Cystoliths in Ficus leaves: increasing carbon fixation in saturating light by light scattering off a mineral substrate
Pierantoni, M.; Paudel, I.; Raphael, B.; Tenne, R.; Brumfeld, V.; Slomka, S.; Oron, D.; Addadi, L.; Weiner, S.; Klein, T.
Show abstract
The manner in which leaves adapt to different light intensities is key for enabling plants to survive in diverse environments and in constantly changing conditions. Many studies have addressed this subject, but little attention has been given to the effect that mineral deposits in leaves can have on photosynthesis. Here we study 6 species of Ficus and investigate how different cystolith configurations affect photosynthesis in both non-saturating and saturating light. We quantified the effect of light scattering by cystoliths on light absorption by measuring chlorophyll fluorescence intensity using microfluorimetry. We complement this by carbon assimilation measurements to directly estimate how light scattering by cystoliths affects the overall photosynthetic process. We show that light waste is reduced when irradiance is on a cystolith compared to cystolith free tissue. Moreover, light is channeled into the center of the leaf where photosynthesis occurs more efficiently than in the outer layers. This, in turn, leads to more efficient CO2 assimilation. We conclude that cystoliths contribute to photosynthesis optimization under saturating light. Cystoliths reduce the wasted portion of absorbed light under saturating irradiance by scattering light into the light-deprived leaf center. The increased efficiency may well provide important benefits to plants that form mineral scatterers.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Dissecting Succulence: Crassulacean Acid Metabolism and Hydraulic Capacitance are Independent Adaptations in Clusia Leaves 96%
- Sieve tube structural variation in Austrobaileya scandens and its significance for lianescence 96%
- Leaf cell wall properties and stomatal density influence oxygen isotope enrichment of leaf water 95%
Similar papers in this journal
- Smart Film Impacts Stomatal Sensitivity of Greenhouse Capsicum Through Altered Light 96%
- Intrinsic water use efficiency depends on stomatal aperture rather than stomatal density in C3 and C4 grasses grown at glacial CO2 and low light 96%
- Bulb growth potential is independent of leaf longevity for the spring ephemeral Erythronium americanum Ker-Gawl. 95%
Similar papers in this journal
- The impact of stomatal kinetics on diurnal photosynthesis and water use efficiency under fluctuating light 96%
- Altered cell wall hydroxycinnamate composition impacts leaf and canopy-level CO2-uptake and water-use in rice 95%
- Light quality signals generated by vegetation shade facilitate acclimation to reduced light quantity in shade-avoider plants 95%
Similar papers in this journal
- Phloem transport limitation in Huanglongbing affected sweet orange is dependent on phloem-limited bacteria and callose 95%
- Plasticity of the xylem vulnerability to embolism in poplar relies on quantitative pit properties rather than on pit structure 94%
- Unrevealing water and carbon relations during and after heat and hot drought stress in Pinus sylvestris 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.