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Ascidian is an invasive fouling species within marine ecosystem. The fouling ascidians usually attach on bivalve aquaculture facilities, which is likely related to the influence of certain chemical factors. To investigate the key chemical factors involved in inducing attachment and metamorphosis of ...
2026-01-12 | MTBLS11935 | MetaboLights
Shallow-water ascidians are prevalent invasive and fouling organisms within marine ecosystems. Their larvae undergo rapid metamorphosis from planktonic to sessile stage, facilitating colonization and population expansion. It is crucial to explore the molecular and cellular orchestration of larval me...
ORGANISM(S): Ciona savignyi 
2026-01-10 | PXD061044 | Pride
the bacterial community associated with ascidian
Transcriptional profiling of Ciona intestinalis comparing ethanol exposed asidian (control) with TBT exposed ascidian.
ORGANISM(S): Ciona intestinalis 
2010-07-20 | GSE22995 | GEO
Transcriptional profiling of Ciona intestinalis comparing ethanol exposed asidian (control) with TBT exposed ascidian. Two conditions experiment comparing ethanol exposed asidian (control) with TBT exposed ascidian.
ORGANISM(S): Ciona intestinalis 
Lumen formation and inflation are crucial for tubular organ morphogenesis, yet the underling mechanism remains largely unrevealed. Here, we applied 4D proteomics to screen the lumenogenesis-related proteins and reveal the potentially biological pathways that are involved in lumen inflation during no...
ORGANISM(S): Ciona savignyi 
2023-05-10 | PXD037089 | Pride
TRANSCRIPTOME ANALYSIS DURING THE METAMORPHOSIS OF THE ASCIDIAN CIONA INTESTINALIS
Tunicates, including ascidians, are recognized as the true “sister group” of vertebrates and are emerging as models to study the development and degeneration of central nervous system (CNS). Ascidian larvae have the typical chordate body plan that includes a dorsal neural tube. During their metamorp...
ORGANISM(S): Ciona intestinalis 
Early transcriptional similarities between two distinct neural lineages during ascidian embryogenesis
Formation of tubular system is crucial for embryogenesis and adult metabolism. However,the underlying mechanisms remain largely unclear. We demonstrated that a dual specificity tyrosine-phosphorylation-regulated kinase 1 (DYRK1), the protein kinase, which was upregulated during lumenogenesis and req...
ORGANISM(S): Ciona Savignyi 
2023-01-04 | PXD039234 |
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