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实验设计作为一种建模植物痕量金属生物指示能力的工具。

The Design of Experiment as a Tool to Model Plant Trace-Metal Bioindication Abilities.

机构信息

Department of Biological Geological and Environmental Sciences, University of Bologna, 40126 Bologna, Italy.

Department of Chemistry "G. Ciamician", University of Bologna, 40126 Bologna, Italy.

出版信息

Molecules. 2022 Mar 11;27(6):1844. doi: 10.3390/molecules27061844.

Abstract

Bioindicator plants are species that have the capacity to linearly uptake some elements (metal and metalloids) from the growing substrate, thus reflecting their concentration in the soil. Many factors can influence the uptake of these elements by plants, among which is the simultaneous presence of several metals, a common situation in contaminated or natural soils. A novel approach that can be used to validate the bioindication ability of a species growing on a polymetallic substrate is the design of experiment (DoE) approach. The aim of the present study was to apply the DoE in full factorial mode to model the Cu, Cd, Pb, Zn, and Cr bioindication capacity of , used as the model plant. The results showed that has the ability to bioindicate Cd and Cr with a linear uptake (from 0.35 to 6.66, and 0.1 to 3.4 mg kg, respectively) unaffected by the presence of other metals. Conversely, the uptake of Pb, Cu, and Zn is strongly influenced by the presence of all the studied metals, making their concentration in the plant shoot not proportional to that of the soil. In conclusion, these preliminary results confirmed that the DoE can be used to predict the bioindicator abilities of a plant for several elements at the same time and to evaluate the interactions that can be established between variables in the growing medium and in the plant itself. However, more studies including other plant species are needed to confirm the effectiveness of this method.

摘要

生物指示剂植物是指具有从生长基质中线性吸收某些元素(金属和类金属)的能力的物种,从而反映其在土壤中的浓度。许多因素会影响植物对这些元素的吸收,其中包括多种金属的同时存在,这在污染或自然土壤中很常见。一种可以用于验证在多金属基质上生长的物种的生物指示能力的新方法是实验设计(DoE)方法。本研究的目的是采用完全析因模式的 DoE 来模拟作为模型植物的 对 Cu、Cd、Pb、Zn 和 Cr 的生物指示能力。结果表明, 具有线性吸收 Cd 和 Cr 的能力(分别为 0.35 至 6.66 和 0.1 至 3.4 mg kg),不受其他金属的存在影响。相反,Pb、Cu 和 Zn 的吸收受到所有研究金属的强烈影响,使得它们在植物地上部分的浓度与土壤中的浓度不成比例。总之,这些初步结果证实,DoE 可用于同时预测一种植物对几种元素的生物指示剂能力,并评估生长介质和植物本身中变量之间可能建立的相互作用。然而,需要进行更多包括其他植物物种的研究来确认这种方法的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cab/8954799/97e84e53978e/molecules-27-01844-g001.jpg

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