Gielen Heidi, Vangronsveld Jaco, Cuypers Ann
Environmental Biology, Centre for Environmental Sciences, Hasselt University, B-3590, Diepenbeek, Belgium.
Plant Cell Environ. 2017 Mar;40(3):390-400. doi: 10.1111/pce.12876. Epub 2017 Feb 2.
Cadmium (Cd) exposure can disturb the homeostasis of essential elements. In Arabidopsis thaliana, Cd induces a squamosa promoter binding protein-like 7 (SPL7)-dependent Cu deficiency response. We investigated how Cd induces a Cu deficiency response. The Cu deficiency response consists of the active SPL7 transcription factor binding to GTAC motifs in promoters of among others several Cu transporters, a Cu chaperone, and cupro-miRNAs to regulate Cu homeostasis. We demonstrated that the addition of supplemental Cu to Cd-exposed A. thaliana plants diminished the Cu deficiency response in roots, while it even disappeared in leaves. Exposure of plants to Cd in combination with extra Cu reduced Cd levels in both roots and leaves resulting in an improved cellular oxidative state. Furthermore, we demonstrated a role for phytochelatins (PCs) in the Cd-induced Cu deficiency response, because it was reduced in roots of cad1-3 mutant plants exposed to Cd. In conclusion, a working mechanism is provided in which it is suggested that Cd increases PC levels that can complex both Cd and Cu. This results in cellular Cu deficiency and subsequently the activation of SPL7 and hence the induction of the Cu deficiency response.
镉(Cd)暴露会扰乱必需元素的稳态。在拟南芥中,Cd会诱导一种依赖于鳞状启动子结合蛋白样7(SPL7)的铜缺乏反应。我们研究了Cd如何诱导铜缺乏反应。铜缺乏反应包括活性SPL7转录因子与多种铜转运蛋白、一种铜伴侣蛋白和铜离子微RNA等的启动子中的GTAC基序结合,以调节铜稳态。我们证明,向暴露于Cd的拟南芥植物添加补充铜可减少根部的铜缺乏反应,而在叶片中该反应甚至消失。将植物暴露于Cd与额外的铜相结合的环境中,可降低根和叶中的Cd水平,从而改善细胞氧化状态。此外,我们证明了植物螯合肽(PCs)在Cd诱导的铜缺乏反应中起作用,因为在暴露于Cd的cad1-3突变体植物的根中,该反应减弱。总之,我们提供了一种作用机制,即Cd会增加PCs水平,而PCs可与Cd和Cu结合。这会导致细胞铜缺乏,随后激活SPL7,从而诱导铜缺乏反应。