Javascript must be enabled to continue!
Trait coordination and trade-offs constrain the diversity of water use strategies in Mediterranean woody plants
View through CrossRef
Abstract
Exploring the diversity of above and belowground water-use traits among coexisting plant species can improve understanding of soil water partitioning in species-rich plant communities and provide insights into how dryland vegetation copes with drought stress. We assessed the diversity of plant water use strategies among coexisting woody species at 10 Mediterranean ecosystems with contrasting climatic conditions (62 species in total). Soil and stem water isotopic composition (ẟ18O, δ2H) were measured to estimate plant water uptake depth using Bayesian mixing models, while leaf carbon and oxygen isotopes (ẟ13C, Δ18O) and the ratio of leaf area to sapwood area of terminal shoots were used as time-integrative proxies of intrinsic water use efficiency, stomatal conductance, and plant investment in foliage relative to woody stems, respectively. We found that distinct vertical ecohydrological niche segregation, driven by differences in water uptake depth among coexisting species, is widespread and ubiquitous across all sites. Leaf-level stomatal regulation stringency and water use efficiency also differ widely among coexisting woody species and are both coordinated with water uptake depth across species and life forms. Within Mediterranean plant communities, larger woody species use deeper soil water sources and exhibit more conservative, water-saver strategies at leaf level coupled to greater investment in foliage relative to sapwood. In contrast, smaller woody species within the same plant communities rely on shallower soil water sources and exhibit a more profligate, water-spender strategy at leaf-level coupled to lower investment in foliage relative to sapwood. We conclude that drought and heat stress in Mediterranean ecosystems favour tight coupling and coordination between multiple above and belowground water use traits, resulting in possibly unavoidable trade-offs that constrain the diversity of whole-plant water-use strategies that are ecologically and physiologically feasible in native plant communities.
Springer Science and Business Media LLC
Title: Trait coordination and trade-offs constrain the diversity of water use strategies in Mediterranean woody plants
Description:
Abstract
Exploring the diversity of above and belowground water-use traits among coexisting plant species can improve understanding of soil water partitioning in species-rich plant communities and provide insights into how dryland vegetation copes with drought stress.
We assessed the diversity of plant water use strategies among coexisting woody species at 10 Mediterranean ecosystems with contrasting climatic conditions (62 species in total).
Soil and stem water isotopic composition (ẟ18O, δ2H) were measured to estimate plant water uptake depth using Bayesian mixing models, while leaf carbon and oxygen isotopes (ẟ13C, Δ18O) and the ratio of leaf area to sapwood area of terminal shoots were used as time-integrative proxies of intrinsic water use efficiency, stomatal conductance, and plant investment in foliage relative to woody stems, respectively.
We found that distinct vertical ecohydrological niche segregation, driven by differences in water uptake depth among coexisting species, is widespread and ubiquitous across all sites.
Leaf-level stomatal regulation stringency and water use efficiency also differ widely among coexisting woody species and are both coordinated with water uptake depth across species and life forms.
Within Mediterranean plant communities, larger woody species use deeper soil water sources and exhibit more conservative, water-saver strategies at leaf level coupled to greater investment in foliage relative to sapwood.
In contrast, smaller woody species within the same plant communities rely on shallower soil water sources and exhibit a more profligate, water-spender strategy at leaf-level coupled to lower investment in foliage relative to sapwood.
We conclude that drought and heat stress in Mediterranean ecosystems favour tight coupling and coordination between multiple above and belowground water use traits, resulting in possibly unavoidable trade-offs that constrain the diversity of whole-plant water-use strategies that are ecologically and physiologically feasible in native plant communities.
Related Results
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
BACKGROUND
Access to potable drinking water and sufficient sanitation continues to be an urgent global concern, particularly in developing regions where con...
Woody Oil Crops: Key Trait Formation and Regulation
Woody Oil Crops: Key Trait Formation and Regulation
Woody oil crops are perennial crops producing fruits or seeds with high oil contents, such as oil olive, oil Camellia, walnut et al. Woody oil crops usually distribute in lands not...
Pareto fronts reveal constraints on the evolution of niche-determining traits in phytoplankton
Pareto fronts reveal constraints on the evolution of niche-determining traits in phytoplankton
Abstract
Trade-offs are central to biodiversity because they prevent the emergence of dominant phenotypes by limiting the simultaneous optimizati...
Incidence of Maternal and Perinatal Morbidity in Sickle Cell Disease and Sickle Cell Trait Patients during Pregnancy
Incidence of Maternal and Perinatal Morbidity in Sickle Cell Disease and Sickle Cell Trait Patients during Pregnancy
Background:
Sickle cell disease (SCD) patients have a higher risk of maternal and neonatal morbidity during pregnancy than the general population. Pregnancy in SCD i...
Use of Formation Water and Associated Gases and their Simultaneous Utilization for Obtaining Microelement Concentrates Fresh Water and Drinking Water
Use of Formation Water and Associated Gases and their Simultaneous Utilization for Obtaining Microelement Concentrates Fresh Water and Drinking Water
Abstract Purpose: The invention relates to the oil industry, inorganic chemistry, in particular, to the methods of complex processing of formation water, using flare gas of oil and...
Analysis of the current situation of agricultural trade development between China and Ukraine
Analysis of the current situation of agricultural trade development between China and Ukraine
Purpose. As a European granary, Ukraine has rich agricultural resources. China is a country with a large population and has a large demand for food. However, the agricultural trade...
Quantification of Woody Biomass Available for Wood Harvesting and Sequestration in the Continental United States – a Top-Down Approach
Quantification of Woody Biomass Available for Wood Harvesting and Sequestration in the Continental United States – a Top-Down Approach
Abstract
Background: Wood Harvesting and Sequestration is a form of Carbon Removal and Storage (CRS) that utilizes a combined natural and engineered process to harvest wood...
Identification of flux trade-offs in metabolic networks
Identification of flux trade-offs in metabolic networks
AbstractTrade-offs are inherent to biochemical networks governing diverse cellular functions, from gene expression to metabolism. Yet, trade-offs between fluxes of biochemical reac...

