Isotope Laboratory, Institute of Experimental Botany, Academy of Sciences of the Czech Republic, Vídenská 1083, 14220 Prague, Czech Republic.
Ecotoxicol Environ Saf. 2010 Sep;73(6):1309-13. doi: 10.1016/j.ecoenv.2010.07.008. Epub 2010 Jul 23.
Changes of amino acid concentrations (proline, glutamate, asparagine, aspartate, alanine) and glutamate kinase activity (GKA) in plants under arsenic chronic stress reported here reveal their role in plant arsenic stress adaptation. Results of the pot experiment confirmed the toxic effect of arsenic at tested levels (As1=25 mg As kg(-1) soil, As2=50 mg As kg(-1) soil, As3=75 mg As kg(-1) soil) for spinach. Growing available arsenic contents in soil were associated with the strong inhibition of above-ground biomass and with the enhancement of As plant content. The changes of glutamate, asparagine, aspartate and proline levels in the plants showed strong linear dependences on arsenic concentration in plants (R2=0.60-0.90). Compared to the untreated control, concentrations of free proline and aspartate of As3 treatment were enhanced up to 381% and 162%, respectively. The significant changes of glutamate were observed on As2 and As3 treatments (increased level up to 188, i.e. 617%). Arsenic in plants was shown to be an inhibitor of glutamase kinase activity (R2=0.91). Inhibition of GKA resulted in an increase in the content of glutamate that is used in synthesis of phytochelatins in plant cells. Concentration of alanine did not have a confirmed linear dependence on arsenic concentration in plant (R2=0.05). The changes of its concentrations could be affected by changes of pH in plant cell or induction of alanine aminotransferase by hypoxia.
这里报道的氨基酸浓度(脯氨酸、谷氨酸、天冬酰胺、天冬氨酸、丙氨酸)和谷氨酸激酶活性(GKA)的变化揭示了它们在植物砷胁迫适应中的作用。盆栽实验的结果证实了砷在测试水平下的毒性作用(As1=25mgAskg(-1)土壤,As2=50mgAskg(-1)土壤,As3=75mgAskg(-1)土壤)对菠菜的影响。土壤中有效砷含量的增加与地上生物量的强烈抑制以及植物砷含量的增加有关。植物中谷氨酸、天冬酰胺、天冬氨酸和脯氨酸水平的变化与植物中砷浓度呈很强的线性关系(R2=0.60-0.90)。与未处理的对照相比,As3 处理中天冬氨酸和脯氨酸的游离浓度分别增强了 381%和 162%。在 As2 和 As3 处理中观察到谷氨酸的显著变化(增加了 188%,即 617%)。植物中的砷被证明是谷氨酰胺激酶活性的抑制剂(R2=0.91)。GKA 的抑制导致谷氨酸含量增加,而谷氨酸在植物细胞中用于合成植物螯合肽。丙氨酸的浓度与植物中砷浓度没有确定的线性关系(R2=0.05)。其浓度的变化可能受到植物细胞中 pH 值变化或缺氧诱导丙氨酸氨基转移酶的影响。