, Cheesman AW, et al. (2024) Leaf warming in the canopy of mature tropical trees reduced photosynthesis due to downregulation of photosynthetic capacity and reduced stomatal conductance. The New Phytologist
Kumarathunge DP, Medlyn BE, Drake JE, et al. (2024) Photosynthetic temperature responses in leaves and canopies: why temperature optima may disagree at different scales. Tree Physiology
Jiang M, Medlyn BE, Wårlind D, et al. (2024) Carbon-phosphorus cycle models overestimate CO enrichment response in a mature forest. Science Advances. 10: eadl5822
Jiang M, Crous KY, Carrillo Y, et al. (2024) Microbial competition for phosphorus limits the CO response of a mature forest. Nature
Doughty CE, Keany JM, Wiebe BC, et al. (2023) Tropical forests are approaching critical temperature thresholds. Nature
Gardner A, Jiang M, Ellsworth D, et al. (2022) Optimal stomatal theory predicts CO responses of stomatal conductance in both gymnosperm and angiosperm trees. The New Phytologist
Ellsworth DS, Crous KY, De Kauwe MG, et al. (2022) Convergence in phosphorus constraints to photosynthesis in forests around the world. Nature Communications. 13: 5005
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