College of Forestry, Henan Agricultural University, Zhengzhou 450002, China.
College of Life Science, Henan Agricultural University, Zhengzhou 450002, China.
J Hazard Mater. 2021 Sep 5;417:125917. doi: 10.1016/j.jhazmat.2021.125917. Epub 2021 Apr 19.
In this study, the mechanism by which mercapto-modified palygorskite (MPAL) mediates Cd and Mn absorption by wheat was elucidated. In the aqueous phase, MPAL can react with Cd to form Cd-thiol complexes and CdO and with Mn to form MnO. In the wheat-soil system, 0.1-0.3% MPAL application increased the biomass of wheat by 18.6-29.4% and decreased the Cd concentration in shoots and roots by 19.4-51.8% and 35.9-64%, respectively; however, MPAL application did not decrease the diethylenetriaminepentaacetic acid (DTPA)-extracted Cd concentration in soil, probably because the formed Cd-thiol complexes and CdO could not be taken up by plants but could be extracted by DTPA. MPAL appeared to increase the Mn concentration in plants and the DTPA-extracted Mn concentration in soil, possibly because of the reduction in soil Mn oxides to more soluble Mn(Ⅱ) by the thiol groups in MPAL. MPAL enriched plant growth-promoting rhizobacteria and Cd-immobilizing bacteria and strengthened the sulfate reduction metabolism in rhizosphere soil, which partly contributed to the improvement in plant growth and the reduction in Cd bioaccumulation in wheat. These findings highlight the importance of the thiol group in MPAL and the regulation of the rhizosphere bacterial community in mediating Cd and Mn bioaccumulation in wheat.
在这项研究中,阐明了巯基修饰坡缕石(MPAL)介导小麦吸收 Cd 和 Mn 的机制。在水相,MPAL 可以与 Cd 反应形成 Cd-硫醇配合物和 CdO,与 Mn 反应形成 MnO。在小麦-土壤系统中,应用 0.1-0.3% MPAL 使小麦生物量增加了 18.6-29.4%,使 Cd 在地上部和根部的浓度分别降低了 19.4-51.8%和 35.9-64%;然而,MPAL 的应用并没有降低 DTPA 提取的土壤 Cd 浓度,这可能是因为形成的 Cd-硫醇配合物和 CdO 不能被植物吸收,但可以被 DTPA 提取。MPAL 似乎增加了植物中的 Mn 浓度和 DTPA 提取的土壤中 Mn 的浓度,这可能是由于 MPAL 中的巯基基团将土壤中的 Mn 氧化物还原为更易溶解的 Mn(Ⅱ)。MPAL 富集了植物促生根际细菌和 Cd 固定细菌,并增强了根际土壤中的硫酸盐还原代谢,这在一定程度上促进了植物的生长和减少了小麦对 Cd 的生物积累。这些发现强调了 MPAL 中巯基基团和根际细菌群落调节在介导小麦吸收 Cd 和 Mn 中的重要性。