Fu Lei, Chen Chen, Wang Bin, Zhou Xishi, Li Shuhuan, Guo Pan, Shen Zhenguo, Wang Guiping, Chen Yahua
College of Life Sciences, Jiangsu Collaborative Innovation Center for Solid Organic Waste Resource, National Joint Local Engineering Research Center for Rural Land Resources Use and Consolidation, Nanjing Agricultural University, Nanjing, Jiangsu, China.
PLoS One. 2015 Jul 24;10(7):e0133424. doi: 10.1371/journal.pone.0133424. eCollection 2015.
Differences in copper (Cu) absorption and transport, physiological responses and structural characteristics between two types of Cu-resistant plants, Oenothera glazioviana (Cu-exclusion type) and Elsholtzia haichowensis (Cu-enrichment type), were investigated in the present study. The results indicated the following: (1) After 50 μM Cu treatment, the Cu ratio in the xylem vessels of E. haichowensis increased by 60%. A Cu adsorption experiment indicated that O. glazioviana exhibited greater resistance to Cu, and Cu absorption and the shoot/root ratio of Cu were significantly lower in O. glazioviana than in E. haichowensis. (2) An analysis of the endogenous abscisic acid (ABA) variance and exogenous ABA treatment demonstrated that the ABA levels of both plants did not differ; exogenous ABA treatment clearly reduced Cu accumulation in both plants. (3) The leaf stomatal density of O. glazioviana was significantly less than that of E. haichowensis. Guard cells in E. haichowensis plants were covered with a thick cuticle layer, the epidermal hair was more numerous and longer, and the number of xylem conduits in the root was small. (4) The transpiration rate and the stomatal conductance of O. glazioviana were both significantly lower than those of E. haichowensis, regardless of whether the plants were treated with Cu. Taken together, these results indicate that the differences in the structural characteristics between these two plant species, particularly in the characteristics related to plant transpiration, are important factors that govern whether plants acquire or exclude Cu.
本研究调查了两种耐铜植物,即月见草(拒铜型)和海州香薷(富铜型)在铜(Cu)吸收与转运、生理反应及结构特征方面的差异。结果表明:(1)经50 μM铜处理后,海州香薷木质部导管中的铜含量增加了60%。铜吸附实验表明,月见草对铜的抗性更强,月见草的铜吸收量及地上部/根部铜比值显著低于海州香薷。(2)对内源脱落酸(ABA)变化及外源ABA处理的分析表明,两种植物的ABA水平无差异;外源ABA处理显著降低了两种植物中的铜积累量。(3)月见草的叶片气孔密度显著低于海州香薷。海州香薷的保卫细胞覆盖着一层厚厚的角质层,表皮毛更多、更长,且根部木质部导管数量较少。(4)无论是否用铜处理,月见草的蒸腾速率和气孔导度均显著低于海州香薷。综上所述,这些结果表明这两种植物在结构特征上的差异,尤其是与植物蒸腾相关的特征,是决定植物吸收或排斥铜的重要因素。