Abstract
AbstractInsectivorous bats exhibit food preferences for specific attributes in their prey. Hardness has been defined as an important prey attribute, and in some cases a limiting factor in foraging decisions for smaller compared to larger bat species. The goal of this study was to identify which factors influence the selection of prey hardness in a vespertilionid bat community. We investigated food consumed by bats by analyzing fecal samples obtained from eight bat species coexisting in a mountain ecosystem of central Mexico and correlate non-phylogenetically and phylogenetically prey hardness to weather, bat´s body, cranial and ultrasonic call structure variables. Results showed that diet of vespertilionid bats was mainly represented by Diptera, Neuroptera, Lepidoptera and Coleoptera consumption. The qualitative prey hardness index (From soft 1 to hard 5) ranked bats as: Myotis melanorhinus, Corynorhinus mexicanus, Myotis volans, Myotis californicus (< 3); Myotis velifer (< 4); Eptesicus fuscus, Idionycteris phyllotis and Myotis thysanodes (> 4.2). Prey hardness was positively correlated to minimum and mean temperatures, bat´s body weight, total and forearm lengths, cranial variables as: zygomatic breadth, mandibular length, height of the coronoid process, lower molar width, C-M3 superior and inferior rows length and upper molar width; and negatively to ultrasonic variables as total slope, call duration, low and high frequencies, band width and frequency maximum power. Considering phylogenies, prey hardness positively correlated to mandibular length, C-M3 inferior and superior rows lengths (p < 0.05). Our results showed that environmental, morphological and echolocation variables can be used as predictors of preferred insect prey in a community of vespertilionid bats.
Publisher
Springer Science and Business Media LLC
Subject
Animal Science and Zoology,Ecology, Evolution, Behavior and Systematics
Reference96 articles.
1. Acosta R, Kong A (1991) Guía de las excursiones botánicas y micológicas al Cerro El Peñón y Cañada Grande del estado de Tlaxcala. IV Congreso Nacional de Micología, Universidad Autónoma de Tlaxcala, Sociedad Mexicana de Micología, Jardín Botánico Tizatlán, Gobierno del estado de Tlaxcala, Tlaxcala. Folleto de divulgación No. 8.
2. Aguirre LF, Herrel A, Van damme R, Hysen E (2002) Ecomorphological analysis of trophic niche partitioning in a tropical savannah bat community. Proceedings of the Royal Society of London, B. Biological Sciences 269:1271–1278. https://doi.org/10.1098/rspb.2002.2011
3. Aguirre LF, Herrel A, Van Damme R, Matthysen E (2003) The implications of food hardness for diet in bats. Functional Ecology 17: 201–212. https://www.jstor.org/stable/3599176
4. Anderson R, McBrayer LD, Herrel A (2008) Bite force in vertebrates: opportunities and caveats for use of a nonpareil whole-animal performance measure. Biol J Lin Soc 93:709–720. https://doi.org/10.1111/j.1095-8312.2007.00905.x
5. Arrizabalaga-Escudero A, Merckx T, García-Baquero G, Wahlberg N, Aizpurua O, Garin I, Goiti U, Aihartza J (2019) Trait-based functional dietary analysis provides a better insight into the foraging ecology of bats. J Anim Ecol 88:1587–1600. https://doi.org/10.1111/1365-2656.13055
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