Deans Innes, Stewart Douglas I, Jones Jenny, Kam Jason, Mishra Bhoopesh
School of Chemical and Process Engineering, University of Leeds, Leeds, United Kingdom.
School of Civil Engineering, University of Leeds, Leeds, United Kingdom.
J Hazard Mater. 2023 Mar 5;445:129899. doi: 10.1016/j.jhazmat.2022.129899. Epub 2022 Sep 5.
The uptake by and distribution of Zn and Pb within a novel seed-based Miscanthus hybrid grown in contaminated soil was assessed. Results from juvenile plants in a pot-trial was compared with data for mature biomass of the same species harvested during a field-trial. Both Zn and Pb uptake by juvenile plants were observed to increase in proportion to the soil concentrations. Both Zn and Pb accumulation differed between leaf and stem structures, and both were different in the mature biomass compared with juvenile plants. Analysis of X-Ray Absorption Fine Structures (XAFS) revealed different Zn speciation in stems and leaves, and differences in Zn speciation with plant maturity. Sulfur ligands consistent with the presence of cysteine rich metallothioneins (MT) and phytochelatin (PC) complexes were the dominant Zn species in juvenile plant leaves, together with octahedral O/N species typified by Zn-malate. Sulfur ligands were also prevalent in stems from juvenile plants, but predominant O/N speciation shifted towards tetrahedral coordination. In contrast, tetrahedral Zn coordination with O/N species predominated in the mature biomass crop. The XAFS spectra for the mature biomass were consistent with Zn being retained within cell walls as pectin and/or phosphate complexes.
评估了在受污染土壤中生长的新型种子基杂交芒草对锌和铅的吸收及分布情况。将盆栽试验中幼苗的数据与田间试验收获的同一物种成熟生物质的数据进行了比较。观察到幼苗对锌和铅的吸收均与土壤浓度成比例增加。锌和铅在叶片和茎结构中的积累存在差异,并且与幼苗相比,成熟生物质中的两者也有所不同。X射线吸收精细结构(XAFS)分析揭示了茎和叶中锌的不同形态,以及锌形态随植物成熟度的差异。与富含半胱氨酸的金属硫蛋白(MT)和植物螯合肽(PC)复合物存在一致的硫配体是幼苗叶片中主要的锌物种,以及以苹果酸锌为代表的八面体O/N物种。硫配体在幼苗的茎中也很普遍,但主要的O/N形态向四面体配位转变。相比之下,成熟生物质作物中以O/N物种的四面体锌配位为主。成熟生物质的XAFS光谱与锌作为果胶和/或磷酸盐复合物保留在细胞壁内一致。