Muscle cells are well differentiated and have highly designed architecture. Many genes contribute to muscle cell differentiation and morphogenesis. To gain an insight into regulatory mechanism of muscle differentiation and morphogenesis, functional analysis of genes expressed in muscle cells using chromosomal deletion or RNAi knock down is a powerful approach. However, since some genes are also expressed in other tissue cells, it is hard to know defects in muscle cell caused by primary and cell autonomous effects or by secondary and non-cell autonomous effects. Furthermore, RNAi of some early expressed genes caused embryonic lethal phenotype, so it is impossible to investigate effect of RNAi knock down of such genes on muscle differentiation and morphogenesis. To avoid these problems, mosaic analysis or tissue specific rescue experiment is required. But, it takes time and effort to construct mosaic animals or tissue specific rescue lines. Previously we reported tissue specific RNAi system and established hypodermis specific RNAi system (Inoue et al., 2000 Japanese Worm Meeting) using tissue specific rescue of
rde-1, RNAi resistant, mutant worms. To examine effect of gene knock down on muscle morphogenesis efficiently, we established muscle specific RNAi system and applied this system on early expressed and embryonic lethal genes.