| Literature DB >> 34891015 |
Junjun Huang1, Rongzhi Han1, Fang Ji1, Yuanyuan Yu1, Ruoyi Wang1, Zhaoxin Hai1, Weihong Liang2, Huahua Wang3.
Abstract
Programmed cell death (PCD) induced by aluminum (Al) is considered an important reason of Al phytotoxicity. However, the underlying mechanism of how Al induces PCD remains largely unknown in plants. The roles of glucose-6-phosphate dehydrogenase (G6PDH) and abscisic acid (ABA) in regulating Al-induced PCD were investigated in soybean roots. Al treatment increased G6PDH activity, while inhibition of G6PDH activity alleviated PCD occurrence and reactive oxygen species (ROS) accumulation under Al stress. Overexpression of cytosolic G6PDH1 enhanced G6PDH activity, thus promoting ROS production and cell death under Al exposure. Inhibition of NADPH oxidase activity mitigated ROS generation and cell death under Al stress. Further investigation demonstrated that G6PDH positively regulated the activity of NADPH oxidase under Al treatment using pharmacological and transgenic approach. Furthermore, Al stress increased ABA production, while inhibition of ABA biosynthesis alleviated PCD occurrence and ROS accumulation under Al stress. Interestingly, ABA upregulated G6PDH1 expression and G6PDH activity under Al stress. These results suggest that G6PDH mediates Al-induced PCD occurrence through the activation of NADPH oxidase-dependent ROS production, and ABA acts upstream of G6PDH in this process. This study will provide novel clues for the improvement of Al phytotoxicity in acidic soils.Entities:
Keywords: Acidic soil; Al toxicity; PCD; ROS; Root elongation
Mesh:
Substances:
Year: 2021 PMID: 34891015 DOI: 10.1016/j.jhazmat.2021.127964
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588