College of Resources and Environment, Hunan Agricultural University, Changsha, Hunan, 410128, PR China; Key Laboratory for Rural Ecosystem Health in the Dongting Lake Area of Hunan Province, Changsha, 410128, PR China.
Radioanalytical and Environmental Chemistry Group, Department of Chemistry, University of Cyprus, P.O. Box 20537, Nicosia, CY-1678, Cyprus.
J Environ Manage. 2021 Apr 15;284:112056. doi: 10.1016/j.jenvman.2021.112056. Epub 2021 Feb 3.
Brassica napus L. (oilseed rape) was grown with daikon and white lupin in a polyvinyl chloride split pot experiment (with no barrier between the compartments or by a nylon mesh barrier (37 μm) to license partial root interaction, or a solid barrier to stop any root interactions) to examine the effect of rhizosphere interaction on the cadmium uptake. The results showed that shoot and root biomasses of oilseed rape were 40.66% and 26.94% less than that of the monocropped treatment (solid barrier) when intercropping with daikon under the rhizosphere complete interaction. However, the intermingling of roots between oilseed rape and white lupin notably enhanced the dry biomass of oilseed rape by 40.23% and decreased with the reduction of root contact. Oilseed rape intercropping with daikon enhanced the shoot Cd concentration of oilseed rape. The shoot Cd concentration (44.8 mg/kg) of oilseed rape when intercropped white lupin under complete rhizosphere interaction were greater than those of other treatments. Additionally, the intermingling of roots played a positive role in the content of citric and malic acids when intercropping with white lupin. In all systems, the BCF values of oilseed rape >5. Therefore, intercropping with white lupin may contribute to higher biomass and increased uptake Cd by oilseed rape. We can toward sustainable positive effects on phytoremediation that based on a better understanding of rhizosphere processes.
油菜(甘蓝型油菜)与白萝卜和白 Lupinus 进行了聚氯乙烯分 pots 实验(隔室之间没有障碍或通过尼龙网障碍(37μm)许可部分根系相互作用,或固体障碍阻止任何根系相互作用),以研究根际相互作用对镉吸收的影响。结果表明,当与白萝卜在根际完全相互作用下间作时,油菜的地上部和根生物量比单作处理(固体障碍)分别减少了 40.66%和 26.94%。然而,油菜和白 Lupinus 根系的混交显著增加了油菜的干生物量,增加了 40.23%,随着根系接触的减少而减少。油菜与白萝卜间作可提高油菜地上部 Cd 浓度。当白 Lupinus 完全根际相互作用时,油菜地上部 Cd 浓度(44.8mg/kg)高于其他处理。此外,根系混交在与白 Lupinus 间作时对柠檬酸和苹果酸的含量有积极作用。在所有系统中,油菜的 BCF 值>5。因此,与白 Lupinus 间作可能有助于提高油菜的生物量和吸收 Cd 的能力。我们可以更好地了解根际过程,从而对植物修复产生可持续的积极影响。