Literature DB >> 32152213

Rapid Chlorophyll a Fluorescence Light Response Curves Mechanistically Inform Photosynthesis Modeling.

Jonathan R Pleban1, Carmela R Guadagno2, David S Mackay1, Cynthia Weinig3,4,5, Brent E Ewers3,4.   

Abstract

Crop improvement is crucial to ensuring global food security under climate change, and hence there is a pressing need for phenotypic observations that are both high throughput and improve mechanistic understanding of plant responses to environmental cues and limitations. In this study, chlorophyll a fluorescence light response curves and gas-exchange observations are combined to test the photosynthetic response to moderate drought in four genotypes of Brassica rapa The quantum yield of PSII (ϕ PSII ) is here analyzed as an exponential decline under changing light intensity and soil moisture. Both the maximum ϕ PSII and the rate of ϕ PSII decline across a large range of light intensities (0-1,000 μmol photons m-2 s-1; β PSII ) are negatively affected by drought. We introduce an alternative photosynthesis model (β PSII model) incorporating parameters from rapid fluorescence response curves. Specifically, the model uses β PSII as an input for estimating the photosynthetic electron transport rate, which agrees well with two existing photosynthesis models (Farquhar-von Caemmerer-Berry and Yin). The β PSII model represents a major improvement in photosynthesis modeling through the integration of high-throughput fluorescence phenotyping data, resulting in gained parameters of high mechanistic value.
© 2020 American Society of Plant Biologists. All Rights Reserved.

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Year:  2020        PMID: 32152213      PMCID: PMC7271808          DOI: 10.1104/pp.19.00375

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  90 in total

1.  The proton to electron stoichiometry of steady-state photosynthesis in living plants: A proton-pumping Q cycle is continuously engaged.

Authors:  C A Sacksteder; A Kanazawa; M E Jacoby; D M Kramer
Journal:  Proc Natl Acad Sci U S A       Date:  2000-12-19       Impact factor: 11.205

2.  Drought and oxidative load in the leaves of C3 plants: a predominant role for photorespiration?

Authors:  Graham Noctor; Sonja Veljovic-Jovanovic; Simon Driscoll; Larissa Novitskaya; Christine H Foyer
Journal:  Ann Bot       Date:  2002-06       Impact factor: 4.357

3.  Quantitative variation in water-use efficiency across water regimes and its relationship with circadian, vegetative, reproductive, and leaf gas-exchange traits.

Authors:  Christine E Edwards; Brent E Ewers; C Robertson McClung; Ping Lou; Cynthia Weinig
Journal:  Mol Plant       Date:  2012-02-08       Impact factor: 13.164

4.  Rapid-cycling populations of brassica.

Authors:  P H Williams; C B Hill
Journal:  Science       Date:  1986-06-13       Impact factor: 47.728

Review 5.  Parameters of photosynthetic energy partitioning.

Authors:  Dušan Lazár
Journal:  J Plant Physiol       Date:  2014-11-29       Impact factor: 3.549

6.  Faster photosynthetic induction in tobacco by expressing cyanobacterial flavodiiron proteins in chloroplasts.

Authors:  Rodrigo Gómez; Néstor Carrillo; María P Morelli; Suresh Tula; Fahimeh Shahinnia; Mohammad-Reza Hajirezaei; Anabella F Lodeyro
Journal:  Photosynth Res       Date:  2017-10-11       Impact factor: 3.573

7.  Reliable estimation of biochemical parameters from C₃ leaf photosynthesis-intercellular carbon dioxide response curves.

Authors:  Lianhong Gu; Stephen G Pallardy; Kevin Tu; Beverly E Law; Stan D Wullschleger
Journal:  Plant Cell Environ       Date:  2010-11       Impact factor: 7.228

Review 8.  Gas exchange measurements, what can they tell us about the underlying limitations to photosynthesis? Procedures and sources of error.

Authors:  S P Long; C J Bernacchi
Journal:  J Exp Bot       Date:  2003-09-25       Impact factor: 6.992

9.  Selection during crop diversification involves correlated evolution of the circadian clock and ecophysiological traits in Brassica rapa.

Authors:  Yulia Yarkhunova; Christine E Edwards; Brent E Ewers; Robert L Baker; Timothy Llewellyn Aston; C Robertson McClung; Ping Lou; Cynthia Weinig
Journal:  New Phytol       Date:  2015-11-30       Impact factor: 10.151

10.  A biochemical model of photosynthetic CO2 assimilation in leaves of C 3 species.

Authors:  G D Farquhar; S von Caemmerer; J A Berry
Journal:  Planta       Date:  1980-06       Impact factor: 4.116

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2.  Rapid Light-Response Curve of Chlorophyll Fluorescence in Terrestrial Plants: Relationship to CO2 Exchange among Five Woody and Four Fern Species Adapted to Different Light and Water Regimes.

Authors:  Meng-Yuan Huang; Shau-Lian Wong; Jen-Hsien Weng
Journal:  Plants (Basel)       Date:  2021-02-26

3.  Modeling vegetative vigour in grapevine: unraveling underlying mechanisms.

Authors:  Inés P Hugalde; Cecilia B Agüero; Felipe H Barrios-Masias; Nina Romero; Andy Viet Nguyen; Summaira Riaz; Patricia Piccoli; Andrew J McElrone; M Andrew Walker; Hernán F Vila
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