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1.
Plant Cell Environ ; 41(7): 1618-1631, 2018 07.
Artículo en Inglés | MEDLINE | ID: mdl-29603771

RESUMEN

Given anticipated climate changes, it is crucial to understand controls on leaf temperatures including variation between species in diverse ecosystems. In the first study of leaf energy balance in tropical montane forests, we observed current leaf temperature patterns on 3 tree species in the Atlantic forest, Brazil, over a 10-day period and assessed whether and why patterns may vary among species. We found large leaf-to-air temperature differences (maximum 18.3 °C) and high leaf temperatures (over 35 °C) despite much lower air temperatures (maximum 22 °C). Leaf-to-air temperature differences were influenced strongly by radiation, whereas leaf temperatures were also influenced by air temperature. Leaf energy balance modelling informed by our measurements showed that observed differences in leaf temperature between 2 species were due to variation in leaf width and stomatal conductance. The results suggest a trade-off between water use and leaf thermoregulation; Miconia cabussu has more conservative water use compared with Alchornea triplinervia due to lower transpiration under high vapour pressure deficit, with the consequence of higher leaf temperatures under thermal stress conditions. We highlight the importance of leaf functional traits for leaf thermoregulation and also note that the high radiation levels that occur in montane forests may exacerbate the threat from increasing air temperatures.


Asunto(s)
Hojas de la Planta/fisiología , Árboles/fisiología , Regulación de la Temperatura Corporal/fisiología , Brasil , Metabolismo Energético , Euphorbiaceae/metabolismo , Euphorbiaceae/fisiología , Melastomataceae/metabolismo , Melastomataceae/fisiología , Nyctaginaceae/metabolismo , Nyctaginaceae/fisiología , Hojas de la Planta/metabolismo , Temperatura , Árboles/metabolismo , Agua/metabolismo
2.
Ecosphere ; 8(11): e02002, 2017 11.
Artículo en Inglés | MEDLINE | ID: mdl-29263939

RESUMEN

Light is the key energy input for all vegetated systems. Forest light regimes are complex, with the vertical pattern of light within canopies influenced by forest structure. Human disturbances in tropical forests impact forest structure and hence may influence the light environment and thus competitiveness of different trees. In this study, we measured vertical diffuse light profiles along a gradient of anthropogenic disturbance, sampling intact, logged, secondary, and fragmented sites in the biodiversity hot spot of the Atlantic forest, southeast Brazil, using photosynthetically active radiation sensors and a novel approach with estimations of vertical light profiles from hemispherical photographs. Our results show clear differences in vertical light profiles with disturbance: Fragmented forests are characterized by rapid light extinction within their low canopies, while the profiles in logged forests show high heterogeneity and high light in the mid-canopy despite decades of recovery. The secondary forest showed similar light profiles to intact forest, but with a lower canopy height. We also show that in some cases the upper canopy layer and heavy liana infestations can severely limit light penetration. Light extinction with height above the ground and depth below the canopy top was highest in fragmented forest and negatively correlated with canopy height. The novel, inexpensive, and rapid methods described here can be applied to other sites to quantify rarely measured vertical light profiles.

3.
Science ; 302(5650): 1554-7, 2003 Nov 28.
Artículo en Inglés | MEDLINE | ID: mdl-14645845

RESUMEN

The net ecosystem exchange of carbon dioxide was measured by eddy covariance methods for 3 years in two old-growth forest sites near Santarém, Brazil. Carbon was lost in the wet season and gained in the dry season, which was opposite to the seasonal cycles of both tree growth and model predictions. The 3-year average carbon loss was 1.3 (confidence interval: 0.0 to 2.0) megagrams of carbon per hectare per year. Biometric observations confirmed the net loss but imply that it is a transient effect of recent disturbance superimposed on long-term balance. Given that episodic disturbances are characteristic of old-growth forests, it is likely that carbon sequestration is lower than has been inferred from recent eddy covariance studies at undisturbed sites.


Asunto(s)
Dióxido de Carbono/análisis , Carbono/análisis , Ecosistema , Estaciones del Año , Árboles , Brasil , Carbono/metabolismo , Dióxido de Carbono/metabolismo , Intervalos de Confianza , Consumo de Oxígeno , Fotosíntesis , Lluvia , Árboles/crecimiento & desarrollo , Árboles/metabolismo , Madera
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