The impact of climate change on intertidal species, camouflage and predation

To understand the impact of climate change on ecosystems we need to know not only how individual species will be affected, but also the relationships between them. Predator-prey relationships determine the structure and function of ecosystems worldwide, governing the abundance of populations, the di...

Full description

Bibliographic Details
Main Author: Mynott, S
Other Authors: Widdicombe, S, Wilson, A, Stevens, M
Format: Doctoral or Postdoctoral Thesis
Language:unknown
Published: University of Exeter 2019
Subjects:
Online Access:http://hdl.handle.net/10871/37442
id ftunivexeter:oai:ore.exeter.ac.uk:10871/37442
record_format openpolar
spelling ftunivexeter:oai:ore.exeter.ac.uk:10871/37442 2024-09-15T18:28:24+00:00 The impact of climate change on intertidal species, camouflage and predation Mynott, S Widdicombe, S Wilson, A Stevens, M 2019 http://hdl.handle.net/10871/37442 unknown University of Exeter Centre for Ecology and Conservation, Biological Sciences http://hdl.handle.net/10871/37442 http://www.rioxx.net/licenses/all-rights-reserved climate change marine predation sensory ecology acidification warming intertidal crustacean crab prawn lobster colour change camouflage Thesis or dissertation PhD in Biological Sciences Doctoral Doctoral Thesis 2019 ftunivexeter 2024-07-29T03:24:16Z To understand the impact of climate change on ecosystems we need to know not only how individual species will be affected, but also the relationships between them. Predator-prey relationships determine the structure and function of ecosystems worldwide, governing the abundance of populations, the distribution of different species within habitats and, ultimately, the composition of communities. Many predator-prey relationships are shifting as a result of environmental change, with climate change causing both mismatches in the abundance and distribution of species and changes in predator and prey behaviour. However, few studies have addressed how climate change might impact the interactions between species, particularly the development of anti-predator defences, which enable prey to limit their predation risk. One of the most widespread defences in nature is camouflage, with many species capable of changing colour to match their background to avoid being seen and eaten. The impact of climate change on this process is largely unknown, save for studies on species that exhibit seasonal changes in coloration. Using behavioural assays with predatory rock gobies (Gobius paganellus) and chameleon prawn prey (Hippolyte varians), I first demonstrate how background matching affects survival, shedding light on the fitness benefits of camouflage. Building on this fundamental understanding, this project explores how defensive coloration may be affected by anthropogenic climate change. Through a series of laboratory studies I test what impact ocean warming and ocean acidification have on the development of camouflage in intertidal crustaceans (chameleon prawns and common shore crabs, Carcinus maenas). Camouflage is modelled according to the visual systems of relevant predators, allowing us to understand what implications their coloration has for detectability, predation risk, and associated trophic links. Finally, this project investigates how camouflage can be applied to conservation and aquaculture. By rearing juvenile ... Doctoral or Postdoctoral Thesis Ocean acidification University of Exeter: Open Research Exeter (ORE)
institution Open Polar
collection University of Exeter: Open Research Exeter (ORE)
op_collection_id ftunivexeter
language unknown
topic climate change
marine
predation
sensory
ecology
acidification
warming
intertidal
crustacean
crab
prawn
lobster
colour change
camouflage
spellingShingle climate change
marine
predation
sensory
ecology
acidification
warming
intertidal
crustacean
crab
prawn
lobster
colour change
camouflage
Mynott, S
The impact of climate change on intertidal species, camouflage and predation
topic_facet climate change
marine
predation
sensory
ecology
acidification
warming
intertidal
crustacean
crab
prawn
lobster
colour change
camouflage
description To understand the impact of climate change on ecosystems we need to know not only how individual species will be affected, but also the relationships between them. Predator-prey relationships determine the structure and function of ecosystems worldwide, governing the abundance of populations, the distribution of different species within habitats and, ultimately, the composition of communities. Many predator-prey relationships are shifting as a result of environmental change, with climate change causing both mismatches in the abundance and distribution of species and changes in predator and prey behaviour. However, few studies have addressed how climate change might impact the interactions between species, particularly the development of anti-predator defences, which enable prey to limit their predation risk. One of the most widespread defences in nature is camouflage, with many species capable of changing colour to match their background to avoid being seen and eaten. The impact of climate change on this process is largely unknown, save for studies on species that exhibit seasonal changes in coloration. Using behavioural assays with predatory rock gobies (Gobius paganellus) and chameleon prawn prey (Hippolyte varians), I first demonstrate how background matching affects survival, shedding light on the fitness benefits of camouflage. Building on this fundamental understanding, this project explores how defensive coloration may be affected by anthropogenic climate change. Through a series of laboratory studies I test what impact ocean warming and ocean acidification have on the development of camouflage in intertidal crustaceans (chameleon prawns and common shore crabs, Carcinus maenas). Camouflage is modelled according to the visual systems of relevant predators, allowing us to understand what implications their coloration has for detectability, predation risk, and associated trophic links. Finally, this project investigates how camouflage can be applied to conservation and aquaculture. By rearing juvenile ...
author2 Widdicombe, S
Wilson, A
Stevens, M
format Doctoral or Postdoctoral Thesis
author Mynott, S
author_facet Mynott, S
author_sort Mynott, S
title The impact of climate change on intertidal species, camouflage and predation
title_short The impact of climate change on intertidal species, camouflage and predation
title_full The impact of climate change on intertidal species, camouflage and predation
title_fullStr The impact of climate change on intertidal species, camouflage and predation
title_full_unstemmed The impact of climate change on intertidal species, camouflage and predation
title_sort impact of climate change on intertidal species, camouflage and predation
publisher University of Exeter
publishDate 2019
url http://hdl.handle.net/10871/37442
genre Ocean acidification
genre_facet Ocean acidification
op_relation http://hdl.handle.net/10871/37442
op_rights http://www.rioxx.net/licenses/all-rights-reserved
_version_ 1810469757183328256