Literature DB >> 27925232

Estimating the sensitivity of stomatal conductance to photosynthesis: a review.

Grace L Miner1, William L Bauerle1,2, Dennis D Baldocchi3.   

Abstract

A common approach for estimating fluxes of CO2 and water in canopy models is to couple a model of photosynthesis (An ) to a semi-empirical model of stomatal conductance (gs ) such as the widely validated and utilized Ball-Berry (BB) model. This coupling provides an effective way of predicting transpiration at multiple scales. However, the designated value of the slope parameter (m) in the BB model impacts transpiration estimates. There is a lack of consensus regarding how m varies among species or plant functional types (PFTs) or in response to growth conditions. Literature values are highly variable, with inter-species and intra-species variations of >100%, and comparisons are made more difficult because of differences in collection techniques. This paper reviews the various methods used to estimate m and highlights how variations in measurement techniques or the data utilized can influence the resultant m. Additionally, this review summarizes the reported responses of m to [CO2 ] and water stress, collates literature values by PFT and compiles nearly three decades of values into a useful compendium.
© 2016 John Wiley & Sons Ltd.

Entities:  

Keywords:  Ball-Berry; Ball-Berry-Leuning; coupled conductance and photosynthesis models; stomatal conductance; stomatal optimization; transpiration

Mesh:

Substances:

Year:  2017        PMID: 27925232     DOI: 10.1111/pce.12871

Source DB:  PubMed          Journal:  Plant Cell Environ        ISSN: 0140-7791            Impact factor:   7.228


  14 in total

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2.  A high-performance system of multiple gas-exchange chambers with a laser spectrometer to estimate leaf photosynthesis, stomatal conductance, and mesophyll conductance.

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3.  Aerosol Impacts on Water Relations of Camphor (Cinnamomum camphora).

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4.  Selenium mitigates salt-induced oxidative stress in durum wheat (Triticum durum Desf.) seedlings by modulating chlorophyll fluorescence, osmolyte accumulation, and antioxidant system.

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5.  An integrated proteomic and metabolomic study to evaluate the effect of nucleus-cytoplasm interaction in a diploid citrus cybrid between sweet orange and lemon.

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Journal:  Plant Mol Biol       Date:  2018-10-19       Impact factor: 4.076

6.  Towards a dynamic photosynthesis model to guide yield improvement in C4 crops.

Authors:  Yu Wang; Kher X Chan; Stephen P Long
Journal:  Plant J       Date:  2021-08-06       Impact factor: 7.091

7.  Simulation of Stomatal Conductance and Water Use Efficiency of Tomato Leaves Exposed to Different Irrigation Regimes and Air CO2 Concentrations by a Modified "Ball-Berry" Model.

Authors:  Zhenhua Wei; Taisheng Du; Xiangnan Li; Liang Fang; Fulai Liu
Journal:  Front Plant Sci       Date:  2018-04-09       Impact factor: 5.753

8.  A novel optimization approach incorporating non-stomatal limitations predicts stomatal behaviour in species from six plant functional types.

Authors:  Teresa E Gimeno; Noelia Saavedra; Jérôme Ogée; Belinda E Medlyn; Lisa Wingate
Journal:  J Exp Bot       Date:  2019-03-11       Impact factor: 6.992

9.  Correlation Among Phenotypic Parameters Related to the Growth and Photosynthesis of Strawberry (Fragaria × ananassa Duch.) Grown Under Various Light Intensity Conditions.

Authors:  Hyo Gil Choi
Journal:  Front Plant Sci       Date:  2021-06-10       Impact factor: 5.753

10.  Plant identity and shallow soil moisture are primary drivers of stomatal conductance in the savannas of Kruger National Park.

Authors:  Rebecca L Tobin; Andrew Kulmatiski
Journal:  PLoS One       Date:  2018-01-26       Impact factor: 3.240

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