Cieschi María T, Benedicto Ana, Hernández-Apaolaza Lourdes, Lucena Juan J
Department of Agricultural Chemistry and Food Science, Autonomous University of Madrid Madrid, Spain.
Front Plant Sci. 2016 Nov 28;7:1767. doi: 10.3389/fpls.2016.01767. eCollection 2016.
Zn-Lignosulfonates (LS) fertilizers are used as an eco-friendly alternative to chelate formulations. The mechanisms of Zn release in the rhizosphere by both types of products are compared. The ability to provide Zn to of non-modified and chemically modified ZnLS and ZnEDTA is compared in a hydroponic assay. Stable isotope Zn was used to study Zn source (fertilizer, Zn, or native, Zn) uptake and distribution in plants in two soil pot experiments. ZnEDTA was the best treatment to provide both Zn and Zn to navy bean plants. A shuttle effect mechanism and an isotopic exchange may occur. ZnLS from eucalyptus (ZnLSE) provides more Zn to the plant than LS from spruce. Chemical modifications of ZnLSE does not improve its efficiency. A double dose of ZnLSE provides similar Zn in leaves and similar soluble Zn content in soil than ZnEDTA. A model for the Zn fertilizers behavior in the soil and plant system is presented, showing the shuttle effect for the synthetic chelate and the direct delivery in the rhizosphere for the ZnLS complex.
木质素磺酸锌(LS)肥料被用作螯合制剂的环保替代品。比较了这两种产品在根际中锌释放的机制。在水培试验中比较了未改性和化学改性的ZnLS以及ZnEDTA向植物提供锌的能力。在两个土壤盆栽试验中,使用稳定同位素锌来研究锌源(肥料锌或天然锌)在植物中的吸收和分布。ZnEDTA是向海军豆植物提供锌和锌的最佳处理方法。可能会发生穿梭效应机制和同位素交换。来自桉树的ZnLS(ZnLSE)比来自云杉的LS向植物提供更多的锌。ZnLSE的化学改性并没有提高其效率。双倍剂量的ZnLSE在叶片中提供的锌与ZnEDTA相似,在土壤中的可溶性锌含量也相似。提出了一个锌肥料在土壤和植物系统中的行为模型,显示了合成螯合物的穿梭效应以及ZnLS络合物在根际中的直接递送。