Differentiated muscles are mandatory for gas-filling of the Drosophila airway system

被引:1
作者
Wang, Yiwen [1 ]
Cruz, Tina [1 ]
Irion, Uwe [2 ]
Moussian, Bernard [3 ,4 ]
机构
[1] Univ Tubingen, Interfac Inst Cell Biol, Anim Genet, D-72076 Tubingen, Germany
[2] Max Planck Inst Dev Biol, Dept Genet, D-72076 Tubingen, Germany
[3] Univ Nice, Inst Biol Valrose, F-06108 Nice, France
[4] Tech Univ Dresden, Dept Biol, Appl Zool, D-01217 Dresden, Germany
关键词
Drosophila; Differentiation; Embryo; Gas-filling; Organ; Trachea; TRANSCRIPTION FACTOR; MYOBLAST FUSION; SMOOTH-MUSCLE; CUTICLE DIFFERENTIATION; SKELETAL-MUSCLE; TRACHEAL SYSTEM; LAME DUCK; MORPHOGENESIS; MELANOGASTER; MECHANISMS;
D O I
10.1242/bio.013086
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
At the end of development, organs acquire functionality, thereby ensuring autonomy of an organism when it separates from its mother or a protective egg. In insects, respiratory competence starts when the tracheal system fills with gas just before hatching of the juvenile animal. Cellular and molecular mechanisms of this process are not fully understood. Analyses of the phenotype of Drosophila embryos with malformed muscles revealed that they fail to gas-fill their tracheal system. Indeed, we show that major regulators of muscle formation like Lame duck and Blown fuse are important, while factors involved in the development of subsets of muscles including cardiac and visceral muscles are dispensable for this process, suggesting that somatic muscles (or parts of them) are essential to enable tracheal terminal differentiation. Based on our phenotypic data, we assume that somatic muscle defect severity correlates with the penetrance of the gas-filling phenotype. This argues that a limiting molecular or mechanical muscle-borne signal tunes tracheal differentiation. We think that in analogy to the function of smooth muscles in vertebrate lungs, a balance of physical forces between muscles and the elasticity of tracheal walls may be decisive for tracheal terminal differentiation in Drosophila.
引用
收藏
页码:1753 / 1761
页数:9
相关论文
共 48 条
[1]  
Abmayr SM, 1998, CURR TOP DEV BIOL, V38, P35
[2]  
ABRAMS JM, 1993, DEVELOPMENT, V117, P29
[3]   The muscleblind gene participates in the organization of Z-bands and epidermal attachments of Drosophila muscles and is regulated by Dmef2 [J].
Artero, R ;
Prokop, A ;
Paricio, N ;
Begemann, G ;
Pueyo, I ;
Mlodzik, M ;
Perez-Alonso, M ;
Baylies, MK .
DEVELOPMENTAL BIOLOGY, 1998, 195 (02) :131-143
[4]   TINMAN AND BAGPIPE - 2 HOMEO BOX GENES THAT DETERMINE CELL FATES IN THE DORSAL MESODERM OF DROSOPHILA [J].
AZPIAZU, N ;
FRASCH, M .
GENES & DEVELOPMENT, 1993, 7 (7B) :1325-1340
[5]   DROSOPHILA MEF2, A TRANSCRIPTION FACTOR THAT IS ESSENTIAL FOR MYOGENESIS [J].
BOUR, BA ;
OBRIEN, MA ;
LOCKWOOD, WL ;
GOLDSTEIN, ES ;
BODMER, R ;
TAGHERT, PH ;
ABMAYR, SM ;
NGUYEN, HT .
GENES & DEVELOPMENT, 1995, 9 (06) :730-741
[6]   Tissue-autonomous EcR functions are required for concurrent organ morphogenesis in the Drosophila embryo [J].
Chavoshi, Tina M. ;
Moussian, Bernard ;
Uv, Anne .
MECHANISMS OF DEVELOPMENT, 2010, 127 (5-6) :308-319
[7]   Endogenous Patterns of Activity Are Required for the Maturation of a Motor Network [J].
Crisp, Sarah J. ;
Evers, Jan Felix ;
Bate, Michael .
JOURNAL OF NEUROSCIENCE, 2011, 31 (29) :10445-10450
[8]   The influence of skeletal muscle on systemic aging and lifespan [J].
Demontis, Fabio ;
Piccirillo, Rosanna ;
Goldberg, Alfred L. ;
Perrimon, Norbert .
AGING CELL, 2013, 12 (06) :943-949
[9]   Mechanisms of skeletal muscle aging: insights from Drosophila and mammalian models [J].
Demontis, Fabio ;
Piccirillo, Rosanna ;
Goldberg, Alfred L. ;
Perrimon, Norbert .
DISEASE MODELS & MECHANISMS, 2013, 6 (06) :1339-1352
[10]   Genetic analysis of myoblast fusion: Blown fuse is required for progression beyond the prefusion complex [J].
Doberstein, SK ;
Fetter, RD ;
Mehta, AY ;
Goodman, CS .
JOURNAL OF CELL BIOLOGY, 1997, 136 (06) :1249-1261