Strains of the heterotrophic flagellate Bodo designis from different environments vary considerably with respect to salinity preference and SSU rRNA gene composition.

Research output: Contribution to journalJournal articleResearchpeer-review

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Strains of the heterotrophic flagellate Bodo designis from different environments vary considerably with respect to salinity preference and SSU rRNA gene composition. / Koch, Trine A; Ekelund, Flemming.

In: Protist, Vol. 156, No. 1, 2005, p. 97-112.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Koch, TA & Ekelund, F 2005, 'Strains of the heterotrophic flagellate Bodo designis from different environments vary considerably with respect to salinity preference and SSU rRNA gene composition.', Protist, vol. 156, no. 1, pp. 97-112.

APA

Koch, T. A., & Ekelund, F. (2005). Strains of the heterotrophic flagellate Bodo designis from different environments vary considerably with respect to salinity preference and SSU rRNA gene composition. Protist, 156(1), 97-112.

Vancouver

Koch TA, Ekelund F. Strains of the heterotrophic flagellate Bodo designis from different environments vary considerably with respect to salinity preference and SSU rRNA gene composition. Protist. 2005;156(1):97-112.

Author

Koch, Trine A ; Ekelund, Flemming. / Strains of the heterotrophic flagellate Bodo designis from different environments vary considerably with respect to salinity preference and SSU rRNA gene composition. In: Protist. 2005 ; Vol. 156, No. 1. pp. 97-112.

Bibtex

@article{bfa5ae10b56a11ddb04f000ea68e967b,
title = "Strains of the heterotrophic flagellate Bodo designis from different environments vary considerably with respect to salinity preference and SSU rRNA gene composition.",
abstract = "The morpho species Bodo designis is widespread and abundant globally in highly contrasting terrestrial and aquatic ecosystems. Whether the forms of Bodo designis from contrasting environments are conspecific, i.e. largely genetically identical, or whether they merely share the external morphology is presently not known. We examined the ability of different strains of Bodo designis isolated from different environments at different geographical sites to survive and grow at a salinity range of 0.5-45%. The Bodo designis strains from marine, freshwater, and terrestrial environments showed a different ability to cope with altered physiological conditions. Most of the tested strains were only able to tolerate a small salinity range, whereas others were able to withstand all tested salinity levels. We further examined the phylogenetic relationship between the different strains by sequencing the small subunit (SSU) rRNA gene. The resulting phylogenetic analyses suggest a huge genetic variation within Bodo designis, and also imply that Dimastigella and Rhyncomonas are developed inside Bodo designis. If the biological species concept is used, the genetic differences as well as the physiological barriers between the different strains of Bodo designis, would suggest that they should be assigned to different species.",
author = "Koch, {Trine A} and Flemming Ekelund",
note = "Keywords: Animals; Bayes Theorem; DNA, Protozoan; Kinetoplastida; RNA, Ribosomal; Sequence Analysis, DNA; Sodium Chloride; Variation (Genetics)",
year = "2005",
language = "English",
volume = "156",
pages = "97--112",
journal = "Protist",
issn = "1434-4610",
publisher = "Elsevier GmbH - Urban und Fischer",
number = "1",

}

RIS

TY - JOUR

T1 - Strains of the heterotrophic flagellate Bodo designis from different environments vary considerably with respect to salinity preference and SSU rRNA gene composition.

AU - Koch, Trine A

AU - Ekelund, Flemming

N1 - Keywords: Animals; Bayes Theorem; DNA, Protozoan; Kinetoplastida; RNA, Ribosomal; Sequence Analysis, DNA; Sodium Chloride; Variation (Genetics)

PY - 2005

Y1 - 2005

N2 - The morpho species Bodo designis is widespread and abundant globally in highly contrasting terrestrial and aquatic ecosystems. Whether the forms of Bodo designis from contrasting environments are conspecific, i.e. largely genetically identical, or whether they merely share the external morphology is presently not known. We examined the ability of different strains of Bodo designis isolated from different environments at different geographical sites to survive and grow at a salinity range of 0.5-45%. The Bodo designis strains from marine, freshwater, and terrestrial environments showed a different ability to cope with altered physiological conditions. Most of the tested strains were only able to tolerate a small salinity range, whereas others were able to withstand all tested salinity levels. We further examined the phylogenetic relationship between the different strains by sequencing the small subunit (SSU) rRNA gene. The resulting phylogenetic analyses suggest a huge genetic variation within Bodo designis, and also imply that Dimastigella and Rhyncomonas are developed inside Bodo designis. If the biological species concept is used, the genetic differences as well as the physiological barriers between the different strains of Bodo designis, would suggest that they should be assigned to different species.

AB - The morpho species Bodo designis is widespread and abundant globally in highly contrasting terrestrial and aquatic ecosystems. Whether the forms of Bodo designis from contrasting environments are conspecific, i.e. largely genetically identical, or whether they merely share the external morphology is presently not known. We examined the ability of different strains of Bodo designis isolated from different environments at different geographical sites to survive and grow at a salinity range of 0.5-45%. The Bodo designis strains from marine, freshwater, and terrestrial environments showed a different ability to cope with altered physiological conditions. Most of the tested strains were only able to tolerate a small salinity range, whereas others were able to withstand all tested salinity levels. We further examined the phylogenetic relationship between the different strains by sequencing the small subunit (SSU) rRNA gene. The resulting phylogenetic analyses suggest a huge genetic variation within Bodo designis, and also imply that Dimastigella and Rhyncomonas are developed inside Bodo designis. If the biological species concept is used, the genetic differences as well as the physiological barriers between the different strains of Bodo designis, would suggest that they should be assigned to different species.

M3 - Journal article

C2 - 16048136

VL - 156

SP - 97

EP - 112

JO - Protist

JF - Protist

SN - 1434-4610

IS - 1

ER -

ID: 8671410