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April 7, 2026Plants0 citationsOpen Access

Quantifying Annual Photon Absorption in 55 Bamboo Species: A Standardized Modeling Approach Using Peak-Season Leaf Optical Traits and Long-Term Radiation Data

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CLChanglai LiuMWMengxiao WangFHFanfan He

Key Points

  • This research aims to quantify the photon absorption efficiency of bamboo leaves across various species using optical traits.
  • Measured reflectance and transmittance of bamboo leaves from 55 species.
  • Developed a mathematical model to calculate annual cumulative photon absorption of leaves.
  • Collected long-term radiation data to standardize assessments.
  • Bamboo leaves showed strong absorption of blue and red light, with variable green light absorption.
  • Annual photon absorption per unit leaf area ranged from 1.83 × 10^5 to 9.86 × 10^5 μmol.
  • Indocalamus decorus had the highest total absorption due to its large leaf area, while Bambusa multiplex had the lowest.

Abstract

To accurately quantify the intrinsic absorption efficiency of bamboo leaves to the solar spectrum, we measured the reflectance and transmittance of leaves from 55 bamboo species cultivated at the same site, and developed a mathematical model to calculate the annual cumulative photon absorption of photosynthetically active radiation (PAR) per leaf. The results showed the following: (1) Bamboo leaf optical properties exhibited high instrumental and spatial measurement consistency, with transmittance not significantly fluctuating with changes in incident light intensity or quality. (2) Bamboo leaves exhibited significant spectral selective absorption characteristics, with stronger absorption of blue and red light and weaker absorption of green light; Phyllostachys vivax had the highest mean absorptance per unit area, while Chimonobambusa tumidinoda had the lowest. (3) The annual photon absorption per unit leaf area ranged from 1.83 × 105 to 9.86 × 105 μmol, with Phyllostachys iridescens being the lowest and Chimonobambusa marmorea the highest. The annual photon absorption per single leaf ranged from 1.84 × 106 to 5.13 × 107 μmol, with Indocalamus decorus achieving the highest total absorption due to its largest leaf area (114.9 cm2), while Bambusa multiplex var. riviereorum was the lowest. (4) All tested bamboo species showed consistent seasonal dynamics in photon absorption, with the highest in summer and lowest in winter. Although unit-area absorptance reflects the intrinsic light interception efficiency, leaf morphology has a substantial influence (explaining 99.56% of the variance) in determining total light acquisition per leaf.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/69d49fe5b33cc4c35a228576https://doi.org/10.3390/plants15071105
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