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Plasticity in gas-exchange physiology of mature Scots pine and European larch drive short- and long-term adjustments to changes in water availability
Feichtinger, L. M., Siegwolf, R. T. W., Gessler, A., Buchmann, N., Lévesque, M., & Rigling, A. (2017). Plasticity in gas-exchange physiology of mature Scots pine and European larch drive short- and long-term adjustments to changes in water availability. Plant, Cell and Environment, 40(9), 1972-1983. https://doi.org/10.1111/pce.13008
Incorporation and remobilization of <sup>13</sup>C within the fine-root systems of individual <em>Abies alba</em> trees in a temperate coniferous stand
Endrulat, T., Saurer, M., Buchmann, N., & Brunner, I. (2010). Incorporation and remobilization of 13C within the fine-root systems of individual Abies alba trees in a temperate coniferous stand. Tree Physiology, 30(12), 1515-1527. https://doi.org/10.1093/treephys/tpq090
Tissue-specific variation of <em>δ</em><sup>13</sup>C in mature canopy trees in a temperate forest in central Europe
Chevillat, V. S., Siegwolf, R. T. W., Pepin, S., & Körner, C. (2005). Tissue-specific variation of δ13C in mature canopy trees in a temperate forest in central Europe. Basic and Applied Ecology, 6(6), 519-534. https://doi.org/10.1016/j.baae.2005.04.008