Literature DB >> 22812384

The efficiency of C4 photosynthesis under low light conditions in Zea mays, Miscanthus x giganteus and Flaveria bidentis.

Nerea Ubierna1, Wei Sun, David M Kramer, Asaph B Cousins.   

Abstract

The efficiency of C(4) photosynthesis in Zea mays, Miscanthus x giganteus and Flaveria bidentis in response to light was determined using measurements of gas exchange, (13) CO(2) photosynthetic discrimination, metabolite pools and spectroscopic assays, with models of C(4) photosynthesis and leaf (13) CO(2) discrimination. Spectroscopic and metabolite assays suggested constant energy partitioning between the C(4) and C(3) cycles across photosynthetically active radiation (PAR). Leakiness (φ), modelled using C(4) light-limited photosynthesis equations (φ(mod)), matched values from the isotope method without simplifications (φ(is)) and increased slightly from high to low PAR in all species. However, simplifications of bundle-sheath [CO(2)] and respiratory fractionation lead to large overestimations of φ at low PAR with the isotope method. These species used different strategies to maintain similar φ. For example, Z. mays had large rates of the C(4) cycle and low bundle-sheath cells CO(2 ) conductance (g(bs)). While F. bidentis had larger g(bs) but lower respiration rates and M. giganteus had less C(4) cycle capacity but low g(bs), which resulted in similar φ. This demonstrates that low g(bs) is important for efficient C(4) photosynthesis but it is not the only factor determining φ. Additionally, these C(4) species are able to optimize photosynthesis and minimize φ over a range of PARs, including low light.
© 2012 Blackwell Publishing Ltd.

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Year:  2012        PMID: 22812384     DOI: 10.1111/j.1365-3040.2012.02579.x

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


  35 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.  Effects of shading on the photosynthetic characteristics and mesophyll cell ultrastructure of summer maize.

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Journal:  Naturwissenschaften       Date:  2016-07-20

4.  The operation of two decarboxylases, transamination, and partitioning of C4 metabolic processes between mesophyll and bundle sheath cells allows light capture to be balanced for the maize C4 pathway.

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Journal:  Plant Physiol       Date:  2013-11-19       Impact factor: 8.340

5.  Influence of light and nitrogen on the photosynthetic efficiency in the C4 plant Miscanthus × giganteus.

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6.  The coordination of C4 photosynthesis and the CO2-concentrating mechanism in maize and Miscanthus x giganteus in response to transient changes in light quality.

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Journal:  Plant Physiol       Date:  2014-01-31       Impact factor: 8.340

7.  Stable carbon isotope discrimination is under genetic control in the C4 species maize with several genomic regions influencing trait expression.

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8.  Role of bundle sheath conductance in sustaining photosynthesis competence in sugarcane plants under nitrogen deficiency.

Authors:  Vanessa R Tofanello; Larissa M Andrade; Denisele N A Flores-Borges; Eduardo Kiyota; Juliana L S Mayer; Silvana Creste; Eduardo C Machado; Xinyou Yin; Paul C Struik; Rafael V Ribeiro
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9.  Coordination of Leaf Photosynthesis, Transpiration, and Structural Traits in Rice and Wild Relatives (Genus Oryza).

Authors:  Rita Giuliani; Nuria Koteyeva; Elena Voznesenskaya; Marc A Evans; Asaph B Cousins; Gerald E Edwards
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Review 10.  The Impacts of Fluctuating Light on Crop Performance.

Authors:  Rebecca A Slattery; Berkley J Walker; Andreas P M Weber; Donald R Ort
Journal:  Plant Physiol       Date:  2017-11-30       Impact factor: 8.340

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