Harnessing photosynthetic C18O16O discrimination dynamics under leaf water nonsteady state to estimate mesophyll conductance: a new, regression‐based method

Author:

Rao Sen12ORCID,Liu Tao3ORCID,Cernusak Lucas A.4ORCID,Song Xin1ORCID

Affiliation:

1. College of Life Sciences and Oceanography Shenzhen University Shenzhen 518060 China

2. Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Optoelectronic Engineering Shenzhen University Shenzhen 518060 China

3. College of Resources Sichuan Agricultural University Chengdu 611130 China

4. College of Science and Engineering James Cook University Cairns Qld 4878 Australia

Abstract

Summary Mesophyll conductance (gm) is a crucial plant trait that can significantly limit photosynthesis. Measurement of photosynthetic C18O16O discrimination (Δ18O) has proved to be the only viable means of resolving gm in both C3 and C4 plants. However, the currently available methods to exploit Δ18O for gm estimation are error prone due to their inadequacy in constraining the degree of oxygen isotope exchange (θ) during mesophyll CO2 hydration. Here, we capitalized on experimental manipulation of leaf water isotopic dynamics to establish a novel, nonsteady state, regression‐based approach for simultaneous determination of gm and θ from online Δ18O measurements. We demonstrated the methodological and theoretical robustness of this new Δ18O‐gm estimation approach and showed through measurements on several C3 and C4 species that this approach can serve as a benchmark method against which to identify previously‐unrecognized biases of the existing Δ18O‐gm methods. Our results highlight the unique value of this nonsteady state‐based approach for contributing to ongoing efforts toward quantitative understanding of mesophyll conductance for crop yield improvement and carbon cycle modeling.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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