Literature DB >> 30374982

Using the rapid A-Ci response (RACiR) in the Li-Cor 6400 to measure developmental gradients of photosynthetic capacity in poplar.

Erica H Lawrence1, Joseph R Stinziano2, David T Hanson2.   

Abstract

The rapid A-Ci response (RACiR) technique alleviates limitations of measuring photosynthetic capacity by reducing the time needed to determine the maximum carboxylation rate (Vcmax ) and electron transport rate (Jmax ) in leaves. Photosynthetic capacity and its relationships with leaf development are important for understanding ecological and agricultural productivity; however, our current understanding is incomplete. Here, we show that RACiR can be used in previous generation gas exchange systems (i.e., the LI-6400) and apply this method to rapidly investigate developmental gradients of photosynthetic capacity in poplar. We compared RACiR-determined Vcmax and Jmax as well as respiration and stomatal conductance (gs ) across four stages of leaf expansion in Populus deltoides and the poplar hybrid 717-1B4 (Populus tremula × Populus alba). These physiological data were paired with leaf traits including nitrogen concentration, chlorophyll concentrations, and specific leaf area. Several traits displayed developmental trends that differed between the poplar species, demonstrating the utility of RACiR approaches to rapidly generate accurate measures of photosynthetic capacity. By using both new and old machines, we have shown how more investigators will be able to incorporate measurements of important photosynthetic traits in future studies and further our understanding of relationships between development and leaf-level physiology.
© 2019 John Wiley & Sons Ltd.

Entities:  

Keywords:  leaf development; photosynthesis; photosynthetic capacity; poplar; rapid A-Ci response (RACiR)

Mesh:

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Year:  2018        PMID: 30374982     DOI: 10.1111/pce.13436

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


  2 in total

1.  MicroRNA156-mediated changes in leaf composition lead to altered photosynthetic traits during vegetative phase change.

Authors:  Erica H Lawrence; Clint J Springer; Brent R Helliker; R Scott Poethig
Journal:  New Phytol       Date:  2020-11-12       Impact factor: 10.151

2.  Gas exchange measurements in the unsteady state.

Authors:  Aaron J Saathoff; Jon Welles
Journal:  Plant Cell Environ       Date:  2021-09-15       Impact factor: 7.947

  2 in total

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