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Identification and characterization of differentially expressed transcripts in the gills of freshwater prawn (Macrobrachium rosenbergii) under salt stress. | LitMetric

AI Article Synopsis

  • The giant freshwater prawn, Macrobrachium rosenbergii, is significant economically and can thrive in various salt levels, suggesting its adaptability.
  • Researchers used subtractive and suppressive hybridization (SSH) to discover 117 transcripts that help the prawn adjust to saline environments, with 22% identified as known genes linked to stress tolerance.
  • Expression analysis indicated that specific genes, particularly those linked to salinity acclimation, were upregulated in the gills of prawns exposed to salt, providing insights for future studies on their adaptive mechanisms.

Article Abstract

The giant freshwater prawn, Macrobrachium rosenbergii, is an economically important species. It is a euryhaline shrimp, surviving in wide-range salinity conditions. A change in gene expression has been suggested as an important component for stress management. To better understand the osmoregulatory mechanisms mediated by the gill, a subtractive and suppressive hybridization (SSH) tool was used to identify expressed transcripts linked to adaptations in saline water. A total of 117 transcripts represented potentially expressed under salinity conditions. BLAST analysis identified 22% as known genes, 9% as uncharacterized showing homologous to unannotated ESTs, and 69% as unknown sequences. All the identified known genes representing broad spectrum of biological pathways were particularly linked to stress tolerance including salinity tolerance. Expression analysis of 10 known genes and 7 unknown/uncharacterized genes suggested their upregulation in the gills of prawn exposed to saline water as compared to control indicating that these are likely to be associated with salinity acclimation. Rapid amplification of cDNA ends (RACE) was used for obtaining full-length cDNA of MRSW-40 clone that was highly upregulated during salt exposure. The sequenced ESTs presented here will have potential implications for future understanding about salinity acclimation and/or tolerance of the prawn.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3349099PMC
http://dx.doi.org/10.1100/2012/149361DOI Listing

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