不同酸碱条件下钙对辣椒亚细胞组分镉吸附特征和解毒机制影响

Effects of calcium on cadmium adsorption characteristics and detoxification mechanism of subcellular components of Capsicum annuum L. under different acid and alkali conditions

  • 摘要: 为探索不同酸碱条件下钙(Ca)调控辣椒中镉(Cd)的亚细胞分布和解毒机制,采用盆栽试验,分析不同酸碱条件与钙交互作用下辣椒各组织中Cd的亚细胞分布、根系细胞壁结构变化及其主要组分中Cd的分布特征。结果表明:辣椒各组织的细胞壁和细胞可溶性组分是Cd在亚细胞中的主要富集部位,但在不同组织中二者间的占比有所不同,细胞器中Cd仅占了1%~13%;果胶和纤维素是根细胞壁中吸附Cd的主要物质,在Ca调控细胞壁对Cd吸附过程中发挥了重要作用;FTIR光谱也表明Ca和Cd交互作用诱导了细胞壁上多糖物质的重塑。总之,Ca浓度增加有利于细胞壁结构的稳定性,增强细胞壁和液泡对Cd2+的固持和区隔化,减少Cd2+向细胞器以及地上组织中转移,增强了辣椒的耐受性。不同酸碱条件通过影响根系对Ca和Cd的吸收来影响其在细胞组分中的分布,Ca对辣椒Cd的亚细胞分布特征和解毒机制的调控作用受到不同pH条件、Ca浓度以及二者交互作用的显著影响。

     

    Abstract: To explore the subcellular distribution and detoxification mechanism of cadmium (Cd) in Capsicum annuum L. (capsicum) regulated by calcium (Ca) under different acids and alkalis, a pot experiment was used to analyze the subcellular distribution of Cd in capsicum tissues, the changes in root cell wall structure, and the distribution characteristics of Cd in its main components under the interaction of different acid-base conditions and calcium addition. The results showed that the cell wall and soluble components of capsicum tissues were the main subcellular enrichment sites of Cd. Still, their proportions differed in different tissues, and Cd in organelles only accounted for 1%~13%. Pectin and cellulose were the main substances that adsorbed and fixed Cd in root cell walls, which played important roles in the process of Ca regulating the adsorption of Cd on cell walls. FTIR spectrum showed that the interaction between Ca and Cd induced polysaccharide remodeling on the cell wall. In conclusion, the increase of Ca concentration was beneficial to the stability of cell wall structure, enhanced the retention and compartmentalization of Cd2+ by cell walls and vacuoles, reduced the transfer of Cd2+ to organelles and aboveground tissues, and enhanced the tolerance of capsicum. Different pH conditions affected the distribution of Ca and Cd in cell components by regulating the absorption of Ca and Cd by roots. The regulation of Ca on the subcellular distribution characteristics and detoxification mechanism of capsicum Cd was significantly influenced by different pH conditions, Ca concentration, and their interaction.

     

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