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The <sup>18</sup>O‐signal transfer from water vapour to leaf water and assimilates varies among plant species and growth forms
Lehmann, M. M., Goldsmith, G. R., Mirande‐Ney, C., Weigt, R. B., Schönbeck, L., Kahmen, A., … Saurer, M. (2020). The 18O‐signal transfer from water vapour to leaf water and assimilates varies among plant species and growth forms. Plant, Cell and Environment, 43(2), 510-523. https://doi.org/10.1111/pce.13682
Differences in carbon isotope leaf-to-phloem fractionation and mixing patterns along a vertical gradient in mature European beech and Douglas fir
Bögelein, R., Lehmann, M. M., & Thomas, F. M. (2019). Differences in carbon isotope leaf-to-phloem fractionation and mixing patterns along a vertical gradient in mature European beech and Douglas fir. New Phytologist, 222(4), 1803-1815. https://doi.org/10.1111/nph.15735
Compound-specific carbon isotope patterns in needles of conifer tree species from the Swiss National Park under recent climate change
Churakova (Sidorova), O. V., Lehmann, M. M., Siegwolf, R. T. W., Saurer, M., Fonti, M. V., Schmid, L., … Bigler, C. (2019). Compound-specific carbon isotope patterns in needles of conifer tree species from the Swiss National Park under recent climate change. Plant Physiology and Biochemistry, 139, 264-272. https://doi.org/10.1016/j.plaphy.2019.03.016
The effect of <sup>18</sup>O-labelled water vapour on the oxygen isotope ratio of water and assimilates in plants at high humidity
Lehmann, M. M., Goldsmith, G. T., Schmid, L., Gessler, A., Saurer, M., & Siegwolf, R. T. W. (2018). The effect of 18O-labelled water vapour on the oxygen isotope ratio of water and assimilates in plants at high humidity. New Phytologist, 217(1), 105-116. https://doi.org/10.1111/nph.14788
Phloem flow and sugar transport in <i>Ricinus communis</i> L. is inhibited under anoxic conditions of shoot or roots
Peuke, A. D., Gessler, A., Trumbore, S., Windt, C. W., Homan, N., Gerkema, E., & Van As, H. (2015). Phloem flow and sugar transport in Ricinus communis L. is inhibited under anoxic conditions of shoot or roots. Plant, Cell and Environment, 38(3), 433-447. https://doi.org/10.1111/pce.12399
Comparing the intra-annual wood formation of three European species (<I>Fagus sylvatica</I>, <I>Quercus petraea</I> and <I>Pinus sylvestris</I>) as related to leaf phenology and non-structural carbohydrate dynamics
Michelot, A., Simard, S., Rathgeber, C., Dufrêne, E., & Damesin, C. (2012). Comparing the intra-annual wood formation of three European species (Fagus sylvatica, Quercus petraea and Pinus sylvestris) as related to leaf phenology and non-structural carbohydrate dynamics. Tree Physiology, 32(8), 1033-1043. https://doi.org/10.1093/treephys/tps052
高山植物対其坏境的生理生态适成性研究迸展. Advance on physioecological adaptation of alpine plants to mountainous environment
Shi, Z., Bai, Dzhong, Lei, Jpin, Li, Mhe, & Xiao, Wfa. (2011). 高山植物対其坏境的生理生态适成性研究迸展. Advance on physioecological adaptation of alpine plants to mountainous environment. Acta Botanica Boreali-Occidentalia Sinica, 31(8), 1711-1718.
Water content and bark thickness of Norway spruce (&lt;em&gt;Picea abies&lt;/em&gt;) stems: phloem water capacitance and xylem sap flow
Gall, R., Landolt, W., Schleppi, P., Michellod, V., & Bucher, J. B. (2002). Water content and bark thickness of Norway spruce (Picea abies) stems: phloem water capacitance and xylem sap flow. Tree Physiology, 22(9), 613-623. https://doi.org/10.1093/treephys/22.9.613
Effect of fertilization on ozone-induced changes in the metabolism of birch (<i>Betula pendula</i>) leaves
Landolt, W., Günthardt-Goerg, M. S., Pfenninger, I., Einig, W., Hampp, R., Maurer, S., & Matyssek, R. (1997). Effect of fertilization on ozone-induced changes in the metabolism of birch (Betula pendula) leaves. New Phytologist, 137(3), 389-397. https://doi.org/10.1046/j.1469-8137.1997.00843.x
Ozone induced microscopical changes and quantitative carbohydrate contents of hybrid poplar (<em>Populus x euramericana</em>)
Landolt, W., Günthardt-Goerg, M., Pfenninger, I., & Scheidegger, C. (1994). Ozone induced microscopical changes and quantitative carbohydrate contents of hybrid poplar (Populus x euramericana). Trees: Structure and Function, 8(4), 183-190. https://doi.org/10.1007/BF00196845