Influence of arsenic stress on synthesis and localization of low-molecular-weight thiols in Pteris vittata
Yuki Sakai, Toshihiro Watanabe, Jun Wasaki, Takeshi Senoura, Takuro Shinano, and Mitsuru Osaki
Environmental Pollution, 158, 3663-3669 (2010)
The roles of low-molecular-weight thiols (LMWTs), such as glutathione and phytochelatins, in arsenic (As) tolerance and hyperaccumulation in Pteris vittata an As-hyperaccumulator fern remain to be better understood. This study aimed to thoroughly characterize LMWT synthesis in P. vittata to understand the roles played by LMWTs in As tolerance and hyperaccumulation. LMWT synthesis in P. vittata was induced directly by As, and not by As-mediated oxidative stress. Expression of PvECS2, one of the putative genes of ƒÁ-glutamylcysteine synthetase (ƒÁECS), increases in P. vittata shoots at 48 h after the onset of As exposure, almost corresponding to the increase in the concentrations of ƒÁ-glutamylcysteine and glutathione. Furthermore, localization of As showed similar trends to those of LMWTs in fronds at both whole-frond and cellular levels. This study thus indicates the specific contribution of LMWTs to As tolerance in P. vittata. ƒÁECS may be responsible for the As-induced enhancement of LMWT synthesis.