Halophytes, such as seagrasses, predominantly form habitats in coastal and estuarine areas. These habitats can be seasonally exposed to hypo-salinity events during watershed runoff exposing them to dramatic salinity shifts and osmotic shock. The manifestation of this osmotic shock on seagrass morphology and phenology was tested in three Indo-Pacific seagrass species, Halophila ovalis, Halodule uninervis and Zostera muelleri, to hypo-salinity ranging from 3 to 36 PSU at 3 PSU increments for 10 weeks. All three species had broad salinity tolerance but demonstrated a moderate hypo-salinity stress response – analogous to a stress induced morphometric response (SIMR). Shoot proliferation occurred at salinities <30 PSU, with the largest increases...
The limiting effects of stressors like desiccation, light and salinity on seagrass growth and distri...
Seagrasses are globally declining and often their loss is due to synergies among stressors. We inves...
Extreme climate events are predicted to alter estuarine salinity gradients exposing habitat-forming ...
Halophytes, such as seagrasses, predominantly form habitats in coastal and estuarine areas. These ha...
Halophytes, such as seagrasses, predominantly form habitats in coastal and estuarine areas. These ha...
Halophytes, such as seagrasses, predominantly form habitats in coastal and estuarine areas. These ha...
<p>High (marine, 36 PSU) salinities are “optimum”, as shoot density steadily increased throughout th...
Halophila beccarii Ascherson is classified as a threatened seagrass species by IUCN because of the r...
Understanding how multiple environmental stressors interact to affect seagrass health (measured as m...
Halophila beccarii Aschers., a small monoecious seagrass with rosette leafy shoot and well-developed...
The limiting effects of stressors like desiccation, light and salinity on seagrass growth and distri...
Understanding how multiple environmental stressors interact to affect seagrass health (measured as m...
The limiting effects of stressors like desiccation, light and salinity on seagrass growth and distri...
The aim of this study is to examine the effects of variations in salinity levels on growth and survi...
The effects of salinity, temperature, and pH variations on growth, survival, and photosynthetic rate...
The limiting effects of stressors like desiccation, light and salinity on seagrass growth and distri...
Seagrasses are globally declining and often their loss is due to synergies among stressors. We inves...
Extreme climate events are predicted to alter estuarine salinity gradients exposing habitat-forming ...
Halophytes, such as seagrasses, predominantly form habitats in coastal and estuarine areas. These ha...
Halophytes, such as seagrasses, predominantly form habitats in coastal and estuarine areas. These ha...
Halophytes, such as seagrasses, predominantly form habitats in coastal and estuarine areas. These ha...
<p>High (marine, 36 PSU) salinities are “optimum”, as shoot density steadily increased throughout th...
Halophila beccarii Ascherson is classified as a threatened seagrass species by IUCN because of the r...
Understanding how multiple environmental stressors interact to affect seagrass health (measured as m...
Halophila beccarii Aschers., a small monoecious seagrass with rosette leafy shoot and well-developed...
The limiting effects of stressors like desiccation, light and salinity on seagrass growth and distri...
Understanding how multiple environmental stressors interact to affect seagrass health (measured as m...
The limiting effects of stressors like desiccation, light and salinity on seagrass growth and distri...
The aim of this study is to examine the effects of variations in salinity levels on growth and survi...
The effects of salinity, temperature, and pH variations on growth, survival, and photosynthetic rate...
The limiting effects of stressors like desiccation, light and salinity on seagrass growth and distri...
Seagrasses are globally declining and often their loss is due to synergies among stressors. We inves...
Extreme climate events are predicted to alter estuarine salinity gradients exposing habitat-forming ...