Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results

Previous work on the genetic diversity of Phaeocystis used ribosomal DNA and internal transcribed spacer (ITS) sequence analyses to show that there is substantial inter- and intraspecific variation within the genus. First attempts to trace the biogeographical history of strains in Antarctic coastal...

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Published in:Biogeochemistry
Main Authors: Gaebler, S, Hayes, PK, Medlin, LK
Format: Article in Journal/Newspaper
Language:English
Published: 2007
Subjects:
Online Access:https://hdl.handle.net/1983/c09832ab-826d-4aae-8c38-8215013f95ee
https://research-information.bris.ac.uk/en/publications/c09832ab-826d-4aae-8c38-8215013f95ee
https://doi.org/10.1007/s10533-007-9084-4
http://www.springerlink.com/content/agu45037x2231027/
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spelling ftubristolcris:oai:research-information.bris.ac.uk:publications/c09832ab-826d-4aae-8c38-8215013f95ee 2024-02-04T09:55:28+01:00 Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results Gaebler, S Hayes, PK Medlin, LK 2007-03 https://hdl.handle.net/1983/c09832ab-826d-4aae-8c38-8215013f95ee https://research-information.bris.ac.uk/en/publications/c09832ab-826d-4aae-8c38-8215013f95ee https://doi.org/10.1007/s10533-007-9084-4 http://www.springerlink.com/content/agu45037x2231027/ eng eng info:eu-repo/semantics/restrictedAccess Gaebler , S , Hayes , PK & Medlin , LK 2007 , ' Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results ' , Biogeochemistry , vol. 83 (1-3) , pp. 19 - 27 . https://doi.org/10.1007/s10533-007-9084-4 article 2007 ftubristolcris https://doi.org/10.1007/s10533-007-9084-4 2024-01-11T23:36:24Z Previous work on the genetic diversity of Phaeocystis used ribosomal DNA and internal transcribed spacer (ITS) sequence analyses to show that there is substantial inter- and intraspecific variation within the genus. First attempts to trace the biogeographical history of strains in Antarctic coastal waters were based on a comparison of ITS sequences. To gain deeper insights into the population structure and bloom dynamics of this microalga it is necessary to quantify the genetic diversity within populations of P. antarctica from different locations (i.e., each of the three major gyres in the Antarctic continental waters) and to calculate the gene flow between them. Here we describe methods to quantify genetic diversity and our preliminary results for P. antarctica in comparison to two other colonial species: P. globosa and P. pouchetii. For this study of genetic diversity, two fingerprinting techniques were used. First, amplified fragment-length polymorphisms (AFLPs) were established as a pre-screening tool to assess clone diversity and to select divergent clones prior to physiological investigations. Second, the more-powerful microsatellite markers were established to assess population structure and biogeography more accurately. Results show differences in the AFLP patterns between isolates of P. antarctica from different regions, and that a wide variety of microsatellite motifs could be obtained from the three Phaeocystis species. Previous work on the genetic diversity of Phaeocystis used ribosomal DNA and internal transcribed spacer (ITS) sequence analyses to show that there is substantial inter- and intraspecific variation within the genus. First attempts to trace the biogeographical history of strains in Antarctic coastal waters were based on a comparison of ITS sequences. To gain deeper insights into the population structure and bloom dynamics of this microalga it is necessary to quantify the genetic diversity within populations of P. antarctica from different locations (i.e., each of the three major ... Article in Journal/Newspaper Antarc* Antarctic Antarctica University of Bristol: Bristol Research Antarctic The Antarctic Biogeochemistry 83 1-3 19 27
institution Open Polar
collection University of Bristol: Bristol Research
op_collection_id ftubristolcris
language English
description Previous work on the genetic diversity of Phaeocystis used ribosomal DNA and internal transcribed spacer (ITS) sequence analyses to show that there is substantial inter- and intraspecific variation within the genus. First attempts to trace the biogeographical history of strains in Antarctic coastal waters were based on a comparison of ITS sequences. To gain deeper insights into the population structure and bloom dynamics of this microalga it is necessary to quantify the genetic diversity within populations of P. antarctica from different locations (i.e., each of the three major gyres in the Antarctic continental waters) and to calculate the gene flow between them. Here we describe methods to quantify genetic diversity and our preliminary results for P. antarctica in comparison to two other colonial species: P. globosa and P. pouchetii. For this study of genetic diversity, two fingerprinting techniques were used. First, amplified fragment-length polymorphisms (AFLPs) were established as a pre-screening tool to assess clone diversity and to select divergent clones prior to physiological investigations. Second, the more-powerful microsatellite markers were established to assess population structure and biogeography more accurately. Results show differences in the AFLP patterns between isolates of P. antarctica from different regions, and that a wide variety of microsatellite motifs could be obtained from the three Phaeocystis species. Previous work on the genetic diversity of Phaeocystis used ribosomal DNA and internal transcribed spacer (ITS) sequence analyses to show that there is substantial inter- and intraspecific variation within the genus. First attempts to trace the biogeographical history of strains in Antarctic coastal waters were based on a comparison of ITS sequences. To gain deeper insights into the population structure and bloom dynamics of this microalga it is necessary to quantify the genetic diversity within populations of P. antarctica from different locations (i.e., each of the three major ...
format Article in Journal/Newspaper
author Gaebler, S
Hayes, PK
Medlin, LK
spellingShingle Gaebler, S
Hayes, PK
Medlin, LK
Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results
author_facet Gaebler, S
Hayes, PK
Medlin, LK
author_sort Gaebler, S
title Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results
title_short Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results
title_full Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results
title_fullStr Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results
title_full_unstemmed Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results
title_sort methods used to reveal genetic diversity in the colony-forming prymnesiophytes phaeocystis antarctica, p. globosa and p. pouchetii - preliminary results
publishDate 2007
url https://hdl.handle.net/1983/c09832ab-826d-4aae-8c38-8215013f95ee
https://research-information.bris.ac.uk/en/publications/c09832ab-826d-4aae-8c38-8215013f95ee
https://doi.org/10.1007/s10533-007-9084-4
http://www.springerlink.com/content/agu45037x2231027/
geographic Antarctic
The Antarctic
geographic_facet Antarctic
The Antarctic
genre Antarc*
Antarctic
Antarctica
genre_facet Antarc*
Antarctic
Antarctica
op_source Gaebler , S , Hayes , PK & Medlin , LK 2007 , ' Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii - preliminary results ' , Biogeochemistry , vol. 83 (1-3) , pp. 19 - 27 . https://doi.org/10.1007/s10533-007-9084-4
op_rights info:eu-repo/semantics/restrictedAccess
op_doi https://doi.org/10.1007/s10533-007-9084-4
container_title Biogeochemistry
container_volume 83
container_issue 1-3
container_start_page 19
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