id ftands:oai:ands.org.au::700046
record_format openpolar
institution Open Polar
collection Research Data Australia (Australian National Data Service - ANDS)
op_collection_id ftands
language unknown
topic biota
oceans
OCEAN CURRENTS
EARTH SCIENCE
OCEAN CIRCULATION
ANIMALS/INVERTEBRATES
BIOLOGICAL CLASSIFICATION
MACROALGAE (SEAWEEDS)
PLANTS
AQUATIC ECOSYSTEMS
BIOSPHERE
EARTH SCIENCE &gt
BIOSPHERE &gt
ECOSYSTEMS &gt
MARINE ECOSYSTEMS
MIGRATORY RATES/ROUTES
ECOLOGICAL DYNAMICS
SPECIES/POPULATION INTERACTIONS
kelp
rafts
sessile
semi-sessile
dispersal
ADS &gt
Automated DNA Sequencer
LABORATORY
OCEAN &gt
SOUTHERN OCEAN
SOUTHERN OCEAN &gt
MACQUARIE ISLAND
GEOGRAPHIC REGION &gt
POLAR
spellingShingle biota
oceans
OCEAN CURRENTS
EARTH SCIENCE
OCEAN CIRCULATION
ANIMALS/INVERTEBRATES
BIOLOGICAL CLASSIFICATION
MACROALGAE (SEAWEEDS)
PLANTS
AQUATIC ECOSYSTEMS
BIOSPHERE
EARTH SCIENCE &gt
BIOSPHERE &gt
ECOSYSTEMS &gt
MARINE ECOSYSTEMS
MIGRATORY RATES/ROUTES
ECOLOGICAL DYNAMICS
SPECIES/POPULATION INTERACTIONS
kelp
rafts
sessile
semi-sessile
dispersal
ADS &gt
Automated DNA Sequencer
LABORATORY
OCEAN &gt
SOUTHERN OCEAN
SOUTHERN OCEAN &gt
MACQUARIE ISLAND
GEOGRAPHIC REGION &gt
POLAR
Kelp rafts in the Southern Ocean: intercontinental travel for sessile and semi-sessile organisms.
topic_facet biota
oceans
OCEAN CURRENTS
EARTH SCIENCE
OCEAN CIRCULATION
ANIMALS/INVERTEBRATES
BIOLOGICAL CLASSIFICATION
MACROALGAE (SEAWEEDS)
PLANTS
AQUATIC ECOSYSTEMS
BIOSPHERE
EARTH SCIENCE &gt
BIOSPHERE &gt
ECOSYSTEMS &gt
MARINE ECOSYSTEMS
MIGRATORY RATES/ROUTES
ECOLOGICAL DYNAMICS
SPECIES/POPULATION INTERACTIONS
kelp
rafts
sessile
semi-sessile
dispersal
ADS &gt
Automated DNA Sequencer
LABORATORY
OCEAN &gt
SOUTHERN OCEAN
SOUTHERN OCEAN &gt
MACQUARIE ISLAND
GEOGRAPHIC REGION &gt
POLAR
description Metadata record for data from ASAC Project 2914 See the link below for public details on this project. Can animals raft between countries on floating seaweed? We aim to answer that question using powerful genetic tools. We can tell whether gene flow is strong between populations of animals by comparing their mitochondrial DNA; this could show us whether animals from one species in New Zealand are isolated from individuals of the same species in Chile. If they are not isolated, how are they managing to maintain gene flow? We know there are many millions of clumps of floating seaweed in the Southern Ocean, and these might provide a means of intercontinental travel for a range of small invertebrates. Project objectives: The primary objective of the project is to determine the effectiveness of rafting as a dispersal mechanism for sessile and semi-sessile organisms around the Southern Ocean using genetic tools. The secondary objectives, by which the primary objective will be addressed, are: - to examine the biogeography of bull kelp (Durvillaea antarctica) and its holdfast fauna around the Southern Ocean - to undertake genetic analysis of a wide range of macroalgal (seaweed) species throughout the Southern Ocean to assess 1) whether sea ice indeed extended further north than previously believed, and 2) the ecological and evolutionary impacts of historic ice scour on Southern Ocean islands. - to determine which holdfast invertebrates are the most common and ubiquitous in holdfasts of Durvillaea antarctica around the Southern Ocean - to compare the genetic structure of populations of both the kelp itself, and select invertebrate taxa* from its holdfasts, on a number of spatial scales: --- genetic variation at HOLDFAST level: are members of a single species, e.g., the isopod Limnoria stephenseni, closely related within a single holdfast? --- genetic variation at SITE level: are members of a single species, e.g., Durvillaea antarctica itself, closely related at one site? In this case, a 'site' means a single intertidal rock platform. --- genetic variation at NATIONAL level: are there distinct biogeographic separations of species, or does a single species show distinct genetic disjunction, along the Chilean coastline and around the south island of New Zealand? --- genetic variation at OCEAN level: are species clearly connected (by gene flow) between Southern Ocean landmasses? The landmasses of interest are: Chile, New Zealand, and the subantarctic islands on which Durvillaea antarctica grows. * The proposed taxa that this project will focus on are: the isopod genus Limnoria; the amphipod Parawaldeckia kidderi; the chiton genus Onithochiton; the polychaete worm families Terebellidae and Syllidae; a topshell; a bivalve; barnacles. Progress against objectives: Considerable progress has been made against the primary objective since the start of the project in 2006. We have collected (/ been sent) and analysed samples of bull-kelp (Durvillaea antarctica) and its associated invertebrate holdfast fauna from numerous sites around the Southern Ocean (subantarctic islands including Macquarie, Gough, Marion, Kerguelen, Crozet, Auckland, Antipodes, Campbell, Falkland Islands; along the coasts of New Zealand and Chile). Our results thus far have allowed us to determine not only that rafting facilitates long-distance dispersal of these otherwise sedentary taxa, but also that sea ice during the last ice ice likely had significant impacts on subantarctic intertidal ecosystems. Our conclusions have been published in several papers in high-impact journals. The secondary objectives, by which the primary objective will be addressed, are: - to examine the biogeography of bull kelp (Durvillaea antarctica) and its holdfast fauna - these objectives have now largely been achieved, and results published. - to undertake genetic analysis of a wide range of macroalgal (seaweed) species throughout the Southern Ocean - this part of the project is ongoing, and will make use of samples collected over the austral summer from Macquarie Island (and other locations around the southern hemisphere). all samples have now been collected and are being processed in the laboratory. - to determine which holdfast invertebrates are the most common and ubiquitous - this objective has been partially achieved (see Nikula et al. 2010), but research is ongoing. - to compare the genetic structure of populations of both the kelp itself, and select invertebrate taxa from its holdfasts, on a number of spatial scales - this objective has been partially achieved (see Nikula et al. 2010 for results of Limnoria and Parawaldeckia genetic research) but additional research on these and other taxa continues. The download file contains an excel spreadsheet detailing collection locations and accession numbers for the samples collected on Macquarie Island. A text document providing accession numbers for non-Antarctic related samples used in this project is also part of the download file.
author2 WATERS, JON (hasPrincipalInvestigator)
WATERS, JON (processor)
Australian Antarctic Data Centre (publisher)
format Dataset
title Kelp rafts in the Southern Ocean: intercontinental travel for sessile and semi-sessile organisms.
title_short Kelp rafts in the Southern Ocean: intercontinental travel for sessile and semi-sessile organisms.
title_full Kelp rafts in the Southern Ocean: intercontinental travel for sessile and semi-sessile organisms.
title_fullStr Kelp rafts in the Southern Ocean: intercontinental travel for sessile and semi-sessile organisms.
title_full_unstemmed Kelp rafts in the Southern Ocean: intercontinental travel for sessile and semi-sessile organisms.
title_sort kelp rafts in the southern ocean: intercontinental travel for sessile and semi-sessile organisms.
publisher Australian Antarctic Data Centre
url https://researchdata.ands.org.au/kelp-rafts-southern-sessile-organisms/700046
https://doi.org/10.26179/5b63dcf42affd
https://data.aad.gov.au/metadata/records/ASAC_2914
http://nla.gov.au/nla.party-617536
op_coverage Spatial: northlimit=-40.0; southlimit=-60.0; westlimit=-180.0; eastLimit=180.0; projection=WGS84
Temporal: From 2010-03-25 to 2010-03-25
long_lat ENVELOPE(159.367,159.367,-81.633,-81.633)
ENVELOPE(-66.590,-66.590,-66.803,-66.803)
ENVELOPE(-180.0,180.0,-40.0,-60.0)
geographic Antarctic
Austral
Gough
Holdfast
Kerguelen
New Zealand
Southern Ocean
geographic_facet Antarctic
Austral
Gough
Holdfast
Kerguelen
New Zealand
Southern Ocean
genre Antarc*
Antarctic
Antarctica
Macquarie Island
Sea ice
Southern Ocean
genre_facet Antarc*
Antarctic
Antarctica
Macquarie Island
Sea ice
Southern Ocean
op_source Australian Antarctic Data Centre
op_relation https://researchdata.ands.org.au/kelp-rafts-southern-sessile-organisms/700046
e4002688-21c5-49a8-84ce-ffbf3040eb86
doi:10.26179/5b63dcf42affd
ASAC_2914
https://data.aad.gov.au/metadata/records/ASAC_2914
http://nla.gov.au/nla.party-617536
op_doi https://doi.org/10.26179/5b63dcf42affd
_version_ 1766245878527426560
spelling ftands:oai:ands.org.au::700046 2023-05-15T13:46:57+02:00 Kelp rafts in the Southern Ocean: intercontinental travel for sessile and semi-sessile organisms. WATERS, JON (hasPrincipalInvestigator) WATERS, JON (processor) Australian Antarctic Data Centre (publisher) Spatial: northlimit=-40.0; southlimit=-60.0; westlimit=-180.0; eastLimit=180.0; projection=WGS84 Temporal: From 2010-03-25 to 2010-03-25 https://researchdata.ands.org.au/kelp-rafts-southern-sessile-organisms/700046 https://doi.org/10.26179/5b63dcf42affd https://data.aad.gov.au/metadata/records/ASAC_2914 http://nla.gov.au/nla.party-617536 unknown Australian Antarctic Data Centre https://researchdata.ands.org.au/kelp-rafts-southern-sessile-organisms/700046 e4002688-21c5-49a8-84ce-ffbf3040eb86 doi:10.26179/5b63dcf42affd ASAC_2914 https://data.aad.gov.au/metadata/records/ASAC_2914 http://nla.gov.au/nla.party-617536 Australian Antarctic Data Centre biota oceans OCEAN CURRENTS EARTH SCIENCE OCEAN CIRCULATION ANIMALS/INVERTEBRATES BIOLOGICAL CLASSIFICATION MACROALGAE (SEAWEEDS) PLANTS AQUATIC ECOSYSTEMS BIOSPHERE EARTH SCIENCE &gt BIOSPHERE &gt ECOSYSTEMS &gt MARINE ECOSYSTEMS MIGRATORY RATES/ROUTES ECOLOGICAL DYNAMICS SPECIES/POPULATION INTERACTIONS kelp rafts sessile semi-sessile dispersal ADS &gt Automated DNA Sequencer LABORATORY OCEAN &gt SOUTHERN OCEAN SOUTHERN OCEAN &gt MACQUARIE ISLAND GEOGRAPHIC REGION &gt POLAR dataset ftands https://doi.org/10.26179/5b63dcf42affd 2020-01-05T21:17:00Z Metadata record for data from ASAC Project 2914 See the link below for public details on this project. Can animals raft between countries on floating seaweed? We aim to answer that question using powerful genetic tools. We can tell whether gene flow is strong between populations of animals by comparing their mitochondrial DNA; this could show us whether animals from one species in New Zealand are isolated from individuals of the same species in Chile. If they are not isolated, how are they managing to maintain gene flow? We know there are many millions of clumps of floating seaweed in the Southern Ocean, and these might provide a means of intercontinental travel for a range of small invertebrates. Project objectives: The primary objective of the project is to determine the effectiveness of rafting as a dispersal mechanism for sessile and semi-sessile organisms around the Southern Ocean using genetic tools. The secondary objectives, by which the primary objective will be addressed, are: - to examine the biogeography of bull kelp (Durvillaea antarctica) and its holdfast fauna around the Southern Ocean - to undertake genetic analysis of a wide range of macroalgal (seaweed) species throughout the Southern Ocean to assess 1) whether sea ice indeed extended further north than previously believed, and 2) the ecological and evolutionary impacts of historic ice scour on Southern Ocean islands. - to determine which holdfast invertebrates are the most common and ubiquitous in holdfasts of Durvillaea antarctica around the Southern Ocean - to compare the genetic structure of populations of both the kelp itself, and select invertebrate taxa* from its holdfasts, on a number of spatial scales: --- genetic variation at HOLDFAST level: are members of a single species, e.g., the isopod Limnoria stephenseni, closely related within a single holdfast? --- genetic variation at SITE level: are members of a single species, e.g., Durvillaea antarctica itself, closely related at one site? In this case, a 'site' means a single intertidal rock platform. --- genetic variation at NATIONAL level: are there distinct biogeographic separations of species, or does a single species show distinct genetic disjunction, along the Chilean coastline and around the south island of New Zealand? --- genetic variation at OCEAN level: are species clearly connected (by gene flow) between Southern Ocean landmasses? The landmasses of interest are: Chile, New Zealand, and the subantarctic islands on which Durvillaea antarctica grows. * The proposed taxa that this project will focus on are: the isopod genus Limnoria; the amphipod Parawaldeckia kidderi; the chiton genus Onithochiton; the polychaete worm families Terebellidae and Syllidae; a topshell; a bivalve; barnacles. Progress against objectives: Considerable progress has been made against the primary objective since the start of the project in 2006. We have collected (/ been sent) and analysed samples of bull-kelp (Durvillaea antarctica) and its associated invertebrate holdfast fauna from numerous sites around the Southern Ocean (subantarctic islands including Macquarie, Gough, Marion, Kerguelen, Crozet, Auckland, Antipodes, Campbell, Falkland Islands; along the coasts of New Zealand and Chile). Our results thus far have allowed us to determine not only that rafting facilitates long-distance dispersal of these otherwise sedentary taxa, but also that sea ice during the last ice ice likely had significant impacts on subantarctic intertidal ecosystems. Our conclusions have been published in several papers in high-impact journals. The secondary objectives, by which the primary objective will be addressed, are: - to examine the biogeography of bull kelp (Durvillaea antarctica) and its holdfast fauna - these objectives have now largely been achieved, and results published. - to undertake genetic analysis of a wide range of macroalgal (seaweed) species throughout the Southern Ocean - this part of the project is ongoing, and will make use of samples collected over the austral summer from Macquarie Island (and other locations around the southern hemisphere). all samples have now been collected and are being processed in the laboratory. - to determine which holdfast invertebrates are the most common and ubiquitous - this objective has been partially achieved (see Nikula et al. 2010), but research is ongoing. - to compare the genetic structure of populations of both the kelp itself, and select invertebrate taxa from its holdfasts, on a number of spatial scales - this objective has been partially achieved (see Nikula et al. 2010 for results of Limnoria and Parawaldeckia genetic research) but additional research on these and other taxa continues. The download file contains an excel spreadsheet detailing collection locations and accession numbers for the samples collected on Macquarie Island. A text document providing accession numbers for non-Antarctic related samples used in this project is also part of the download file. Dataset Antarc* Antarctic Antarctica Macquarie Island Sea ice Southern Ocean Research Data Australia (Australian National Data Service - ANDS) Antarctic Austral Gough ENVELOPE(159.367,159.367,-81.633,-81.633) Holdfast ENVELOPE(-66.590,-66.590,-66.803,-66.803) Kerguelen New Zealand Southern Ocean ENVELOPE(-180.0,180.0,-40.0,-60.0)