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Expression of cytoskeletal and molt-related genes is temporally scheduled in the hypodermis of the crayfish Procambarus clarkii during premolt.

Authors :
Tom, Moshe
Manfrin, Chiara
Chung, Sook J.
Sagi, Amir
Gerdol, Marco
De Moro, Gianluca
Pallavicini, Alberto
Giulianini, Piero G.
Source :
Journal of Experimental Biology. Dec2014, Vol. 217 Issue 23, p4193-4202. 10p.
Publication Year :
2014

Abstract

The rigid crustacean exoskeleton, the cuticle, Is composed of the polysaccharide chitin, structural proteins and mineral deposits. It is periodically replaced to enable growth and its construction is an energy-demanding process. Ecdysis, the shedding event of the old cuticle, is preceded by a preparatory phase, termed premolt, in which the present cuticle Is partially degraded and a new one is formed underneath it. Procambarus clarkii (Girard 1852), an astacid crustacean, was used here to comprehensively examine the changing patterns of gene expression In the hypodermis underlying the cuticle of the carapace at seven time points along - 1 4 premolt days. Next generation sequencing was used to construct a multitissue P. clarkii transcript sequence assembly for general use in a variety of transcriptomic studies. A reference transcriptome was created here in order to perform digital transcript expression analysis, determining the gene expression profiles in each of the examined premolt stages. The analysisrevealed a cascade of sequential expression events of molt-related genes involved in chitin degradation, synthesis and modification, as well as synthesis of collagen and four groups of cuticular structural genes. The new description of major transcriptional events during premolt and the determination of their timing provide temporal markers for future studies of molt progress and regulation. The peaks of the expression of the molt-related genes were preceded by expression peaks of cytoskeletal genes that are hypothesized to be essential for premolt progress through regulating protein synthesis and/or transport, probably by remodeling the cytoskeletal structure. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00220949
Volume :
217
Issue :
23
Database :
Academic Search Index
Journal :
Journal of Experimental Biology
Publication Type :
Academic Journal
Accession number :
100229798
Full Text :
https://doi.org/10.1242/jeb.109009