Ultrastructure and large subunit rDNA sequences of Lepidodinium viride reveal a close relationship to Lepidodinium chlorophorum comb. nov. (=Gymnodinium chlorophorum)

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Ultrastructure and large subunit rDNA sequences of Lepidodinium viride reveal a close relationship to Lepidodinium chlorophorum comb. nov. (=Gymnodinium chlorophorum). / Hansen, Gert; Botes, L.; DeSalas, M.

In: Phycological Research, Vol. 55, No. 1, 2007, p. 25-41.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Hansen, G, Botes, L & DeSalas, M 2007, 'Ultrastructure and large subunit rDNA sequences of Lepidodinium viride reveal a close relationship to Lepidodinium chlorophorum comb. nov. (=Gymnodinium chlorophorum)', Phycological Research, vol. 55, no. 1, pp. 25-41. https://doi.org/10.1111/j.1440-1835.2006.00442.x

APA

Hansen, G., Botes, L., & DeSalas, M. (2007). Ultrastructure and large subunit rDNA sequences of Lepidodinium viride reveal a close relationship to Lepidodinium chlorophorum comb. nov. (=Gymnodinium chlorophorum). Phycological Research, 55(1), 25-41. https://doi.org/10.1111/j.1440-1835.2006.00442.x

Vancouver

Hansen G, Botes L, DeSalas M. Ultrastructure and large subunit rDNA sequences of Lepidodinium viride reveal a close relationship to Lepidodinium chlorophorum comb. nov. (=Gymnodinium chlorophorum). Phycological Research. 2007;55(1):25-41. https://doi.org/10.1111/j.1440-1835.2006.00442.x

Author

Hansen, Gert ; Botes, L. ; DeSalas, M. / Ultrastructure and large subunit rDNA sequences of Lepidodinium viride reveal a close relationship to Lepidodinium chlorophorum comb. nov. (=Gymnodinium chlorophorum). In: Phycological Research. 2007 ; Vol. 55, No. 1. pp. 25-41.

Bibtex

@article{8d26c760c63811dd9473000ea68e967b,
title = "Ultrastructure and large subunit rDNA sequences of Lepidodinium viride reveal a close relationship to Lepidodinium chlorophorum comb. nov. (=Gymnodinium chlorophorum)",
abstract = "The ultrastructure of the green dinoflagellate Lepididodinium viride M. M. Watanabe, S. Suda, I. Inouye Sawaguchi et Chihara was studied in detail. The nuclear envelope possessed numerous chambers each furnished with a nuclear pore, a similar arrangement to that found in other gymnodinioids. The flagellar apparatus was essentially identical to Gymnodinium chlorophorum Elbr{\"a}chter et Schnepf, a species also containing chloroplasts of chlorophyte origin. Of particular interest was the connection of the flagellar apparatus to the nuclear envelope by means of both a fiber and a microtubular extension of the R3 flagellar root. This feature has not been found in other dinoflagellates and suggests a close relationship between these two species. This was confirmed by phylogenetic analysis based on partial sequences of the large subunit (LSU) rDNA gene of L. viride, G. chlorophorum and 16 other unarmoured dinoflagellates, including both the 'type' culture and a new Tasmanian isolate of G. chlorophorum. These two isolates had identical sequences and differed from L. viride by only 3.75% of their partial LSU sequences, considerably less than the difference between other Gymnodinium species. Therefore, based on ultrastructure, pigments and partial LSU rDNA sequences, the genus Lepidodinium was emended to encompass L. chlorophorum comb. nov.",
author = "Gert Hansen and L. Botes and M. DeSalas",
note = "KEYWORDS dinoflagellates • endosymbiosis • Lepidodinium viride • nuclear pores • phylogeny • ultrastructure",
year = "2007",
doi = "10.1111/j.1440-1835.2006.00442.x",
language = "English",
volume = "55",
pages = "25--41",
journal = "Phycological Research",
issn = "1322-0829",
publisher = "Wiley-Blackwell Publishing Asia",
number = "1",

}

RIS

TY - JOUR

T1 - Ultrastructure and large subunit rDNA sequences of Lepidodinium viride reveal a close relationship to Lepidodinium chlorophorum comb. nov. (=Gymnodinium chlorophorum)

AU - Hansen, Gert

AU - Botes, L.

AU - DeSalas, M.

N1 - KEYWORDS dinoflagellates • endosymbiosis • Lepidodinium viride • nuclear pores • phylogeny • ultrastructure

PY - 2007

Y1 - 2007

N2 - The ultrastructure of the green dinoflagellate Lepididodinium viride M. M. Watanabe, S. Suda, I. Inouye Sawaguchi et Chihara was studied in detail. The nuclear envelope possessed numerous chambers each furnished with a nuclear pore, a similar arrangement to that found in other gymnodinioids. The flagellar apparatus was essentially identical to Gymnodinium chlorophorum Elbrächter et Schnepf, a species also containing chloroplasts of chlorophyte origin. Of particular interest was the connection of the flagellar apparatus to the nuclear envelope by means of both a fiber and a microtubular extension of the R3 flagellar root. This feature has not been found in other dinoflagellates and suggests a close relationship between these two species. This was confirmed by phylogenetic analysis based on partial sequences of the large subunit (LSU) rDNA gene of L. viride, G. chlorophorum and 16 other unarmoured dinoflagellates, including both the 'type' culture and a new Tasmanian isolate of G. chlorophorum. These two isolates had identical sequences and differed from L. viride by only 3.75% of their partial LSU sequences, considerably less than the difference between other Gymnodinium species. Therefore, based on ultrastructure, pigments and partial LSU rDNA sequences, the genus Lepidodinium was emended to encompass L. chlorophorum comb. nov.

AB - The ultrastructure of the green dinoflagellate Lepididodinium viride M. M. Watanabe, S. Suda, I. Inouye Sawaguchi et Chihara was studied in detail. The nuclear envelope possessed numerous chambers each furnished with a nuclear pore, a similar arrangement to that found in other gymnodinioids. The flagellar apparatus was essentially identical to Gymnodinium chlorophorum Elbrächter et Schnepf, a species also containing chloroplasts of chlorophyte origin. Of particular interest was the connection of the flagellar apparatus to the nuclear envelope by means of both a fiber and a microtubular extension of the R3 flagellar root. This feature has not been found in other dinoflagellates and suggests a close relationship between these two species. This was confirmed by phylogenetic analysis based on partial sequences of the large subunit (LSU) rDNA gene of L. viride, G. chlorophorum and 16 other unarmoured dinoflagellates, including both the 'type' culture and a new Tasmanian isolate of G. chlorophorum. These two isolates had identical sequences and differed from L. viride by only 3.75% of their partial LSU sequences, considerably less than the difference between other Gymnodinium species. Therefore, based on ultrastructure, pigments and partial LSU rDNA sequences, the genus Lepidodinium was emended to encompass L. chlorophorum comb. nov.

U2 - 10.1111/j.1440-1835.2006.00442.x

DO - 10.1111/j.1440-1835.2006.00442.x

M3 - Journal article

VL - 55

SP - 25

EP - 41

JO - Phycological Research

JF - Phycological Research

SN - 1322-0829

IS - 1

ER -

ID: 9021776