4.7 Article

Effects of leaf age during drought and recovery on photosynthesis, mesophyll conductance and leaf anatomy in wheat leaves

Related references

Note: Only part of the references are listed.
Article Plant Sciences

A cross-scale analysis to understand and quantify the effects of photosynthetic enhancement on crop growth and yield across environments

Alex Wu et al.

Summary: Photosynthetic manipulation provides new opportunities for enhancing crop yield, but the understanding of its impact on crop growth and yield in different environments is limited. This study used simulations to predict the effects of altering photosynthesis on wheat and sorghum yield and uncovered the complex interactions between photosynthesis and crop dynamics.

PLANT CELL AND ENVIRONMENT (2023)

Article Forestry

Cell-level anatomy explains leaf age-dependent declines in mesophyll conductance and photosynthetic capacity in the evergreen Mediterranean oak Quercus ilex subsp. rotundifolia

David Alonso-Forn et al.

Summary: The study demonstrates that leaves of Mediterranean evergreen tree species undergo a series of morphological, anatomical, chemical, and photosynthetic trait changes as they age, with alterations in leaf cell anatomy and nitrogen content influencing CO2 assimilation and stomatal conductance. Changes in leaf cell anatomical and physiological characteristics in aging leaves contribute to the gradual dismantling of photosynthetic apparatus.

TREE PHYSIOLOGY (2022)

Article Biology

Expression of a CO2-permeable aquaporin enhances mesophyll conductance in the C4 species Setaria viridis

Maria Ermakova et al.

Summary: The study found that SiPIP2;7 from foxtail millet is a CO2-permeable aquaporin that enhances the diffusion of CO2 in C-4 photosynthesis.

ELIFE (2021)

Article Plant Sciences

Mesophyll conductance in two cultivars of wheat grown in glacial to super-elevated CO2 concentrations

Eisrat Jahan et al.

Summary: Mesophyll conductance (g(m)) is a crucial factor in limiting photosynthesis, yet its response to long-term growth in variable [CO2] conditions depends on water stress, particularly in crop plants. Plants with higher g m may increase photosynthetic rates (A) without increasing stomatal conductance (g(sc), thereby improving water-use efficiency (WUE).

JOURNAL OF EXPERIMENTAL BOTANY (2021)

Article Biology

CO2 diffusion in tobacco: a link between mesophyll conductance and leaf anatomy

Victoria C. Clarke et al.

Summary: As leaves age and move lower in the canopy, the CO2 assimilation rate and mesophyll conductance both decrease, and are associated with anatomical changes in the leaves.

INTERFACE FOCUS (2021)

Review Plant Sciences

Mesophyll conductance: walls, membranes and spatial complexity

John R. Evans

Summary: Mesophyll tissue inside leaves imposes a significant resistance to CO2 diffusion, affecting the rate of carbon assimilation. Mesophyll conductance, gm, depends on factors such as chloroplast exposure, cell wall properties, and membrane CO2 permeability. The lack of measurements for these parameters and the low CO2 permeability values raise caution in drawing conclusions from modeling studies.

NEW PHYTOLOGIST (2021)

Review Biochemistry & Molecular Biology

Mesophyll conductance: the leaf corridors for photosynthesis

Jorge Gago et al.

BIOCHEMICAL SOCIETY TRANSACTIONS (2020)

Editorial Material Plant Sciences

From green to gold: agricultural revolution for food security

John R. Evans et al.

JOURNAL OF EXPERIMENTAL BOTANY (2020)

Article Plant Sciences

Cell wall properties in Oryza sativa influence mesophyll CO2 conductance

Patricia Ellsworth et al.

NEW PHYTOLOGIST (2018)

Article Environmental Sciences

Effect of Drought on Agronomic Traits of Rice and Wheat: A Meta-Analysis

Jinmeng Zhang et al.

INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH (2018)

Article Biodiversity Conservation

Climate trends account for stalled wheat yields in Australia since 1990

Zvi Hochman et al.

GLOBAL CHANGE BIOLOGY (2017)

Article Plant Sciences

Improved analysis of C4 and C3 photosynthesis via refined in vitro assays of their carbon fixation biochemistry

Robert E. Sharwood et al.

JOURNAL OF EXPERIMENTAL BOTANY (2016)

Article Plant Sciences

Variation in mesophyll conductance among Australian wheat genotypes

Eisrat Jahan et al.

FUNCTIONAL PLANT BIOLOGY (2014)

Article Agronomy

Temperature sensitivity of soil and root respiration in contrasting soils

Alice Thurgood et al.

PLANT AND SOIL (2014)

Article Plant Sciences

Temperature response of carbon isotope discrimination and mesophyll conductance in tobacco

John R. Evans et al.

PLANT CELL AND ENVIRONMENT (2013)

Review Plant Sciences

Regulation of leaf hydraulics: from molecular to whole plant levels

Karine Prado et al.

FRONTIERS IN PLANT SCIENCE (2013)

Review Agronomy

Prospects of doubling global wheat yields

Malcolm Hawkesford et al.

FOOD AND ENERGY SECURITY (2013)

Article Plant Sciences

The Arabidopsis aquaporin PIP1;2 rules cellular CO2 uptake

Norbert Uehlein et al.

PLANT CELL AND ENVIRONMENT (2012)

Article Plant Sciences

Ternary effects on the gas exchange of isotopologues of carbon dioxide

Graham D. Farquhar et al.

PLANT CELL AND ENVIRONMENT (2012)

Review Biochemistry & Molecular Biology

Mesophyll diffusion conductance to CO2: An unappreciated central player in photosynthesis

Jaume Flexas et al.

PLANT SCIENCE (2012)

Article Plant Sciences

Responses to water stress of gas exchange and metabolites in Eucalyptus and Acacia spp.

Charles R. Warren et al.

PLANT CELL AND ENVIRONMENT (2011)

Review Plant Sciences

Resistances along the CO2 diffusion pathway inside leaves

John R. Evans et al.

JOURNAL OF EXPERIMENTAL BOTANY (2009)

Article Plant Sciences

Variation of photosynthetic capacity with leaf age in an alpine orchid, Cypripedium flavum

S. B. Zhang et al.

ACTA PHYSIOLOGIAE PLANTARUM (2008)

Review Plant Sciences

Plant aquaporins: Membrane channels with multiple integrated functions

Christophe Maurel et al.

ANNUAL REVIEW OF PLANT BIOLOGY (2008)

Article Agriculture, Multidisciplinary

Quantitative trait loci for water-soluble carbohydrates and associations with agronomic traits in wheat

G. J. Rebetzke et al.

AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH (2008)

Review Plant Sciences

Mesophyll conductance to CO2:: current knowledge and future prospects

Jaume Flexas et al.

PLANT CELL AND ENVIRONMENT (2008)

Article Plant Sciences

Mesophyll conductance to CO2 in Arabidopsis thaliana

J. Flexas et al.

NEW PHYTOLOGIST (2007)

Review Plant Sciences

The temperature response of C-3 and C-4 photosynthesis

Rowan F. Sage et al.

PLANT CELL AND ENVIRONMENT (2007)

Article Plant Sciences

Tobacco aquaporin NtAQP1 is involved in mesophyll conductance to CO2 in vivo

Jaume Flexas et al.

PLANT JOURNAL (2006)

Article Plant Sciences

Carbonic anhydrase in leaves during radish plant ontogeny and glucose effect

N. S. Novichkova et al.

RUSSIAN JOURNAL OF PLANT PHYSIOLOGY (2006)

Article Forestry

Why does photosynthesis decrease with needle age in Pinus pinaster?

CR Warren

TREES-STRUCTURE AND FUNCTION (2006)

Article Plant Sciences

Internal conductance to CO2 diffusion and C18OO discrimination in C3 leaves

JS Gillon et al.

PLANT PHYSIOLOGY (2000)