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A glutathione-independent DJ-1/PfpI domain-containing tomato glyoxalaseIII2, SlGLYIII2, confers enhanced tolerance under salt and osmotic stresses

Plant Cell Environ. 2022; 
Priya Gambhir, Vijendra Singh, Utkarsh Raghuvanshi, Adwaita Prasad Parida, Amit Pareek, Abhishek Roychowdhury, Sudhir K Sopory, Rahul Kumar, Arun Kumar Sharma
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Proteins, Expression, Isolation and Analysis … The designed sequence was purchased from Nanjing Genscript Company (Nanjing, China) … underwent probing with an anti-His tag polyclonal antibody for an additional 2 h. Protein … Get A Quote

摘要

In plants, glyoxalase enzymes are activated under stress conditions to mitigate the toxic effects of hyperaccumulated methylglyoxal (MG), a highly reactive carbonyl compound. Until recently, a glutathione-dependent bi-enzymatic pathway involving glyoxalase I (GLYI) and glyoxalase II (GLYII) was considered the primary MG-detoxification system. Recently, a new glutathione-independent glyoxalase III (GLYIII) mediated direct route was also reported in plants. However, the physiological significance of this new pathway remains to be elucidated across plant species. This study identified the full complement of 22 glyoxalases in tomato. Based on their strong induction under multiple abiotic stresses, SlGLYI4, SlGLYII2... More

关键词

GSH/GSSG, ROS, abiotic stress, glyoxalase, methylglyoxal, overexpression, tomato transgenics