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Elevation and intraseasonal variation of in situ photosynthesis in high-Andean peatland (bofedal) species of central Chile

作者:Rodrigo Viveros, Patricia L. Sáez, Lohengrin A. Cavieres · 发表于:Environmental and Experimental Botany · 年份:2026 · DOI:10.1016/j.envexpbot.2026.106368 · 研究领域:Plant Water Relations and Carbon Dynamics、Remote Sensing in Agriculture、Peatlands and Wetlands Ecology

Alpine ecosystems present significant challenges for plant photosynthesis due to fluctuating temperatures, water availability, and reduced CO₂ partial pressure at higher elevations. We studied the photosynthetic and leaf morphological responses of three high-Andean (alpine) wetland species: Colobanthus quitensis , Oxychloe andina , and Plantago barbata early and late in the growing season, at two sites at different elevations (2600 m and 3550 m a.s.l.). We hypothesized that the decrease in temperature towards higher elevation and the end of the growing season will result in higher leaf mass area (LMA) and lower mesophyll conductance (g m ), increasing the diffusional limitation of CO₂ and reducing photosynthetic rates (A N ). Results indicate that plants in the low-elevation site exhibited significant reductions in A N and g m late in the growing season. In contrast, plants in the high-elevation site maintain stable A N , highlighting adaptations to cooler climates. While LMA increased across species at the end of the growing season, it showed low correlation with A N . Instead, g m emerged as the dominant diffusional component within the Harley-based framework. Species-specific strategies were observed, with higher LMA buffering O. andina against environmental stress, while low-LMA species ( C. quitensis and P. barbata ) were more sensitive to thermal variability. These findings emphasize g m as an important factor mediating photosynthetic adaptation in Andean plants and hig...