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◆ Nature communications2026-08-21

Optimal canopy light-use strategy shapes global greenness dynamics.

Ziqi Zhu, Han Wang, Boya Zhou, Wenjia Cai, Sandy P Harrison, Martin G De Kauwe, I Colin Prentice

原始摘要(英文原文)· Original abstract
"Greenness" is a key indicator of the functional state of vegetation. However, the physiological processes behind seasonal patterns in greenness are diverse and incompletely understood, hindering the predictability of climate-driven shifts in global foliage phenology. Optimality principles suggest that plants invest in canopy architecture to maximize light capture. Therefore, we hypothesize that, irrespective of specific physiological mechanisms, greenness (fAPAR: fractional canopy light absorption) commonly tracks the seasonal dynamics of potential production (A0: theoretical canopy carbon uptake with all light absorbed). In other words, plants tend to display foliage when it is most productive. We show that observations confirm this hypothesis and develop a model predicting fAPAR from the seasonal cycle of A0, with a phenological lag that increases (from 2 weeks to 3 months) with increasing moisture. This model captures 81% of observed variations in fAPAR and shows that light and environmentally regulated biophysical constraints shape global patterns of vegetation greenness, its seasonal cycle, and its recent increase.
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Optimal canopy light-use strategy shapes global greenness dynamics. — 科研速览 Science Skim