Migration Patterns and Potential Risk Assessment of Trace Elements in the Soil–Plant System in the Production Area of the Chinese Medicinal Herb Scrophularia ningpoensis Hemsl.

Author:

Gong Yufeng1,Ren Wei1,Zhang Zhenming234

Affiliation:

1. School of Pharmacy, Guizhou University of Traditional Chinese Medicine, Guiyang 550025, China

2. College of Resources and Environmental Engineering, Guizhou University, Guiyang 550025, China

3. School of Resource and Environmental Engineering/Key Laboratory of Karst Geological Resources and Environment, Ministry of Education, Guizhou University, Guiyang 550025, China

4. Field Scientific Observatory of Karst Environment and Ecosystem, Ministry of Education, Guiyang 550025, China

Abstract

Scrophularia ningpoensis Hemsl. holds a prominent place among Chinese medicinal herbs. Assessing the soil–plant system of its origin is crucial for ensuring medication safety. Although some trace elements are essential for the normal functioning of living organisms, exposure to higher concentrations is harmful to humans, so in order to assess the possible health risk of trace elements in the soil–plant system of Scrophularia ningpoensis Hemsl. origin for human assessment, we used non-carcinogenic risk (HI) and carcinogenic risk (CR) for their evaluation. In this paper, the following trace elements were studied in the soil–Scrophularia ningpoensis Hemsl. system: manganese (Mn), iron (Fe), cobalt (Co), zinc (Zn), selenium (Se), molybdenum (Mo), arsenic (As) and lead (Pb). Correlation and structural equation analyses showed that the effect of soil in the root zone on the plant was much greater than the effect of soil in the non-root zone on the plant. The single-factor pollution index (Pi) showed that the soil in the production area of Scrophularia ningpoensis Hemsl. was polluted to a certain extent, notably with Pb showing the highest average Pi values of 0.94 and 0.89 in the non-root and root zones, respectively. Additionally, the Nemerow composite pollution indices (PN) for both zones indicated an alert range. Regarding health risks, exposure to soil in the non-root zone posed higher non-carcinogenic risk (HI) and carcinogenic risk (CR) compared to the root zone, although neither zone presented a significant carcinogenic risk. The potential non-carcinogenic risk (HI) and carcinogenic risk (CR) from consuming Scrophularia ningpoensis Hemsl. leaves and stems were more than ten times higher than that of roots. However, the carcinogenic risk (CR) values for both the soil and plant of interest in the soil– Scrophularia ningpoensis Hemsl. system did not exceed 10−4, and therefore no significant carcinogenic risk existed.

Funder

Guizhou Provincial 100 High Level Innovating Project

Guizhou Provincial Key Technology R&D Program

Publisher

MDPI AG

Reference35 articles.

1. A review on role of essential trace elements in health and disease;Prashanth;J. Dr. NTR Univ. Health Sci.,2015

2. Microelement distributions and responses to human disturbance in meadow soil of Wugong Mountain;Deng;Pratacultural Sci.,2015

3. Heavy metals in vegetables and the health risk to population in Zhejiang, China;Huang;Food Control,2014

4. Heavy metal content of selected raw medicinal plant materials: Implication for patient health;Dzomba;Bull. Environ. Pharmacol. Life Sci.,2012

5. Heavy metals in fishes from the Tyrrhenian Sea and risk assessment;Scivicco;J. Food Compos. Anal.,2024

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