Dichtel-Danjoy Marie-Laure, Félix Marie-Anne
Institut Jacques Monod, 75251 Paris cedex 05, France.
Dev Biol. 2004 Jan 1;265(1):113-26. doi: 10.1016/j.ydbio.2003.09.010.
The cell interactions that specify the spatial pattern of vulval precursor cell (VPC) fates differ between the nematodes Oscheius tipulae CEW1 and Caenorhabditis elegans. In the former, the centered pattern of fates is obtained by two successive inductions from the gonadal anchor cell, whereas in the latter, a single inductive step by the anchor cell (EGF-Ras-MAP kinase pathway) can act as a morphogen and is reinforced by lateral signaling between the vulval precursors (Notch pathway). We performed a genetic screen for vulva mutants in O. tipulae CEW1. Here we present the mutants that specifically affect the vulval induction mechanisms. Phenotypic and epistatic analyses of these mutants show that both vulval induction steps share common components, one of which appears to be MEK kinase(s). Moreover, the inductive pathway (including MEK kinase) influences the competence of the vulval precursor cells and more strikingly their division pattern as well, irrespective of their vulval fate. Finally, a comparison of vulval mutant phenotypes obtained in C. elegans and O. tipulae CEW1 highlights the evolution of vulval induction mechanisms between the two species.
确定线虫外阴前体细胞(VPC)命运空间模式的细胞相互作用在奥氏线虫CEW1和秀丽隐杆线虫之间存在差异。在前者中,命运的中心模式是通过性腺锚定细胞的两次连续诱导获得的,而在后者中,锚定细胞的单一诱导步骤(EGF-Ras-MAP激酶途径)可以作为一种形态发生素,并通过外阴前体细胞之间的侧向信号传导(Notch途径)得到加强。我们对奥氏线虫CEW1中的外阴突变体进行了遗传筛选。在此,我们展示了特异性影响外阴诱导机制的突变体。对这些突变体的表型和上位性分析表明,两个外阴诱导步骤共享共同成分,其中之一似乎是MEK激酶。此外,诱导途径(包括MEK激酶)影响外阴前体细胞的感受态,更显著的是也影响它们的分裂模式,而与它们的外阴命运无关。最后,对秀丽隐杆线虫和奥氏线虫CEW1中获得的外阴突变体表型的比较突出了这两个物种之间外阴诱导机制的进化。