Crested Tits prefer pine forest but not mature forest: insights from an early spring passive acoustic survey
DOI:
https://doi.org/10.51812/of.154972Avainsanat:
birds, mature forest, passive acoustic survey, human-created structuresAbstrakti
The Crested Tit (Lophophanes cristatus) is a relatively common species in Finland but is declining likely due to increasing anthropogenic pressures and habitat degradation. Here, we study habitat preferences of Crested Tits in Southwest Finland. We conducted a passive acoustic survey of the species’ presence and absence just prior to breeding in spring 2020 based on 1-week recordings made in 285 forested sites that were about 1 km from each other. We found that Crested Tits prefer a higher amount of pine foliage within a 100-meter radius but not at 400-meter radius. Contrary to our expectation, Crested Tit occurrences showed no preference for mature forests. Additionally, we found that Crested Tits avoid proximity to houses. No habitat preference was evident at the scale of 400-meter radius, probably because a significant proportion of habitat types are not used by the species at this scale. Lastly, despite the overall decline in the Crested Tit population in Finland, we found Crested Tits to be present in 68% of our sites, emphasizing the robustness of passive acoustic surveys as a valuable tool for studying avian habitat preferences and population monitoring. The findings contribute to our understanding of Crested Tit ecology in the face of habitat degradation and declining populations, offering insights for conservation measures in this region.
Lähdeviitteet
Ahola, M., Laaksonen, T., Eeva, T. & Lehikoinen, E. 2007: Climate change can alter competitive relationship between resident and migratory birds. — Journal of Animal Ecology 76: 1045–1052. https://doi.org/10.1111/j.1365-2656.2007.01294.x
Alatalo, R.V., Gustafsson, L., Lindén, M. & Lundberg, A. 1985: Interspecific competition and niche shifts in tits and the goldcrest: an experiment. — Journal of Animal Ecology 54: 977–984. https://doi.org/10.2307/4391
Arneill, G.E., Critchley, E.J., Wischnewski, S., Jessopp, M.J. & Quinn, J.L. 2020: Acoustic activity across a seabird colony reflects patterns of within-colony flight rather than nest density. — Ibis 162: 416–428. https://doi.org/10.1111/ibi.12740
Astaras, C., Valeta, C. & Vasileiadis, I. 2022: Acoustic ecology of tawny owl (Strix aluco) in the Greek Rhodope Mountains using passive acoustic monitoring methods. — Folia Oecologica 49: 110–116. https://doi.org/10.2478/foecol-2022-0012
Atiénzar, F., Barba, E., Holleman, L.J.M. & Belda, E.J. 2009: Nesting habitat requirements and nestling diet in the Mediterranean populations of Crested Tits Lophophanes cristatus. — Acta Ornithologica 44: 101–108. https://doi.org/10.3161/000164509X482678
Baroni, D., Hanzelka, J., Raimondi, T., Gamba, M., Brommer, J.E. & Laaksonen, T. 2023: Passive acoustic survey reveals the abundance of a low-density predator and its dependency on mature forests. — Landscape Ecology 38: 1939–1954. https://doi.org/10.1007/s10980-023-01667-1
Berlusconi, A., Martinoli, A., Wauters, L., Tesoro, G., Martini, S., Clerici, E., Guenzani, G., Pozzi, G., Rubolini, D., Morganti, M. & Martinoli, A. 2022: Year-round multi-scale habitat selection by Crested Tit (Lophophanes cristatus) in lowland mixed forests (northern Italy). — Avian Research 13: Article 100058. https://doi.org/10.1016/j.avrs.2022.100058
BirdLife International. 2024: Species factsheet: Crested Tit Lophophanes cristatus. — Downloaded from https://datazone.birdlife.org/species/factsheet/crested-tit-lophophanes-cristatus on 17/10/2024.
Brooks, M.E., Kristensen, K., van Benthem, K.J., Magnusson, A., Berg, C.W., Nielsen, A., Skaug, H.J., Maechler, M. & Bolker, B.M. 2017: Modeling zero-inflated count data with glmmTMB. — bioRxiv 132753. https://doi.org/10.1101/132753
Brotons, L., Mönkkönen, M., Huhta, E., Nikula, A. & Rajasärkkä, A. 2003: Effects of landscape structure and forest reserve location on old-growth forest bird species in northern Finland. — Landscape Ecology 18: 377–393. https://doi.org/10.1023/A:1026148825138
Conenna, I., Valkama, J. & Chamberlain, D. 2017: Interactive effects of climate and forest canopy cover on Goshawk productivity. — Journal of Ornithology 158: 799–809. https://doi.org/10.1007/s10336-017-1432-0
Cramp, S. & Perrins, C.M. (ed.) 1993: Handbook of the birds of Europe, the Middle East and North Africa. The Birds of the Western Palearctic. Vol. VII. — Oxford University Press, Oxford.
Crick, H.Q.P. & Sparks, T.H. 1999: Climate change related to egg-laying trends. — Nature 399: 423–424. https://doi.org/10.1038/20839
Dormann, C.F., Elith, J., Bacher, S., Buchmann, C., Carl, G., Carré, G., Marquéz, J.R.G., Gruber, B., Lafourcade, B., Leitão, P.J., Münkemüller, T., McClean, C., Osborne, P.E., Reineking, B., Schröder, B., Skidmore, A.K., Zurell, D. & Lautenbach, S. 2013: Collinearity: a review of methods to deal with it and a simulation study evaluating their performance. — Ecography 36: 27–46. https://doi.org/10.1111/j.1600-0587.2012.07348.x
Eeva, T., Andelmin, P., Hokkanen, T., Riivari, P., Ahola, M.P., Laaksonen, T. & Lehikoinen, E. 2012: Breeding time trends of the Crested Tit (Lophophanes cristatus) in southern Finland: comparison of data sources. — Journal of Ornithology 153: 653–661. https://doi.org/10.1007/s10336-011-0783-1
Fraixedas, S., Lehikoinen, A. & Linden, A. 2015: Impacts of climate and land-use change on wintering bird populations in Finland. — Journal of Avian Biology 46: 63–72. https://doi.org/10.1111/jav.00441
Gregory, R.D., Vorisek, P., van Strien, A., Gmelig Meyling, A.W., Jiguet, F., Fornasari, L., Reif, J., Chylarecki, P. & Burfield, I.J. 2007: Population trends of widespread woodland birds in Europe. — Ibis 149: 78–97. https://doi.org/10.1111/j.1474-919X.2007.00698.x
Hagens, S.V., Rendall, A.R. & Whisson, D.A. 2018: Passive acoustic surveys for predicting species’ distributions: optimising detection probability. — PLoS ONE 13(7): e0199396. https://doi.org/10.1371/journal.pone.0199396
Hartley, P.H.T. 1987: Ecological aspects of the foraging behaviour of Crested Tits Parus cristatus. — Bird Study 34(2): 107–111. https://doi.org/10.1080/00063658709476945
Järvinen, O. & Väisänen, R.A. 1978: Long-term population changes of the most abundant south Finnish forest birds during the past 50 years. — Journal of Ornithology 119: 441–449. https://doi.org/10.1007/BF01643135
Kumpula, S., Vatka, E., Orell, M. & Rytkönen, S. 2023: Effects of forest management on the spatial distribution of the Willow Tit (Poecile montanus). — Forest Ecology and Management 529: 120694. https://doi.org/10.1016/j.foreco.2022.120694
Lehikoinen, A. & Väisänen, R.A. 2023: Pesivien maalintujen kannanmuutokset Suomessa 1975–2022. — Linnutvuosikirja 2022: 14–29. (In Finnish; English title: Monitoring population changes of land bird species breeding in Finland in 1975–2022.)
Lens, L. & Dhondt, A.A. 1993: Individual variation in mate care by alpha males in Crested Tit winter flocks. — Behavioral Ecology and Sociobiology 33: 79–85. https://doi.org/10.1007/BF00171659
Lens, L. & Dhondt, A.A. 1994: Effects of habitat fragmentation on the timing of Crested Tit Parus cristatus natal dispersal. — Ibis 136(2): 147–152. https://doi.org/10.1111/j.1474-919X.1994.tb01078.x
Linke, S., Gifford, T., Desjonquères, C., Tonolla, D., Aubin, T., Barclay, L., Karaconstantis, C., Kennard, M.J., Rybak, F. & Sueur, J. 2018: Freshwater ecoacoustics as a tool for continuous ecosystem monitoring. — Frontiers in Ecology and the Environment 16: 231–238. https://doi.org/10.1002/fee.1779
Maícas, R. & Haeger, J.F. 2004: Pine plantations as a breeding habitat for a hole-nesting bird species, Crested Tit (Parus cristatus), in southern Spain. — Forest Ecology and Management 195(1–2): 267–278. https://doi.org/10.1016/j.foreco.2004.03.021
Mäkisara, K., Katila, M., Peräsaari, J. & Tomppo, E. 2016: The multi-source national forest inventory of Finland — methods and results 2013. — Natural Resources and Bioeconomy Studies 10, Natural Resources Institute Finland (Luke). http://urn.fi/URN:ISBN:978-952-326-186-0
Marzluff, J.M. 2001: Worldwide urbanization and its effects on birds. — In Avian Ecology and Conservation in an Urbanizing World (ed. Marzluff, J.M., Bowman, R. & Donnelly, R.): 19–47. Springer, Boston, MA. https://doi.org/10.1007/978-1-4615-1531-9_2
McKinney, M.L. 2008: Effects of urbanization on species richness: a review of plants and animals. — Urban Ecosystems 11: 161–176. https://doi.org/10.1007/s11252-007-0045-4
Melo, I., Llusia, D., Bastos, R.P. & Signorelli, L. 2021: Active or passive acoustic monitoring? Assessing methods to track anuran communities in tropical savanna wetlands. — Ecological Indicators 132: 108305. https://doi.org/10.1016/j.ecolind.2021.108305
Morosinotto, C., Villers, A., Varjonen, R. & Korpimäki, E. 2017: Food supplementation and predation risk in harsh climate: interactive effects on abundance and body condition of tit species. — Oikos 126: 863–873. https://doi.org/10.1111/oik.03476
Naimi, B., Hamm, N.A.S., Groen, T.A., Skidmore, A.K. & Toxopeus, A.G. 2014: Where is positional uncertainty a problem for species distribution modelling? — Ecography 37(2): 191–203. https://doi.org/10.1111/j.1600-0587.2013.00205.x
Orlando, G., Varesio, A. & Chamberlain, D. 2021: Field evaluation for playback surveys: species-specific detection probabilities and distance estimation errors in a nocturnal bird community. — Bird Study 68(1): 90–99. https://doi.org/10.1080/00063657.2021.1968790
QGIS Development Team. 2020: QGIS Geographic Information System. — Open-Source Geospatial Foundation Project.
R Core Team. 2020: R: A language and environment for statistical computing. — R Foundation for Statistical Computing, Vienna, Austria.
Reiley, B.M. & Benson, T.J. 2019: Avian fitness consequences match habitat selection at the nest-site and landscape scale in agriculturally fragmented landscapes. — Ecology and Evolution 9(12): 7173–7183. https://doi.org/10.1002/ece3.5288
Rigal, S., Dakos, V., Alonso, H. & Devictor, V. 2023: Farmland practices are driving bird population decline across Europe. — Proceedings of the National Academy of Sciences 120(21): e2216573120. https://doi.org/10.1073/pnas.2216573120
Ross, S.R.P.J., O'Connell, D.P., Deichmann, J.L., Desjonquères, C., Gasc, A., Phillips, J.N., Sethi, S.S., Wood, C.M. & Burivalova, Z. 2023: Passive acoustic monitoring provides a fresh perspective on fundamental ecological questions. — Functional Ecology 37(4): 959–975. https://doi.org/10.1111/1365-2435.14275
Smith, D.G., Truskinger, A., Roe, P. & Watson, D.M. 2020: Do acoustically detectable species reflect overall diversity? A case study from Australia’s arid zone. — Remote Sensing in Ecology and Conservation 6(3): 286–300. https://doi.org/10.1002/rse2.173
Solonen, T. & Hildén, M. 2014: Breeding phenology in Great and Blue Tits (Parus spp.): are urban populations more resistant to climate change than rural ones? — Ornis Fennica 91(4): 209–219. https://doi.org/10.51812/of.133858
Sueur, J., Krause, B. & Farina, A. 2019: Climate change is breaking Earth's beat. — Trends in Ecology and Evolution 34(11): 971–973. https://doi.org/10.1016/j.tree.2019.07.014
Summers, R.W., Mavor, R.A., Buckland, S.T. & MacLennan, A.M. 1999: Winter population size and habitat selection of Crested Tits Parus cristatus in Scotland. — Bird Study 46(2): 230–242. https://doi.org/10.1080/00063659909461135
Virkkala, R., Rajasärkkä, A., Heikkinen, R.K., Kuusela, S., Leikola, N. & Pöyry, J. 2018: Birds in boreal protected areas shift northwards in the warming climate but show different rates of population decline. — Biological Conservation 226: 271–279. https://doi.org/10.1016/j.biocon.2018.08.015
Virkkala, R., Määttänen, A.-M. & Heikkinen, R.K. 2023: Clear-cuts and warming summers caused forest bird populations to decline in a southern boreal area. — Forest Ecology and Management 548: Article 121397. https://doi.org/10.1016/j.foreco.2023.121397
Wood, C.M., Champion, J., Brown, C., Brommelsiek, W., Laredo, I., Rogers, R. & Chaopricha, P. 2023: Challenges and opportunities for bioacoustics in the study of rare species in remote environments. — Conservation Science and Practice 5: e12941. https://doi.org/10.1111/csp2.12941
Yang, Y., Ye, Z., Zhang, Z. & Xiong, Y. 2025: Investigating the drivers of temporal and spatial dynamics in urban forest bird acoustic patterns. — Journal of Environmental Management 376: Article 124554. https://doi.org/10.1016/j.jenvman.2025.124554
Zhong, E., Guan, Z., Zhou, X., Zhao, Y., Li, H., Tan, S. & Hu, K. 2021: Application of passive acoustic monitoring technology in the monitoring of western black crested gibbons. — Biodiversity Science 29: 109–117. https://doi.org/10.17520/BIODS.2020215
Zuur, A.F., Ieno, E.N. & Elphick, C.S. 2010: A protocol for data exploration to avoid common statistical problems. — Methods in Ecology and Evolution 1(1): 3–14. https://doi.org/10.1111/j.2041-210X.2009.00001.x
Tiedostolataukset
Julkaistu
Numero
Osasto
Lisenssi
Copyright (c) 2022 Pegah Hamedani Raja, Daniele Baroni, Toni Laaksonen, Jon Egbert Brommer

Tämä työ on lisensoitu Creative Commons Nimeä 4.0 Kansainvälinen Julkinen -lisenssillä.


