Evaluating the effect of moss functional traits and sampling on elemental concentrations in Pleurozium schreberi and Ptilium crista-castrensis in Eastern Canada (Québec) black spruce forest.


Journal

The Science of the total environment
ISSN: 1879-1026
Titre abrégé: Sci Total Environ
Pays: Netherlands
ID NLM: 0330500

Informations de publication

Date de publication:
10 Jan 2024
Historique:
received: 07 07 2023
revised: 04 10 2023
accepted: 16 10 2023
medline: 27 11 2023
pubmed: 20 10 2023
entrez: 20 10 2023
Statut: ppublish

Résumé

Characterizing atmospheric depositions allows evaluating the impact of air pollution on ecosystems, human health, and the economy. It also informs decision-makers about the implementation of regulations improving environmental quality. Biomonitoring uses organisms, such as mosses, as proxies to assess the presence of atmospheric contaminants (e.g., metals). This approach is cost-efficient and does not require complicated infrastructure or scientific skills, making it suitable for large-scale monitoring initiatives and citizen-based campaigns. Therefore, precise sampling protocols are needed to limit bias. Biomonitoring data remains scarce in North America, compared to e.g., Europe, and there is a need to develop large-scale and long-term biomonitoring initiatives to record current and future atmospheric depositions. As there is no standardized international sampling protocol, this study assessed the impact of parameters known to affect the elemental concentration of mosses, using samples collected along a 1000-km transect in Eastern Canada (Quebec) from 2016 to 2022. We specifically examined the effects of species, stem color, canopy opening, time of sampling, and stem length on 18 elements. Non-parametric statistical tests indicate that these factors have significant effects on some metals, but differences are generally low (<30 %), except for stem length. These results suggest that sampling protocols can be flexible in terms of species, canopy opening, time of sampling, and stem color. However, normalizing the length of the stems analyzed is required to account for differences in growth rates between sites. Moreover, since no large-scale biomonitoring campaign using mosses has been conducted in Eastern Canada, this paper also provides the first elemental baseline for moss in the region.

Identifiants

pubmed: 37858833
pii: S0048-9697(23)06527-0
doi: 10.1016/j.scitotenv.2023.167900
pii:
doi:

Substances chimiques

Air Pollutants 0
Metals, Heavy 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

167900

Informations de copyright

Copyright © 2023 Elsevier B.V. All rights reserved.

Déclaration de conflit d'intérêts

Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

Auteurs

Laurie Michel (L)

Centre Sève, Département de Chimie, Université de Sherbrooke, J1K 2R1 QC, Canada.

Marie Renaudin (M)

Water Science and Technology Branch, Environnement et Changement Climatique Canada, Montréal H2Y 2E7, QC, Canada.

Romain Darnajoux (R)

Department of Geosciences, Princeton University, NJ 08544, USA.

Charlotte Blasi (C)

Centre Sève, Département de Chimie, Université de Sherbrooke, J1K 2R1 QC, Canada.

Gaëlle Vacherand (G)

Centre Sève, Département de Chimie, Université de Sherbrooke, J1K 2R1 QC, Canada.

Pauline Le Monier (P)

Ifremer, CCEM Contamination Chimique des Écosystèmes Marins, F-44000 Nantes, France.

Daniel Houle (D)

Water Science and Technology Branch, Environnement et Changement Climatique Canada, Montréal H2Y 2E7, QC, Canada.

Jean-Philippe Bellenger (JP)

Centre Sève, Département de Chimie, Université de Sherbrooke, J1K 2R1 QC, Canada. Electronic address: Jean-Philippe.Bellenger@USherbrooke.ca.

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