1. Autogenic ecosystem engineers often provide cool microhabitats which are used by associated organisms to reduce thermal extremes. The value of such habitats is, however, dependent on key structural traits of the ecosystem engineer, and the intensity and duration of thermal exposure. 2. Using an experimental mesocosm that mimicked the rocky intertidal environment, we assessed how the spatial configuration of the habitat formed by an autogenic ecosystem engineer, the oyster, influences its capacity to mitigate heat stress experienced by invertebrates during simulated emersion periods on tropical, Hong Kong rocky shores. 3. At the average temperature experienced during summer low tides, oyster habitat ameliorated environmental and organis...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Securing economically and ecologically significant oyster species, as our oceans warm and acidify fr...
1.Autogenic ecosystem engineers often provide cool microhabitats which are used by associated organi...
1.Ecosystem engineers that modify the thermal environment experienced by associated organisms might ...
Ecological theory predicts that positive interactions among organisms will increase across gradients...
Thesis by publication.Includes bibliographical references.Chapter 1. General introduction -- Chapter...
The paradigmatic gradient for intertidal marine organisms of increasing physical stress from low to ...
<p>Structure-building, autogenic ecosystem engineers are recognized worldwide as potential tools for...
Securing economically and ecologically significant molluscs, as our oceans warm due to climate chang...
As environmental stress increases due to climate change, species and the ecological communities that...
Human activities and climate change are causing irreversible changes in almost all marine environmen...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Empirical thesis.Includes bibliographical references.Chapter 1. General introduction -- Chapter 2. T...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Securing economically and ecologically significant oyster species, as our oceans warm and acidify fr...
1.Autogenic ecosystem engineers often provide cool microhabitats which are used by associated organi...
1.Ecosystem engineers that modify the thermal environment experienced by associated organisms might ...
Ecological theory predicts that positive interactions among organisms will increase across gradients...
Thesis by publication.Includes bibliographical references.Chapter 1. General introduction -- Chapter...
The paradigmatic gradient for intertidal marine organisms of increasing physical stress from low to ...
<p>Structure-building, autogenic ecosystem engineers are recognized worldwide as potential tools for...
Securing economically and ecologically significant molluscs, as our oceans warm due to climate chang...
As environmental stress increases due to climate change, species and the ecological communities that...
Human activities and climate change are causing irreversible changes in almost all marine environmen...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Empirical thesis.Includes bibliographical references.Chapter 1. General introduction -- Chapter 2. T...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Fine-scale adaptive evolution is always constrained by strong gene flow at vertical level in marine ...
Securing economically and ecologically significant oyster species, as our oceans warm and acidify fr...