Macroalgae and their Associated Communities: Chemical, Conservation, and Trophic Ecology

Marine macroalgae are ubiquitous across coastal oceans worldwide and provide critical habitat and services for diverse assemblages of organisms as well as services including fisheries production, carbon sequestration, and nutrient cycling. The effects of climate change are altering multiple aspects...

Full description

Bibliographic Details
Main Author: Whippo, Ross
Other Authors: Galloway, Aaron
Format: Thesis
Language:English
Published: University of Oregon 2024
Subjects:
Online Access:https://scholarsbank.uoregon.edu/xmlui/handle/1794/29186
id ftunivoregonsb:oai:scholarsbank.uoregon.edu:1794/29186
record_format openpolar
spelling ftunivoregonsb:oai:scholarsbank.uoregon.edu:1794/29186 2024-02-11T09:58:48+01:00 Macroalgae and their Associated Communities: Chemical, Conservation, and Trophic Ecology Whippo, Ross Galloway, Aaron 2024-01-09 application/pdf https://scholarsbank.uoregon.edu/xmlui/handle/1794/29186 en_US eng University of Oregon https://scholarsbank.uoregon.edu/xmlui/handle/1794/29186 All Rights Reserved. Antarctica invertebrates kelp forest macroalgae marine ecology trophic ecology Electronic Thesis or Dissertation 2024 ftunivoregonsb 2024-01-14T17:20:51Z Marine macroalgae are ubiquitous across coastal oceans worldwide and provide critical habitat and services for diverse assemblages of organisms as well as services including fisheries production, carbon sequestration, and nutrient cycling. The effects of climate change are altering multiple aspects of macroalgal community ecology including food web structure, organismal diversity, and community resilience. In this dissertation, I approach macroalgal community ecology on multiple scales, across broad geographic space, and through various analytical lenses to capture key insights into the functioning of macroalgal forests. In Chapter II I identify the unique fatty acid profiles and stable isotope content of 31 Antarctic macroalgae. While the phylogenetic differentiation driven by fatty acids has a stronger influence on distinguishing Antarctic macroalgae, the added dimension of stable isotopes can likely make the combination of the two approaches particularly powerful in the application of food web studies. In Chapter III I provide a summary of the effects of conservation areas on algal assemblages. I find that all targeted kelp species are observed across the marine reserves but their presence varies among sites and years. In Chapter IV I describe the feeding preferences of the sunflower seastar through meta-analysis and a cafeteria experiment. A total of 114 prey taxa are reported across all studies, with bivalves and urchins tending to be the primary observed prey items. This agrees with our cafeteria experiments that find Pycnopodia tended to prefer green and purple urchins, and mussels, although the quantity of each prey type consumed is highly variable. In Chapter V I provide evidence for non-consumptive effects of the sunflower seastar on grazing sea urchins. I find that the presence of a waterborne Pycnopodia cue reduces the grazing rate of fed urchins by 50% over short (~24 h) time scales. In contrast, starved urchins consume kelp and do not exhibit an escape response in the presence of a Pycnopodia cue. ... Thesis Antarc* Antarctic Antarctica University of Oregon Scholars' Bank Antarctic
institution Open Polar
collection University of Oregon Scholars' Bank
op_collection_id ftunivoregonsb
language English
topic Antarctica
invertebrates
kelp forest
macroalgae
marine ecology
trophic ecology
spellingShingle Antarctica
invertebrates
kelp forest
macroalgae
marine ecology
trophic ecology
Whippo, Ross
Macroalgae and their Associated Communities: Chemical, Conservation, and Trophic Ecology
topic_facet Antarctica
invertebrates
kelp forest
macroalgae
marine ecology
trophic ecology
description Marine macroalgae are ubiquitous across coastal oceans worldwide and provide critical habitat and services for diverse assemblages of organisms as well as services including fisheries production, carbon sequestration, and nutrient cycling. The effects of climate change are altering multiple aspects of macroalgal community ecology including food web structure, organismal diversity, and community resilience. In this dissertation, I approach macroalgal community ecology on multiple scales, across broad geographic space, and through various analytical lenses to capture key insights into the functioning of macroalgal forests. In Chapter II I identify the unique fatty acid profiles and stable isotope content of 31 Antarctic macroalgae. While the phylogenetic differentiation driven by fatty acids has a stronger influence on distinguishing Antarctic macroalgae, the added dimension of stable isotopes can likely make the combination of the two approaches particularly powerful in the application of food web studies. In Chapter III I provide a summary of the effects of conservation areas on algal assemblages. I find that all targeted kelp species are observed across the marine reserves but their presence varies among sites and years. In Chapter IV I describe the feeding preferences of the sunflower seastar through meta-analysis and a cafeteria experiment. A total of 114 prey taxa are reported across all studies, with bivalves and urchins tending to be the primary observed prey items. This agrees with our cafeteria experiments that find Pycnopodia tended to prefer green and purple urchins, and mussels, although the quantity of each prey type consumed is highly variable. In Chapter V I provide evidence for non-consumptive effects of the sunflower seastar on grazing sea urchins. I find that the presence of a waterborne Pycnopodia cue reduces the grazing rate of fed urchins by 50% over short (~24 h) time scales. In contrast, starved urchins consume kelp and do not exhibit an escape response in the presence of a Pycnopodia cue. ...
author2 Galloway, Aaron
format Thesis
author Whippo, Ross
author_facet Whippo, Ross
author_sort Whippo, Ross
title Macroalgae and their Associated Communities: Chemical, Conservation, and Trophic Ecology
title_short Macroalgae and their Associated Communities: Chemical, Conservation, and Trophic Ecology
title_full Macroalgae and their Associated Communities: Chemical, Conservation, and Trophic Ecology
title_fullStr Macroalgae and their Associated Communities: Chemical, Conservation, and Trophic Ecology
title_full_unstemmed Macroalgae and their Associated Communities: Chemical, Conservation, and Trophic Ecology
title_sort macroalgae and their associated communities: chemical, conservation, and trophic ecology
publisher University of Oregon
publishDate 2024
url https://scholarsbank.uoregon.edu/xmlui/handle/1794/29186
geographic Antarctic
geographic_facet Antarctic
genre Antarc*
Antarctic
Antarctica
genre_facet Antarc*
Antarctic
Antarctica
op_relation https://scholarsbank.uoregon.edu/xmlui/handle/1794/29186
op_rights All Rights Reserved.
_version_ 1790594563373531136