Back to Search
Start Over
Whole-tree mesophyll conductance reconciles isotopic and gas-exchange estimates of water-use efficiency
- Source :
- The New phytologistReferences. 229(5)
- Publication Year :
- 2020
-
Abstract
- Photosynthetic water-use efficiency (WUE) describes the link between terrestrial carbon (C) and water cycles. Estimates of intrinsic WUE (iWUE) from gas exchange and C isotopic composition (δ13 C) differ due to an internal conductance in the leaf mesophyll (gm ) that is variable and seldom computed. We present the first direct estimates of whole-tree gm , together with iWUE from whole-tree gas exchange and δ13 C of the phloem (δ13 Cph ). We measured gas exchange, online 13 C-discrimination, and δ13 Cph monthly throughout spring, summer, and autumn in Eucalyptus tereticornis grown in large whole-tree chambers. Six trees were grown at ambient temperatures and six at a 3°C warmer air temperature; a late-summer drought was also imposed. Drought reduced whole-tree gm . Warming had few direct effects, but amplified drought-induced reductions in whole-tree gm . Whole-tree gm was similar to leaf gm for these same trees. iWUE estimates from δ13 Cph agreed with iWUE from gas exchange, but only after incorporating gm . δ13 Cph was also correlated with whole-tree 13 C-discrimination, but offset by -2.5 ± 0.7‰, presumably due to post-photosynthetic fractionations. We conclude that δ13 Cph is a good proxy for whole-tree iWUE, with the caveats that post-photosynthetic fractionations and intrinsic variability of gm should be incorporated to provide reliable estimates of this trait in response to abiotic stress.
- Subjects :
- 0106 biological sciences
0301 basic medicine
Physiology
Plant Science
Photosynthesis
01 natural sciences
Trees
03 medical and health sciences
Respiration
Water cycle
Water-use efficiency
Carbon Isotopes
Direct effects
Conductance
Water
15. Life on land
Carbon Dioxide
Eucalyptus
Plant Leaves
030104 developmental biology
Agronomy
13. Climate action
Environmental science
Phloem
Mesophyll Cells
010606 plant biology & botany
Subjects
Details
- ISSN :
- 14698137
- Volume :
- 229
- Issue :
- 5
- Database :
- OpenAIRE
- Journal :
- The New phytologistReferences
- Accession number :
- edsair.doi.dedup.....fc8a5995356c755c7f56d9b2aa47e7e2