Seagrasses need to withstand hydrodynamic forces; therefore, mechanical properties such as flexibility or breaking resistance are beneficial for survival. The co-variation of leaf breaking properties with biochemical traits in seagrasses has been documented, but it is unknown if the same patterns apply to leaf flexural properties. To interpret changes in the ecological function of seagrass ecosystems based on acclimation responses to environmental changes, it is necessary to understand the factors that affect flexural leaf properties. Here, morphological and flexural leaf properties of the perennial type of Zostera marina across different environmental conditions along European Atlantic climate regions are presented together with C:N ratio ...
Seagrasses are exposed to the constant risk of structural damage due to abiotic factors, such as wav...
Intertidal seagrass meadows are exposed to both marine and terrestrial environmental constraints. Se...
Seagrasses are submerged or intertidal angiosperms that form extensive meadows in shallow coastal wa...
Seagrasses need to withstand hydrodynamic forces; therefore, mechanical properties such as flexibili...
Seagrasses are marine flowering plants distributed worldwide. They are however threatened, mostly du...
Knowledge of plant mechanical traits is important in understanding how plants resist abiotic and bio...
ABSTRACT: Knowledge of plant mechanical traits is important in understanding how plants resist abiot...
Seagrasses may acclimate to environmental heterogeneity through phenotypic plasticity. In contrast ...
Leaf mechanical traits are important to understand how aquatic plants fracture and deform when subje...
This dataset contains leaves mechanical, morphological and physiological traits for the seagrass Zos...
Leaf mechanical traits are important to understand how aquatic plants fracture and deform when subje...
Seagrasses are exposed to the constant risk of structural damage due to abiotic factors, such as wa...
37 pages, 3 tables, 10 figuresZostera marina is the most dominant seagrass species in temperate regi...
Seagrasses are acknowledged to have large morphological plasticity in relation to environmental cond...
Although seagrasses experience strong hydrodynamic forces, little is known about their biomechanical...
Seagrasses are exposed to the constant risk of structural damage due to abiotic factors, such as wav...
Intertidal seagrass meadows are exposed to both marine and terrestrial environmental constraints. Se...
Seagrasses are submerged or intertidal angiosperms that form extensive meadows in shallow coastal wa...
Seagrasses need to withstand hydrodynamic forces; therefore, mechanical properties such as flexibili...
Seagrasses are marine flowering plants distributed worldwide. They are however threatened, mostly du...
Knowledge of plant mechanical traits is important in understanding how plants resist abiotic and bio...
ABSTRACT: Knowledge of plant mechanical traits is important in understanding how plants resist abiot...
Seagrasses may acclimate to environmental heterogeneity through phenotypic plasticity. In contrast ...
Leaf mechanical traits are important to understand how aquatic plants fracture and deform when subje...
This dataset contains leaves mechanical, morphological and physiological traits for the seagrass Zos...
Leaf mechanical traits are important to understand how aquatic plants fracture and deform when subje...
Seagrasses are exposed to the constant risk of structural damage due to abiotic factors, such as wa...
37 pages, 3 tables, 10 figuresZostera marina is the most dominant seagrass species in temperate regi...
Seagrasses are acknowledged to have large morphological plasticity in relation to environmental cond...
Although seagrasses experience strong hydrodynamic forces, little is known about their biomechanical...
Seagrasses are exposed to the constant risk of structural damage due to abiotic factors, such as wav...
Intertidal seagrass meadows are exposed to both marine and terrestrial environmental constraints. Se...
Seagrasses are submerged or intertidal angiosperms that form extensive meadows in shallow coastal wa...