Non-Lethal Assessment of Land Use Change Effects in Water and Soil of Algerian Riparian Areas along the Medjerda River through the Biosentinel Bufo spinosus Daudin

Author:

Napoletano Pasquale1ORCID,Guezgouz Noureddine2ORCID,Benradia Imen2,Benredjem Sarra2,Parisi Costantino3ORCID,Guerriero Giulia3456ORCID,De Marco Anna67ORCID

Affiliation:

1. Department of Agricultural, Environmental and Food Sciences, University of Molise, 86100 Campobasso, Italy

2. Department of Biology, University of Mohamed Cherif Messaadia, Souk-Ahras 41100, Algeria

3. Department of Biology, University of Naples Federico II, 80126 Naples, Italy

4. Mediterranean and Middle East Universities Network Agreement (MUNA), University of Naples Federico II, 80126 Naples, Italy

5. Interdepartmental Research Centre for Environment (CIRAm), University of Naples Federico II, 80134 Naples, Italy

6. Interuniversity Center for Studies on Bioinspired Agro-Environmental Technology (BAT Center), University of Naples Federico II, 80055 Portici, Italy

7. Department of Pharmacy, University of Naples Federico II, 80131 Naples, Italy

Abstract

The land use change can negatively impact ecosystems, enriching water and soil with heavy metals (HMs). The fragile riparian areas along the Medjerda River of Northern Algeria are particularly affected by this phenomenon, and biological tools able to combine information about both matrices can be preferred in their monitoring. This research aimed to evaluate the suitability of the spiny toad (Bufo spinosus D.) as a biomonitor for assessing the impact of three different land uses (agricultural (AGR), urban (URB), and industrial (IND) managements) on soil and water for Cu, Fe, Pb, and Zn by using the non-lethal skin biopsy. The IND land use, followed by URB, mostly impacted soils for Cu and Pb, whereas management was not able to influence water differently despite worrying Pb levels. The cluster analysis allows to show that toad responds like soil in terms of land use and like water for HMs, as it is possibly related to the metal–chemical affinity. Although the single skin analyses do not display any difference among the managements, the bioaccumulation factor (BF > 1) shows that B. spinosus absorbs more HMs from water; skin accumulates Fe and Zn regardless of the land use, probably for both natural and anthropogenic assimilation and Pb and Cu for URB and IND, as it is related to their ionic forms and human impact.

Publisher

MDPI AG

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