Use of lanthanides to alleviate the effects of metal ion-deficiency in Desmodesmus quadricauda (Sphaeropleales, Chlorophyta)
Autor: | Félix L. Figueroa, Franz Ronald Goecke, Tomáš Řezanka, Vilém Zachleder, Celia G. Jerez, Milada Vítová, Kateřina Bišová |
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Jazyk: | angličtina |
Rok vydání: | 2015 |
Předmět: |
Microbiology (medical)
lcsh:QR1-502 chemistry.chemical_element rare earth elements Chlorophyta Manganese Calcium Photosynthesis Microbiology lcsh:Microbiology Metal Nutrient Botany Original Research Article algae calcium biology toxicity Desmodesmus biology.organism_classification Electron transport chain metal requirements chemistry visual_art Environmental chemistry visual_art.visual_art_medium manganese |
Zdroj: | Frontiers in Microbiology, Vol 6 (2015) Frontiers in Microbiology |
ISSN: | 1664-302X |
DOI: | 10.3389/fmicb.2015.00002 |
Popis: | Lanthanides are biologically non-essential elements with wide applications in technology and industry. Their concentration as environmental contaminants is, therefore, increasing. Although non-essential, lanthanides have been proposed (and even used) to produce beneficial effects in plants, even though their mechanisms of action are unclear. Recently, it was suggested that they may replace essential elements. We tested the effect of low concentrations of lanthanides on the common freshwater microalga Desmodesmus quadricauda, grown under conditions of metal ion-deficiency (lower calcium or manganese concentrations). Our goal was to test if lanthanides can replace essential metals in their functions. Physiological stress was recorded by studying growth and photosynthetic activity using a pulse amplitude modulation (PAM) fluorimeter. We found that nutrient stress reduced parameters of growth and photosynthesis, such as maximal quantum yield, relative electron transport rate, photon capturing efficiency and light saturation irradiance. After adding low concentrations of five lanthanides, we confirmed that they can produce a stimulatory effect on microalgae, depending on the nutrient (metal) deprivation. In the case of a calcium deficit, the addition of lanthanides partly alleviated the adverse effects, probably by a partial substitution of the element. In contrast, with manganese deprivation (and at even lower concentrations), lanthanides enhanced the deleterious effect on cellular growth and photosynthetic competence. These results show that lanthanides can replace essential elements, but their effects on microalgae depend on stress and the nutritional state of the microalgae, raising the possibility of environmental impacts at even low concentrations. |
Databáze: | OpenAIRE |
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