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影响青鳉(日本青鳉)体节形成的突变

Mutations affecting somite formation in the Medaka (Oryzias latipes).

作者信息

Elmasri Harun, Winkler Christoph, Liedtke Daniel, Sasado Takao, Morinaga Chikako, Suwa Hiroshi, Niwa Katsutoshi, Henrich Thorsten, Hirose Yukihiro, Yasuoka Akihito, Yoda Hiroki, Watanabe Tomomi, Deguchi Tomonori, Iwanami Norihisa, Kunimatsu Sanae, Osakada Masakazu, Loosli Felix, Quiring Rebecca, Carl Matthias, Grabher Clemens, Winkler Sylke, Del Bene Filippo, Wittbrodt Joachim, Abe Keiko, Takahama Yousuke, Takahashi Katsuhito, Katada Toshiaki, Nishina Hiroshi, Kondoh Hisato, Furutani-Seiki Makoto

机构信息

Department of Physiological Chemistry I, Biocenter, University of Wuerzburg, Am Hubland, D-97074 Wuerzburg, Germany.

出版信息

Mech Dev. 2004 Jul;121(7-8):659-71. doi: 10.1016/j.mod.2004.04.003.

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.

摘要

脊椎动物躯干的分节结构是由未分段的体节中胚层(PSM)重复形成体节而产生的。我们报告了在青鳉(Oryzias latipes)大规模诱变筛选中分离出的9种影响分节的不同突变体的初步特征。鉴定出4个突变体,它们表现出完全或部分没有体节或体节边界。此外,发现5个突变导致体节融合或体节大小和形状不规则。使用参与分节时钟和体节前后(A-P)极性的特定标记进行的原位杂交分析表明,这9个突变体可分为两组。在第1组中,突变体在尾芽形成和PSM预模式化方面表现出缺陷,而在第2组突变体中,体节的A-P身份存在缺陷。3个突变体(planlos,pll;schnelles ende,sne;samidare,sam)具有与斑马鱼Delta/Notch信号通路受影响的突变体相似的特征表型。然而,大多数突变体表现出与斑马鱼不同的体节表型,如单个融合的体节和不规则的体节大小。因此,这些青鳉突变体有望为揭示体节发生所必需的新成分提供线索。

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