Main functions of loud vocalization in populations of edible dormouse Glis glis

  • Mirosław Jurczyszyn Department of Systematic Zoology, Faculty of Biology, Adam Mickiewicz University, Uniwersytetu Poznańskiego 6, 61-614 Poznań, Poland
Keywords: number of loud calls, beech mast, resources defence

Abstract

The study aimed to determine when, during summer activity, males and females of the edible dormouse most often used loud calls. On this basis, an attempt was made to determine the main purpose of the emission of these calls. It was assumed that 1) if males have the most of loud calls in July, their emissions may be related primarily to the mating behaviour (which takes place during this period), and if they have the most of loud calls in August, their emissions are most likely concerned defence of food resources, 2) in females, most of this vocalization would occur in August due to the need to defend their food resources and 3) in both sexes, more vocalization would occur in the year of good beech fruit crop (when the dormice would reproduce) than in the year of no crop (when the dormice would not reproduce). To check these assumptions, the number of loud calls and “performances” (series of loud calls) emitted by the animals from two wild populations tracked by telemetry was noted. The mean number of “performances” and loud calls in males and females was higher in August than in July (when beech fruits ripen), but significant differences were found only for “performances”. Both males and females had significantly more “performances” and loud calls in the mast/breeding year than in the non-mast/non-breeding year. It seems that males and females use loud calls mainly to defend important resources and are, therefore, most often heard during the mast year.

References

Adamík, P., Poledník, L., Poledníková, K. & Romportl, D. (2019): Mapping an elusive arboreal rodent: Combining nocturnal acoustic surveys and citizen science data extends the known distribution of the edible dormouse (Glis glis) in the Czech Republic. – Mammalian Biology 99: 12–18. https://doi.org/10.1016/j.mambio.2019.09.011

van Belle, S., Estrada, A. & Garber, P. A. (2014): The function of loud calls in Black Howler Monkeys (Alouatta pigra): Food, mate, or infant defense? – American Journal of Primatology 76: 1196–1206. https://doi.org/10.1002/ajp.22304

Bieber, C. (1998): Population dynamics, sexual activity, and reproduction failure in the fat dormouse (Myoxus glis). – Journal of Zoology 244: 223–229. https://doi.org/10.1111/j.1469-7998.1998.tb00027.x

Bieber, C. & Ruf, T. (2004): Seasonal timing of reproduction and hibernation in the edible dormouse (Glis glis). Pp. 113–125. In: Barnes, B. M. & Carey, H. V. (eds): Life in the cold: evolution, mechanisms, adaptation, and application. – Institute of Arctic Biology, University of Alaska, Fairbanks, Twelfth International Hibernation Symposium. Biological Papers of the University of Alaska.

Bieber, C. & Ruf, T. (2009): Habitat differences affect life history tactics of a pulsed resource consumer, the edible dormouse (Glis glis). – Population Ecology 51: 481–492. https://doi.org/10.1007/s10144-009-0140-x

Blumstein, D. T. & Armitage, K. B. (1997): Does sociality drive the evolution of communicative complexity? A comparative test with ground–dwelling sciurid alarm calls. – American Naturalist 150: 179–200. https://doi.org/10.1086/286062

Brooks, M. E., Kristensen K., van Benthem, K. J., Magnusson, A., Casper W. Berg, C. W., Nielsen, A., Skaug, H. J., Maechler M. & Bolker, B. M. (2017): glmmTMB balances speed and flexibility among packages for zero-inflated generalized linear mixed modeling. – The R Journal 9: 378–400. https://doi.org/10.32614/RJ-2017-066

da Cunha, R., de Oliveira, D., Holzmann, I. & Kitchen, D. (2015): Production of loud and quiet calls in howler monkeys. Pp. 337–368. In: Kowalewski, M., Garber, P., Cortés-Ortiz, L., Urbani, B. & Youlatos, D. (eds): Howler monkeys. Developments in primatology: progress and prospects – Springer, New York. https://doi.org/10.1007/978-1-4939-1957-4_13

Ciechanowski, M. & Sachanowicz, K. (2014): Fat dormouse Glis glis (Rodentia: Gliridae) in Albania: synopsis of distributional records with notes on habitat use. – Acta Zoologica Bulgarica 66: 39–42.

Clutton–Brock, T. H. & Albon, S. D. (1979): The roaring of red deer and the evolution of honest advertisement. – Behaviour 69: 145–170. https://doi.org/10.1163/156853979X00449

Ey, E. & Fischer, J. (2009): The “acoustic adaptation hypothesis” – a review of the evidence from birds, anurans and mammals. – Bioacoustics 19: 21–48. https://doi.org/10.1080/09524622.2009.9753613

Fietz, J., Schlund, W., Dausmann, K. H., Regelmann, M. & Heldmaier, G. (2004): Energetic constraints on sexual activity in the male edible dormouse (Glis glis). – Oecologia 138: 202–209. https://doi.org/10.1007/s00442-003-1423-0

Fietz, J., Pflug, M., Schlund, W. & Tataruch, F. (2005): Influences of the feeding ecology on body mass and possible implications for reproduction in the edible dormouse (Glis glis). – Journal of Comparative Physiology B 175: 45–55. https://doi.org/10.1007/s00360-004-0461-1

Fietz, J., Kager, T. & Schauer, S. (2009): Is energy supply the trigger for reproductive activity in male edible dormice (Glis glis)? – Journal of Comparative Physiology B 179: 829–837. https://doi.org/10.1007/s00360-009-0364-2

Garstang, M. (2004): Long-distance, low-frequency elephant communication. – Journal of Comparative Physiology A 190: 791–805. https://doi.org/10.1007/s00359-004-0553-0

Goldingay, R. L. (1994): Loud calls of the Yellow-bellied glider, Petaurus australis: territorial behaviour by an arboreal marsupial? – Australian Journal of Zoology 42: 279-293. https://doi.org/10.1071/ZO9940279

Harrington, F. H. & Mech, L. D. (1979): Wolf howling and its role in territory maintenance. – Behaviour 68: 207–249. https://doi.org/10.1163/156853979X00322

Hoodless, A. & Morris, P. A. (1993): An estimate of population density of the fat dormouse (Glis glis). – Journal of Zoology 230: 337–340.

Jurczyszyn, M. (1995): Population density of Myoxus glis (L.) in some forest biotopes. – Hystrix 6: 265–271.

Jurczyszyn M. (1998): Methods of detecting edible dormouse Myoxus glis (L.) in the field. – Przegląd Przyrodniczy 42: 247–250. [in Polish]

Jurczyszyn, M. (2018): Food and foraging preferences of the edible dormouse Glis glis at two sites in Poland. – Folia Zoologica 67: 83–90. https://doi.org/10.25225/fozo.v67.i2.a5.2018

Jurczyszyn, M. (2020): Radio-transmitters gnawed by edible dormice Glis glis in populations of different density. – Mammalia 84: 493–496. https://doi.org/10.1515/mammalia-2019-0072

Jurczyszyn, M., Kozik, B., Donarska, A. & Czapracka A. (2018): Edible dormouse Glis glis in Pieniny National Park. – Chrońmy Przyrodę Ojczystą 74: 173–180. [in Polish]

Kager, T. & Fietz, J. (2009): Food availability in spring influences reproductive output in the seed–preying edible dormouse (Glis glis). – Canadian Journal of Zoology 87: 555–565. https://doi.org/10.1139/Z09-040

Kantorowicz, W. (2000): Half a century of seed years in major tree species of Poland. – Silvae Genetica 49: 245–249.

Kitchen, D., da Cunha, R., Holzmann, I. & de Oliveira, D. (2015): Function of loud calls in howler monkeys. Pp. 369–399. In: Kowalewski, M., Garber, P., Cortés-Ortiz, L., Urbani, B. & Youlatos, D. (eds): Howler monkeys. Developments in primatology: progress and prospects. – Springer, New York. https://doi.org/10.1007/978-1-4939-1957-4_14

Kryštufek, B. (2010): Glis glis (Rodentia: Gliridae). – Mammalian Species 42: 195–206. https://doi.org/10.1644/865.1

Kryštufek, B., Hudoklin, A. & Pavlin, D. (2003): Population biology of the edible dormouse Glis glis in a mixed montane forest in central Slovenia over three years. – Acta Zoologica Academiae Scientiarum Hungaricae 49 (Suppl. 1): 85–97.

Kurek, P., Skowron, B. & Święciak, T. (2007): Records of Glis glis (L., 1766) in the vicinity of Olsztyn and Złoty Potok in the Wyżyna Częstochowska Upland (S Poland). – Chrońmy Przyrodę Ojczystą 63: 91–96. [in Polish]

Lebl, K., Kürbich, K., Bieber, C. & Ruf, T. (2010): Energy or information? The role of seed availability for reproductive decisions in edible dormice. – Journal of Comparative Physiology B 180: 447–456. https://doi.org/10.1007/s00360-009-0425-6

Mandl, I., Schwitzer, C. & Holderied, M. (2019): Sahamalaza Sportive Lemur, Lepilemur sahamalaza, vocal communication: call use, context and gradation. – Folia Primatologica 90: 336–360. https://doi.org/10.1159/000493939

Matrosova, V. A., Schneiderová, I., Volodin, I. A. & Volodina, E. V. (2012): Species-specific and shared features in vocal repertoires of three Eurasian ground squirrels (genus Spermophilus). – Acta Theriologica 57: 65–78. https://doi.org/10.1007/s13364-011-0046-9

Mortelliti, A., Santulli Sanzo, G. & Boitani, L. (2009): Species’ surrogacy for conservation planning: caveats from comparing the response of three arboreal rodents to habitat loss and fragmentation. – Biodiversity and Conservation 18: 1131–1145. https://doi.org/10.1007/s10531-008-9477-2

Oliveira, D. A. G. & Ades, C. (2004): Long-distance calls in Neotropical primates. – Anais da Academia Brasileira de Ciências 76: 393–398. https://doi.org/10.1590/S0001-37652004000200031

Owings, D. H. & Morton, E. S. (1998): Animal vocal communication: A new approach. – Cambridge University Press, Cambridge, 289 pp. https://doi.org/10.1017/CBO9781139167901

Ruf, T., Fietz, J., Schlund, W. & Bieber, C. (2006): High survival in poor years: life history tactics adapted to mast seeding in the edible dormouse. – Ecology 87: 372–381. https://doi.org/10.1890/05-0672

Ryan, M. J. & Kime, N. M. (2002): Selection on long distance acoustic signals. Pp. 225–274. In: Simmons, A., Fay, R. R. & Popper, A. N. (eds): Acoustic communication. – Springer, New York. https://doi.org/10.1007/0-387-22762-8_5

Schlund, W., Scharfe, F. & Ganzhorn, J. U. (2002): Long-term comparison of food availability and reproduction in the edible dormouse (Glis glis). – Mammalian Biology 67: 219–232. https://doi.org/10.1078/1616-5047-00033

Slater, P. J. B. (1983): The study of communication. Pp. 9–42. In: Halliday, T. R. & Slater, P. J. B. (eds): Animal behaviour. Vol. 2. – Blackwell Scientific, Oxford.

Soltis, J. (2010): Vocal communication in African elephants (Loxodontia africana). – Zoo Biology 29: 192–209. https://doi.org/10.1002/zoo.20251

Sperber, A. L., Werner, L. M., Kappeler, P. M. & Fichtel, C. (2017): Grunt to go – Vocal coordination of group movements in redfronted lemurs. – Ethology 123: 894–905. https://doi.org/10.1111/eth.12663

Storch, G. (1978): Glis glis (Linnaeus, 1766) – Siebenschläfer. Pp. 243–258. In: Niethammer, J. & Krapp, F. (eds): Handbuch der Säugetiere Europas. Band 1. – Akademische Verlags­gesellschaf, Wiesbaden.

Suszka, B. (1990): Rozmnażanie generatywne [Sexual reproduction of beech]. Pp. 375–498. In: Białobok, S. (ed.): Buk zwyczajny Fagus sylvatica L. [European beech Fagus sylvatica L.] – PWN, Poznań. [in Polish]

Ściński, M. & Borowski, Z. (2008): Spatial organization of the fat dormouse (Glis glis) in an oak-hornbeam forest during the mating and post-mating season. – Mammalian Biology 73: 119–127. https://doi.org/10.1016/j.mambio.2007.01.002

Wilch, S. A. & Nunn, C. L. (2002): Do male “long-distance calls” function in mate defence? A comparative study of long-distance calls in primates. – Behavioral Ecology and Sociobiology 52: 474–484. https://doi.org/10.1007/s00265-002-0541-8

Vietinghoff–Riesch, A. Frhr von (1960): Der Siebenschläfer (Glis glis L.). Pp. 1–196. In: Müller–Using, D. (ed.): Monographien der Wildsäugetiere. – Gustav Fischer Verlag, Jena.

Zimmermann, E. (1995): Loud calls in nocturnal prosimians: structure, evolution and ontogeny. Pp. 47–72. In: Zimmermann, E., Newman, J. D. & Jürgens, U. (eds): Current topics in primate vocal communication. – Plenum Press, New York. https://doi.org/10.1007/978-1-4757-9930-9_3

Published
2023-02-28
How to Cite
JurczyszynM. (2023). Main functions of loud vocalization in populations of edible dormouse Glis glis. Acta Zoologica Academiae Scientiarum Hungaricae, 69(1), 73-82. https://doi.org/10.17109/AZH.69.1.73.2023