The physiological viability of bathymetric range shifts in marine ectotherms

Organisms occupying an environment where change is occurring must move, acclimatise, or adapt in order to prevent extinction. Despite recent evidence, the potential for species to change their distribution range across depths is regularly overlooked as an alternative to well documented latitudinal s...

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Main Author: Morris, James Peter
Format: Thesis
Language:English
Published: 2015
Subjects:
Online Access:https://eprints.soton.ac.uk/378995/
https://eprints.soton.ac.uk/378995/1/JPMorris_PhD_Thesis_2015_Final_corrected.pdf
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spelling ftsouthampton:oai:eprints.soton.ac.uk:378995 2023-07-30T04:04:46+02:00 The physiological viability of bathymetric range shifts in marine ectotherms Morris, James Peter 2015-06-25 text https://eprints.soton.ac.uk/378995/ https://eprints.soton.ac.uk/378995/1/JPMorris_PhD_Thesis_2015_Final_corrected.pdf en English eng https://eprints.soton.ac.uk/378995/1/JPMorris_PhD_Thesis_2015_Final_corrected.pdf Morris, James Peter (2015) The physiological viability of bathymetric range shifts in marine ectotherms. University of Southampton, Ocean and Earth Science, Doctoral Thesis, 262pp. Thesis NonPeerReviewed 2015 ftsouthampton 2023-07-09T22:00:08Z Organisms occupying an environment where change is occurring must move, acclimatise, or adapt in order to prevent extinction. Despite recent evidence, the potential for species to change their distribution range across depths is regularly overlooked as an alternative to well documented latitudinal shifts. The aim of this thesis was to investigate the physiological viability of bathymetric range shifts by assessing the impacts of elevated hydrostatic pressure (HP) and changing temperature in two marine ectotherms: the shallow-water caridean shrimp Palaemonetes varians; and the continental slope-depth anomuran crab Lithodes maja. Gene biomarkers were characterised in both species and their transcriptional regulation was assessed by qPCR. Acute and long-term exposures revealed that elevated HP produced significant perturbations at the transcriptional level in P. varians, and were corroborated by measurements of behaviour and respiratory response. HP-associated pathologies were exacerbated by decreasing temperature, and ameliorated by increasing temperature. Results gave a novel insight into the hierarchy and kinetics of HP-induced stress responses, and suggested that the combination of HP and temperature, in part, determines the physiological limitations to bathymetric migration in shallow-water ectotherms. To further test the role of HP and temperature in setting depth distribution limits, gene biomarkers were characterised in a continental slope-depth crab Lithodes maja. Transcriptional regulation and respiration rate was quantified throughout larval ontogeny, and in mature adults. Early life stages showed HP tolerance beyond that of the species natural distribution limits. The observed HP tolerance window reduced through ontogeny. Reductions in HP tolerance with life stage may be analogous to established thermal tolerance reductions with ontogeny. Further, sustained HP exposures suggest that bathymetric range limits in L. maja are constrained by increased metabolic costs, nervous system sensitivities, and ... Thesis Lithodes maja University of Southampton: e-Prints Soton
institution Open Polar
collection University of Southampton: e-Prints Soton
op_collection_id ftsouthampton
language English
description Organisms occupying an environment where change is occurring must move, acclimatise, or adapt in order to prevent extinction. Despite recent evidence, the potential for species to change their distribution range across depths is regularly overlooked as an alternative to well documented latitudinal shifts. The aim of this thesis was to investigate the physiological viability of bathymetric range shifts by assessing the impacts of elevated hydrostatic pressure (HP) and changing temperature in two marine ectotherms: the shallow-water caridean shrimp Palaemonetes varians; and the continental slope-depth anomuran crab Lithodes maja. Gene biomarkers were characterised in both species and their transcriptional regulation was assessed by qPCR. Acute and long-term exposures revealed that elevated HP produced significant perturbations at the transcriptional level in P. varians, and were corroborated by measurements of behaviour and respiratory response. HP-associated pathologies were exacerbated by decreasing temperature, and ameliorated by increasing temperature. Results gave a novel insight into the hierarchy and kinetics of HP-induced stress responses, and suggested that the combination of HP and temperature, in part, determines the physiological limitations to bathymetric migration in shallow-water ectotherms. To further test the role of HP and temperature in setting depth distribution limits, gene biomarkers were characterised in a continental slope-depth crab Lithodes maja. Transcriptional regulation and respiration rate was quantified throughout larval ontogeny, and in mature adults. Early life stages showed HP tolerance beyond that of the species natural distribution limits. The observed HP tolerance window reduced through ontogeny. Reductions in HP tolerance with life stage may be analogous to established thermal tolerance reductions with ontogeny. Further, sustained HP exposures suggest that bathymetric range limits in L. maja are constrained by increased metabolic costs, nervous system sensitivities, and ...
format Thesis
author Morris, James Peter
spellingShingle Morris, James Peter
The physiological viability of bathymetric range shifts in marine ectotherms
author_facet Morris, James Peter
author_sort Morris, James Peter
title The physiological viability of bathymetric range shifts in marine ectotherms
title_short The physiological viability of bathymetric range shifts in marine ectotherms
title_full The physiological viability of bathymetric range shifts in marine ectotherms
title_fullStr The physiological viability of bathymetric range shifts in marine ectotherms
title_full_unstemmed The physiological viability of bathymetric range shifts in marine ectotherms
title_sort physiological viability of bathymetric range shifts in marine ectotherms
publishDate 2015
url https://eprints.soton.ac.uk/378995/
https://eprints.soton.ac.uk/378995/1/JPMorris_PhD_Thesis_2015_Final_corrected.pdf
genre Lithodes maja
genre_facet Lithodes maja
op_relation https://eprints.soton.ac.uk/378995/1/JPMorris_PhD_Thesis_2015_Final_corrected.pdf
Morris, James Peter (2015) The physiological viability of bathymetric range shifts in marine ectotherms. University of Southampton, Ocean and Earth Science, Doctoral Thesis, 262pp.
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