AI Article Synopsis

  • Plants face growth issues when exposed to cold stress, and glutathione transferases (GSTs) help mitigate oxidative damage caused by reactive oxygen species (ROS).
  • A study identified 65 GSTs in Brassica oleracea, categorizing them into 11 classes, and highlighted the evolutionary relationships between these and GSTs in Arabidopsis.
  • Expression analysis revealed that specific GST genes are significantly more active in cold-tolerant varieties during cold conditions, indicating their potential role in plant cold tolerance mechanisms.

Article Abstract

Plants, as sessile organisms, can suffer serious growth and developmental consequences under cold stress conditions. Glutathione transferases (GSTs, EC 2.5.1.18) are ubiquitous and multifunctional conjugating proteins, which play a major role in stress responses by preventing oxidative damage by reactive oxygen species (ROS). Currently, understanding of their function(s) during different biochemical and signaling pathways under cold stress condition remain unclear. In this study, using combined computational strategy, we identified 65 Brassica oleracea glutathione transferases (BoGST) and characterized them based on evolutionary analysis into 11 classes. Inter-species and intra-species duplication was evident between BoGSTs and Arabidopsis GSTs. Based on localization analyses, we propose possible pathways in which GST genes are involved during cold stress. Further, expression analysis of the predicted putative functions for GST genes were investigated in two cold contrasting genotypes (cold tolerance and susceptible) under cold condition, most of these genes were highly expressed at 6 h and 1 h in the cold tolerant (CT) and cold susceptible (CS) lines, respectively. Overall, BoGSTU19, BoGSTU24, BoGSTF10 are candidate genes highly expressed in B. oleracea. Further investigation of GST superfamily in B. oleracea will aid in understanding complex mechanism underlying cold tolerance in plants.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5000609PMC
http://dx.doi.org/10.3390/ijms17081211DOI Listing

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