4.7 Article

Pleurochrysome: A Web Database of Pleurochrysis Transcripts and Orthologs Among Heterogeneous Algae

Journal

PLANT AND CELL PHYSIOLOGY
Volume 57, Issue 1, Pages -

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/pcp/pcv195

Keywords

Coccolithophorids; Expressed sequence tag; Haptophyta; Integrated database; Ortholog; Pleurochrysis

Funding

  1. Japan Society for Promotion of Science (JSPS) [24113518, 26113716, 20570059, 24570114]
  2. MEXT
  3. Research Funding for Computational Software Supporting Program from Meiji University
  4. Grants-in-Aid for Scientific Research [24570114, 24113518, 26113716, 20570059, 16K07427] Funding Source: KAKEN

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Pleurochrysis is a coccolithophorid genus, which belongs to the Coccolithales in the Haptophyta. The genus has been used extensively for biological research, together with Emiliania in the Isochrysidales, to understand distinctive features between the two coccolithophorid-including orders. However, molecular biological research on Pleurochrysis such as elucidation of the molecular mechanism behind coccolith formation has not made great progress at least in part because of lack of comprehensive gene information. To provide such information to the research community, we built an open web database, the Pleurochrysome (http://bioinf.mind.meiji.ac.jp/phapt/), which currently stores 9,023 unique gene sequences (designated as UNIGENEs) assembled from expressed sequence tag sequences of P. haptonemofera as core information. The UNIGENEs were annotated with gene sequences sharing significant homology, conserved domains, Gene Ontology, KEGG Orthology, predicted subcellular localization, open reading frames and orthologous relationship with genes of 10 other algal species, a cyanobacterium and the yeast Saccharomyces cerevisiae. This sequence and annotation information can be easily accessed via several search functions. Besides fundamental functions such as BLAST and keyword searches, this database also offers search functions to explore orthologous genes in the 12 organisms and to seek novel genes. The Pleurochrysome will promote molecular biological and phylogenetic research on coccolithophorids and other haptophytes by helping scientists mine data from the primary transcriptome of P. haptonemofera.

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