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Genetic Diversity of Microbial Eukaryotes in Anoxic Sediment of the Saline Meromictic Lake Namako-ike (Japan): On the Detection of Anaerobic or Anoxic-tolerant Lineages of Eukaryotes

  • Kiyotaka Takishita*
  • , Masashi Tsuchiya
  • , Masaru Kawato
  • , Kazumasa Oguri
  • , Hiroshi Kitazato
  • , Tadashi Maruyama
  • *Kontaktforfatter
  • Japan Agency for Marine Earth-Science and Technology

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

Abstract

Available sequence data on eukaryotic small-subunit ribosomal DNA (SSU rDNA) directly retrieved from various environments have increased recently, and the diversity of microbial eukaryotes (protists) has been shown to be much greater than previously expected. However, the molecular information accumulated to date does still not thoroughly reveal ecological distribution patterns of microbial eukaryotes. In the ongoing challenge to detect anaerobic or anoxic-tolerant lineages of eukaryotes, we directly extracted DNA from the anoxic sediment of a saline meromictic lake, constructed genetic libraries of PCR-amplified SSU rDNA, and performed phylogenetic analyses with the cloned SSU rDNA sequences. Although a few sequences could not be confidently assigned to any major eukaryotic groups in the analyses and are debatable regarding their taxonomic positions, most sequences obtained have affiliations with known major lineages of eukaryotes (Cercozoa, Alveolata, Stramenopiles, and Opisthokonta). Among these sequences, some branched with lineages predominantly composed of uncultured environmental clones retrieved from other anoxic environments, while others were closely related to those of eukaryotic parasites (e.g. Phytomyxea of Cercozoa, Gregarinea of Alveolata, and Ichthyosporea of Opisthokonta).

OriginalsprogEngelsk
TidsskriftProtist
Vol/bind158
Udgave nummer1
Sider (fra-til)51-64
ISSN1434-4610
DOI
StatusUdgivet - 22. jan. 2007
Udgivet eksterntJa

Bibliografisk note

Funding Information:
We thank Dr. J. D. Reimer (JAMSTEC) for critical reading of the manuscript and Dr. B. S. Leander (University of British Columbia) for providing us with useful information on gregarines. This work was performed as part of the project ‘Study for Understanding of Function and Structure of the Marine Ecosystems in the Earth Systems’ conducted at JAMSTEC and was supported in part by grants from the Japan Society for the Promotion of Science (No. 17770077 to K. Takishita) and Research Fellowships of the Japan Society for the Promotion of Science for Young Scientists (No. 9358 to M. Tsuchiya).

Finansiering

We thank Dr. J. D. Reimer (JAMSTEC) for critical reading of the manuscript and Dr. B. S. Leander (University of British Columbia) for providing us with useful information on gregarines. This work was performed as part of the project ‘Study for Understanding of Function and Structure of the Marine Ecosystems in the Earth Systems’ conducted at JAMSTEC and was supported in part by grants from the Japan Society for the Promotion of Science (No. 17770077 to K. Takishita) and Research Fellowships of the Japan Society for the Promotion of Science for Young Scientists (No. 9358 to M. Tsuchiya).

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