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Whole-tree mesophyll conductance reconciles isotopic and gas-exchange estimates of water-use efficiency

Authors :
Craig V. M. Barton
Courtney E. Campany
Mark G. Tjoelker
Nerea Ubierna
John D. Marshall
John E. Drake
Teresa E. Gimeno
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.

Details

ISSN :
14698137
Volume :
229
Issue :
5
Database :
OpenAIRE
Journal :
The New phytologistReferences
Accession number :
edsair.doi.dedup.....fc8a5995356c755c7f56d9b2aa47e7e2