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- W2893697303 abstract "Genome-wide identification of glutathione S-transferase (GST), a major phase II detoxification enzyme, was investigated in four different aquatic model rotifer species Brachionus koreanus, B. plicatilis, B. rotundiformis, and B. calyciflorus. GSTs are ubiquitous antioxidant enzymes that play versatile function including cellular detoxification, stress alleviation, and production of the radical conjugates. Among the four rotifers, B. rotundiformis was found with the least number of GST genes (total 19 GST genes), whereas the other three species shared 23 to 24 GST genes. Among the identified GST genes, belonging to the cytosolic GST superfamily, the expansion of GST sigma classes mainly occurs through tandem duplication, resulting in tandem-arrayed gene clusters on the chromosomes. Overall, the number of genes discovered in this study was highest in the sigma class, zeta, alpha, and omega in descending order. With integration of phylogenetic analysis and xenobiotic-mediated GST mRNA expression patterns along with previous enzymatic activities, the functional divergence among species-specific GST genes was clearly observed. This study covers full identification of GST classes in three marine rotifer and one fresh-water rotifer species and their important role in marine environmental ecotoxicology." @default.
- W2893697303 created "2018-10-05" @default.
- W2893697303 creator A5002019824 @default.
- W2893697303 creator A5021768500 @default.
- W2893697303 creator A5045574858 @default.
- W2893697303 creator A5046549595 @default.
- W2893697303 creator A5048356236 @default.
- W2893697303 creator A5068965349 @default.
- W2893697303 creator A5069107913 @default.
- W2893697303 creator A5071928499 @default.
- W2893697303 creator A5082981280 @default.
- W2893697303 date "2018-12-01" @default.
- W2893697303 modified "2023-10-03" @default.
- W2893697303 title "Genome-wide identification of the entire 90 glutathione S-transferase (GST) subfamily genes in four rotifer Brachionus species and transcriptional modulation in response to endocrine disrupting chemicals" @default.
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