| Literature DB >> 15210175 |
Harun Elmasri1, Christoph Winkler, Daniel Liedtke, Takao Sasado, Chikako Morinaga, Hiroshi Suwa, Katsutoshi Niwa, Thorsten Henrich, Yukihiro Hirose, Akihito Yasuoka, Hiroki Yoda, Tomomi Watanabe, Tomonori Deguchi, Norihisa Iwanami, Sanae Kunimatsu, Masakazu Osakada, Felix Loosli, Rebecca Quiring, Matthias Carl, Clemens Grabher, Sylke Winkler, Filippo Del Bene, Joachim Wittbrodt, Keiko Abe, Yousuke Takahama, Katsuhito Takahashi, Toshiaki Katada, Hiroshi Nishina, Hisato Kondoh, Makoto Furutani-Seiki.
Abstract
The metameric structure of the vertebrate trunk is generated by repeated formation of somites from the unsegmented presomitic mesoderm (PSM). We report the initial characterization of nine different mutants affecting segmentation that were isolated in a large-scale mutagenesis screen in Medaka (Oryzias latipes). Four mutants were identified that show a complete or partial absence of somites or somite boundaries. In addition, five mutations were found that cause fused somites or somites with irregular sizes and shapes. In situ hybridization analysis using specific markers involved in the segmentation clock and antero-posterior (A-P) polarity of somites revealed that the nine mutants can be compiled into two groups. In group 1, mutants exhibit defects in tailbud formation and PSM prepatterning, whereas A-P identity in the somites is defective in group 2 mutants. Three mutants (planlos, pll; schnelles ende, sne; samidare, sam) have characteristic phenotypes that are similar to those in zebrafish mutants affected in the Delta/Notch signaling pathway. The majority of mutants, however, exhibit somitic phenotypes distinct from those found in zebrafish, such as individually fused somites and irregular somite sizes. Thus, these Medaka mutants can be expected to provide clues to uncovering novel components essential for somitogenesis.Entities:
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Year: 2004 PMID: 15210175 DOI: 10.1016/j.mod.2004.04.003
Source DB: PubMed Journal: Mech Dev ISSN: 0925-4773 Impact factor: 1.882