Life-History Traits and Acclimation Ability of a Copepod Species from the Dripping Waters of the Corchia Cave (Apuan Alps, Tuscany, Italy)

Author:

Di Lorenzo Tiziana123ORCID,Galassi Diana Maria Paola4ORCID,Tabilio Di Camillo Agostina14,Pop Maria Mirabela3ORCID,Iepure Sanda35,Piccini Leonardo6ORCID

Affiliation:

1. Research Institute on Terrestrial Ecosystems of the National Research Council of Italy (IRET CNR), 50019 Florence, Italy

2. NBFC (National Biodiversity Future Center), 90133 Palermo, Italy

3. “Emil Racovita” Institute of Speleology, 400535 Cluj-Napoca, Romania

4. Department of Life, Health and Environmental Sciences, University of L’Aquila, 67100 L’Aquila, Italy

5. Department of Taxonomy and Ecology, University Babes-Bolyai, 400347 Cluj-Napoca, Romania

6. Department of Earth Sciences, University of Florence, 50121 Florence, Italy

Abstract

Copepods are the dominant crustacean group in groundwater, where they perform valuable ecosystem services related to carbon recycling. The life-history traits of stygobitic (groundwater-obligate dweller) copepods, however, have only been casually studied in the past. In addition, next to nothing is known about the responses of stygobitic copepods to climate change. In this study, we investigated the life-history traits and respiratory metabolism of a species of harpacticoid copepods, Moraria sp., endemic to the Corchia Cave in the Apuan Alps (Italy). We collected the specimens of Moraria sp. from the dripping waters of the cave and observed their development, survival, and reproduction rates in the laboratory for one year. We also evaluated the acclimation ability of adult females of Moraria sp. by measuring their oxygen consumption in a temperature range from 8 °C (average annual temperature of the dripping water in the Stalactites Gallery of the Corchia Cave) to 12.5 °C (maximum temperature of the dripping water of the cave expected according to climate change scenarios in 2100). Our results indicate that Moraria sp. Is a stenothermal species showing remarkable stygobitic traits (long life span, low metabolic rates). We noted that the metabolism of this species is significantly affected by small (+1.5 °C) thermal changes. Our results showed no metabolic compensation occurring in this species over two weeks of exposure to temperatures higher than 8 °C. The outcomes of this study suggest that Moraria sp. May not be able to tolerate thermal changes brought on by climate change.

Funder

BIODIVERSA+

European Union–NextGenerationEU

Romanian Ministry of Education and Research

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

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