Reproduction, seasonal morphology, and juvenile growth in three Malagasy fruit bats

Author:

Andrianiaina Angelo1,Andry Santino2,Gentles Anecia3,Guth Sarah4,Héraud Jean-Michel567ORCID,Ranaivoson Hafaliana Christian15,Ravelomanantsoa Ny Anjara Fifi1,Treuer Timothy8,Brook Cara E49ORCID

Affiliation:

1. Mention Zoologie et Biodiversité Animale, Université d’Antananarivo , Antananarivo 101 , Madagascar

2. Mention Entomologie, Université d’Antananarivo , Antananarivo 101 , Madagascar

3. Odum School of Ecology, University of Georgia , Athens 30609, Georgia , USA

4. Department of Integrative Biology, University of California, Berkeley , Berkeley 94720, California , USA

5. Virology Unit, Institut Pasteur de Madagascar , Antananarivo 101 , Madagascar

6. Virology Department, Institut Pasteur de Dakar , Dakar 10200 , Senegal

7. Ecole Doctorale Science de la Vie et de l’Environnement, Faculté des Sciences, Université d’Antananarivo , Antananarivo 101 , Madagascar

8. Gund Institute for Environment, The University of Vermont , Burlington 05405, Vermont , USA

9. Department of Ecology and Evolution, University of Chicago , Chicago 60637, Illinois , USA

Abstract

Abstract The island nation of Madagascar is home to three endemic species of Old World fruit bat in the family Pteropodidae: Pteropus rufus, Eidolon dupreanum, and Rousettus madagascariensis, all three of which are IUCN Red Listed under some category of threat. Delineation of seasonal limits in the reproductive calendar for threatened mammals can inform conservation efforts by clarifying parameters used in population viability models, as well as elucidate understanding of the mechanisms underpinning pathogen persistence in host populations. Here, we define the seasonal limits of a staggered annual birth pulse across the three species of endemic Madagascar fruit bat, known reservoirs for viruses of high zoonotic potential. Our field studies indicate that this annual birth pulse takes place in September/October for P. rufus, November for E. dupreanum, and December for R. madagascariensis in central-eastern Madagascar where the bulk of our research was concentrated. Juvenile development periods vary across the three Malagasy pteropodids, resulting in near-synchronous weaning of pups for all species in late January–February at the height of the fruiting season for this region. We here document the size range in morphological traits for the three Malagasy fruit bat species, with P. rufus and E. dupreanum among the larger of pteropodids globally and R. madagascariensis among the smaller. All three species demonstrate subtle sexual dimorphism with males being larger than females. We explore seasonal variation in adult body condition by comparing observed body mass with body mass predicted by forearm length, demonstrating that pregnant females add weight during staggered gestation periods and males lose weight during the nutritionally deficit Malagasy winter. Finally, we quantify forearm, tibia, and ear length growth rates in juvenile bats, demonstrating both faster growth and more protracted development times for P. rufus as compared with E. dupreanum and R. madagascariensis. The longer development period for the already-threatened P. rufus further undermines the conservation status of this species as human hunting is particularly detrimental to population viability during reproductive periods. Our work highlights the importance of longitudinal field studies in collecting critical data for mammalian conservation efforts and human public health alike.

Funder

National Institutes of Health

DARPA

Adolph C. and Mary Sprague Miller Institute for Basic Research in Science, University of California Berkeley

Branco Weiss Society in Science

Publisher

Oxford University Press (OUP)

Subject

Nature and Landscape Conservation,Genetics,Animal Science and Zoology,Ecology,Ecology, Evolution, Behavior and Systematics

Reference85 articles.

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