Please use this identifier to cite or link to this item: https://repositorio.inpa.gov.br/handle/1/16277
Title: Drought responses of flood-tolerant trees in Amazonian floodplains
Authors: Parolin, Pia
Lucas, Christine M.
Piedade, Maria Teresa Fernandez
Wittmann, Florian Karl
Keywords: Climate Change
Drought Resistance
Floodplain
Forest Ecosystem
Growth Rate
Growth Response
Mortality
Phenology
Photosynthesis
Population Distribution
Precipitation (climatology)
Respiration
Seedling Establishment
Water Level
Drought
Ecosystem
Germination
Growth, Development And Aging
Metabolism
Photosynthesis
Stress, Physiological
Physiology
Plant Leaf
Review
Season
Tree
Wetland
Droughts
Ecosystem
Germination
Photosynthesis
Plant Leaves
Seasons
Stress, Physiological
Trees
Wetlands
Amazonia
Issue Date: 2010
metadata.dc.publisher.journal: Annals of Botany
metadata.dc.relation.ispartof: Volume 105, Número 1, Pags. 129-139
Abstract: Background Flood-tolerant tree species of the Amazonian floodplain forests are subjected to an annual dry period of variable severity imposed when low river-water levels coincide with minimal precipitation. Although the responses of these species to flooding have been examined extensively, their responses to drought, in terms of phenology, growth and physiology, have been neglected hitherto, although some information is found in publications that focus on flooding.ScopeThe present review examines the dry phase of the annual flooding cycle. It consolidates existing knowledge regarding responses to drought among adult trees and seedlings of many Amazonian floodplain species.Main FindingsFlood-tolerant species display variable physiological responses to dry periods and drought that indicate desiccation avoidance, such as reduced photosynthetic activity and reduced root respiration. However, tolerance and avoidance strategies for drought vary markedly among species. Drought can substantially decrease growth, biomass and photosynthetic activity among seedlings in field and laboratory studies. When compared with the responses to flooding, drought can impose higher seedling mortality and slower growth rates, especially among evergreen species. Results indicate that tolerance and avoidance strategies for drought vary markedly between species. Both seedling recruitment and photosynthetic activity are affected by drought,ConclusionsFor many species, the effects of drought can be as important as flooding for survival and growth, particularly at the seedling phase of establishment, ultimately influencing species composition. In the context of climate change and predicted decreases in precipitation in the Amazon Basin, the effects of drought on plant physiology and species distribution in tropical floodplain forest ecosystems should not be overlooked.
metadata.dc.identifier.doi: 10.1093/aob/mcp258
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