Journal article
Monitoring water potential and relative water content in Eucalyptus Camaldulensis using near infrared spectroscopy
Journal of Tropical Forest Science, Vol.29(1), pp.121-128
2017
Abstract
A genetically diverse cohort of Eucalyptus camaldulensis seedlings were grown under a range of irrigation treatments to impose a range of states of water stress. Near infrared (NIR) spectra obtained from leaf surfaces of these seedlings were calibrated against physiological measurements commonly associated with plant water stress, i.e. relative water content and midday leaf water potential. Spectral data were obtained from upper (adaxial) leaf surfaces of upper and lower leaves on the stem. A strong coefficient of determination of R2 P = 0.78 was obtained for the validation set using the calibration developed for midday leaf water potential from the seedling leaf data. However, that for relative water content was relatively low: R2 P = 0.41. These results indicated that portable NIR has the potential to provide for rapid, non-destructive assessment of the leaf water potential in E. camaldulensis seedlings.
Details
- Title
- Monitoring water potential and relative water content in Eucalyptus Camaldulensis using near infrared spectroscopy
- Authors
- G L Yang (Author) - Chinese Academy of Forestry, ChinaW H Lu (Author) - Chinese Academy of Forestry, ChinaY Lin (Author) - Chinese Academy of Forestry, ChinaJ Z Luo (Author) - Chinese Academy of Forestry, ChinaC B Wang (Author) - Chinese Academy of Forestry, ChinaRoger Meder (Author) - University of the Sunshine Coast - Faculty of Arts, Business and LawPaul Warburton (Author) - Riau Andalan Pulp and Paper, IndonesiaR J Arnold (Author) - Chinese Academy of Forestry, China
- Publication details
- Journal of Tropical Forest Science, Vol.29(1), pp.121-128
- Publisher
- Forest Research Institute Malaysia
- Date published
- 2017
- ISSN
- 0128-1283
- Copyright note
- Copyright © 2017 Forest Research Institute Malaysia. Reproduced with the permission of the copyright holder.
- Organisation Unit
- University of the Sunshine Coast, Queensland; Forest Industries Research Centre
- Language
- English
- Record Identifier
- 99450447402621
- Output Type
- Journal article
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