Field measurement of tree fine root hydraulic conductivity using a root pressure chamber technique
Author:
Affiliation:
1. Graduate School of Science and Technology, Shinshu University
2. Institute of Plant Science and Resources, Okayama University
Publisher
Japanese Society for Root Research
Subject
Geology,Ocean Engineering,Water Science and Technology
Link
https://www.jstage.jst.go.jp/article/rootres/31/4/31_105/_pdf
Reference20 articles.
1. Doi, R., Tanikawa, T., Miyatani, K., Hirano, Y. 2017. Intraspecific variation in morphological traits of root branch orders in Chamaecyparis obtusa. Plant Soil 416: 503-513.
2. Faustino, L. I., Moretti, A. P., Graciano, C. 2015. Fertilization with urea, ammonium and nitrate produce different effects on growth, hydraulic traits and drought tolerance in Pinus taeda seedlings. Tree Physiol. 35: 1062-1074.
3. Henzler, T., Waterhouse, R. N., Smyth, A. J., Carvajal, M., Cooke, D. T., Schäffner, A. R., Steuble, E., Clarkson, D. T. 1999. Diurnal variations in hydraulic conductivity and root pressure can be correlated with the expression of putative aquaporins in the roots of Lotus japonicus. Planta 210: 50-60.
4. Hishi, T., Tateno, R., Fukushima, K., Fujimaki, R., Itoh, M., Tokuchi, N. 2017. Changes in the anatomy, morphology and mycorrhizal infection of fine root systems of Cryptomeria japonica in relation to stand ageing. Tree Physiol. 37: 61-70.
5. Horie, T., Kaneko, T., Sugimoto, G., Sasano, S., Panda, S. K., Shibasaka, M., Katsuhara, M. 2011. Mechanisms of water transport mediated by PIP aquaporins and their regulation via phosphorylation events under salinity stress in barley roots. Plant Cell Physiol. 52: 663-675.
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