The message of nitric oxide in cadmium challenged plants |
| |
Authors: | Magdalena Arasimowicz-Jelonek,Jolanta Floryszak-WieczorekEdward A. Gwó ?d? |
| |
Affiliation: | a Department of Plant Ecophysiology, Faculty of Biology, Adam Mickiewicz University, Umultowska 89, 61-614 Poznań, Poland b Department of Plant Physiology, Poznan University of Life Sciences, Wo?yńska 35, 60-637 Poznań, Poland |
| |
Abstract: | During the last decade it has been found that cadmium (Cd), one of the most toxic elements occurring in polluted environments, interferes with nitric oxide (NO), a multifunctional signaling molecule in living organisms. The formation of NO has been demonstrated in vivo in various plant tissues exposed to Cd stress, but unfortunately, the time and intensity of NO generation, relatively frequently shows conflicting data. What is more, there is still limited information regarding the functional role of endogenously produced NO in plants challenged with heavy metals. The first pharmacological approaches revealed that exogenously applied NO can alleviate cadmium toxicity in plants, promoting the direct scavenging of reactive oxygen species (ROS) or activating antioxidant enzymes. However, recent reports have indicated that NO even contributes to Cd toxicity by promoting Cd uptake and participates in metal-induced reduction of root growth. In view of this heterogeneous knowledge, much more puzzling if we consider results first obtained using exogenous NO sources, this review is focused mainly on the implication of endogenous NO in plant response to Cd exposure. Furthermore, a basic draft for NO mode of action during cadmium stress is proposed. |
| |
Keywords: | APX, ascorbate peroxidase CaM, calmodulin CAT, catalase Cd, cadmium ET, ethylene GSH, reduced glutathione GSNO, nitrosoglutathione H2O2, hydrogen peroxide IAA, auxin IRT1, ferrous iron transporter JA, jasmonic acid smallcaps" >l-NAME, Nω-nitro- smallcaps" >l-Arg-methyl ester smallcaps" >l-NMMA, Nω-Methyl- smallcaps" >l-arginine acetate salt MTs, metallothioneins NO, nitric oxide Ni-NOR, nitrite: NO reductase NOS-like, nitric oxide synthase-like NOX, NADPH oxidase NR, nitrate reductase ONOO&minus , peroxynitrite anion O2 0" alt=" radical dot" src=" http://cdn.els-cdn.com/sd/entities/rad" class=" glyphImg" >&minus , superoxide anion PA, polyamines PBITU, S,S&prime -(1,3-phenylenebis(1,3-ethanediyl))bis-isothiourea PCs, phytochelatins PCD, programmed cell death PRs, pathogenesis-related proteins ROS, reactive oxygen species RNS, reactive nitrogen species SA, salicylic acid |
本文献已被 ScienceDirect PubMed 等数据库收录! |
|