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Cell type-specific expression profiling unravels the development and evolution of stinging cells in sea anemone

Overview of attention for article published in BMC Biology, September 2018
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Title
Cell type-specific expression profiling unravels the development and evolution of stinging cells in sea anemone
Published in
BMC Biology, September 2018
DOI 10.1186/s12915-018-0578-4
Pubmed ID
Authors

Kartik Sunagar, Yaara Y Columbus-Shenkar, Arie Fridrich, Nadya Gutkovich, Reuven Aharoni, Yehu Moran

Abstract

Cnidocytes are specialized cells that define the phylum Cnidaria. They possess an "explosive" organelle called cnidocyst that is important for prey capture and anti-predator defense. An extraordinary morphological and functional complexity of the cnidocysts has inspired numerous studies to investigate their structure and development. However, the transcriptomes of the cells bearing these unique organelles are yet to be characterized, impeding our understanding of the genetic basis of their biogenesis. In this study, we generated a nematocyte reporter transgenic line of the sea anemone Nematostella vectensis using the CRISPR/Cas9 system. By using a fluorescence-activated cell sorter (FACS), we have characterized cell type-specific transcriptomic profiles of various stages of cnidocyte maturation and showed that nematogenesis (the formation of functional cnidocysts) is underpinned by dramatic shifts in the spatiotemporal gene expression. Among the genes identified as upregulated in cnidocytes were Cnido-Jun and Cnido-Fos1-cnidarian-specific paralogs of the highly conserved c-Jun and c-Fos proteins of the stress-induced AP-1 transcriptional complex. The knockdown of the cnidocyte-specific c-Jun homolog by microinjection of morpholino antisense oligomer results in disruption of normal nematogenesis. Here, we show that the majority of upregulated genes and enriched biochemical pathways specific to cnidocytes are uncharacterized, emphasizing the need for further functional research on nematogenesis. The recruitment of the metazoan stress-related transcription factor c-Fos/c-Jun complex into nematogenesis highlights the evolutionary ingenuity and novelty associated with the formation of these highly complex, enigmatic, and phyletically unique organelles. Thus, we provide novel insights into the biology, development, and evolution of cnidocytes.

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Geographical breakdown

Country Count As %
Unknown 89 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 26 29%
Student > Master 9 10%
Student > Bachelor 8 9%
Researcher 6 7%
Student > Doctoral Student 5 6%
Other 8 9%
Unknown 27 30%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 32 36%
Agricultural and Biological Sciences 17 19%
Environmental Science 4 4%
Neuroscience 3 3%
Immunology and Microbiology 1 1%
Other 3 3%
Unknown 29 33%