Hydraulic Architecture and Function of Tall Trees
Author:
Affiliation:
1. Graduate School of Agricultural Science, Kobe University
2. Field Science Education and Research Center, Kyoto University
Publisher
The Japanese Forest Society
Link
https://www.jstage.jst.go.jp/article/jjfs/99/2/99_74/_pdf
Reference117 articles.
1. Aasamaa K, Sber A, Rahi M (2001) Leaf anatomical characteristics associated with shoot hydraulic conductance and stomatal sensitivity to changes in leaf water status in temperate and deciduous trees. Aust J Plant Physiol 28: 765-774
2. Aiba S et al. (2007) Comparative study of additive basal area of conifers in forest ecosystems along elevational gradients. Ecol Res 22: 439-450
3. Ambrose AR, Sillett SC, Dawson TE (2009) Effects of tree height on branch hydraulics, leaf structure and gas exchange in California redwoods. Plant Cell Environ 32: 743-757
4. Azuma W, Ishii HR, Kuroda K, Kuroda K (2016) Function and structure of leaves contributing to increasing water storage with height in the tallest Cryptomeria japonica trees of Japan. Trees 30: 141-152
5. Barnard HR, Ryan MG (2003) A test of the hydraulic limitation hypothesis in fast-growing Eucalyptus saligna. Plant Cell Environ 26: 1235-1245
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