Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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Developmental gene expression profiles of the human pathogen Schistosoma japonicum


ABSTRACT: The life cycle of schistosomes is complex, being characterised by a series of distinct parasitic and free-living phases involving an invertebrate snail host, water and a mammalian host. A custom designed oligonucleotide microarray was utilized to profile developmental gene expression in the Asian blood fluke, Schistosoma japonicum during these parasitic and free-living transitions. Total RNAs were isolated from lung schistosomula, juvenile females and males (paired but little or no egg production), adult males and females (paired with full scale egg production), eggs, miracidia, sporocysts and cercariae. We focused on the three distinct environmental phases of the lifecycle - aquatic/snail (eggs, miracidia, sporocysts, cercariae), juvenile (lung schistosomula and paired pre-egg laying adults) and adult (paired males and females, both examined separately) stages. Single colour schistosome life cycle with technical replicates in triplicate: Separate adult female and male worms at 4, 6, 6.5 and 7 weeks; cercariae; eggs; miracidia; schistosomula; and sporocysts. This study includes 6 adult male biological replicates.

ORGANISM(S): Schistosoma japonicum

SUBMITTER: Luke Moertel 

PROVIDER: E-GEOD-12704 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Developmental gene expression profiles of the human pathogen Schistosoma japonicum.

Gobert Geoffrey N GN   Moertel Luke L   Brindley Paul J PJ   McManus Donald P DP  

BMC genomics 20090325


<h4>Background</h4>The schistosome blood flukes are complex trematodes and cause a chronic parasitic disease of significant public health importance worldwide, schistosomiasis. Their life cycle is characterised by distinct parasitic and free-living phases involving mammalian and snail hosts and freshwater. Microarray analysis was used to profile developmental gene expression in the Asian species, Schistosoma japonicum. Total RNAs were isolated from the three distinct environmental phases of the  ...[more]

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