Lithium Toxicity in Lepidium sativum L. Seedlings: Exploring Li Accumulation’s Impact on Germination, Root Growth, and DNA Integrity

Author:

Iannilli Valentina1ORCID,D’Onofrio Gianluca2,Marzi Davide23ORCID,Passatore Laura2,Pietrini Fabrizio23ORCID,Massimi Lorenzo45ORCID,Zacchini Massimo23ORCID

Affiliation:

1. ENEA, Italian National Agency for New Technologies, Energy and Sustainable Economic Development C.R. Casaccia, Via Anguillarese, 301, 00123 Rome, Italy

2. Research Institute on Terrestrial Ecosystems (IRET), National Research Council of Italy (CNR), Via Salaria km 29.300, 00015 Monterotondo, Italy

3. NBFC—National Biodiversity Future Center S.c.a.r.l, Piazza Marina 61, 90133 Palermo, Italy

4. Department of Environmental Biology, Sapienza University of Rome, P.le Aldo Moro 5, 00185 Rome, Italy

5. Institute of Atmospheric Pollution Research (IIA), National Research Council of Italy (CNR), Via Salaria km 29.300, 00015 Monterotondo, Italy

Abstract

The predicted increase in demand for minor metals for modern technologies raises major concerns regarding potential environmental concentration increases. Among the minor metals, lithium (Li) is particularly noteworthy due to growing demand for battery production. Concerns have been raised about the impact on biota of increasing Li concentrations in the environment. To expand the knowledge of the effects of Li on plants, garden cress (Lepidium sativum L.), a model plant for ecotoxicity assay, was tested in a 72 h test in Petri plates. The results showed a stimulation effect of Li at the lowest concentration (Li chloride 10 mg L−1) on seed germination and primary root elongation. Conversely, higher Li concentrations (50 and 150 mg L−1) caused a progressive impairment in both parameters. A genotoxic effect of Li on root cells, evaluated through the alkaline comet assay, was observed at each concentration tested, particularly at 150 mg L−1 Li chloride. Elemental analysis showed that Li accumulated in the seedlings in a dose–concentration relationship, confirming its ability to be readily absorbed and accumulated in plants. Given the likely increase in Li levels in the environment, further research is required to clarify the toxicity mechanisms induced by Li on growth and nucleic acids.

Funder

National Recovery and Resilience Plan

Italian Ministry of University

European Union—NextGenerationEU

Concession Decree

Italian Ministry of University and Research

Publisher

MDPI AG

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