Okeanos - Instituto de Investigação em Ciências do Mar, Universidade dos Açores & IMAR - Instituto do Mar, Horta, Portugal.
Centro de Matemática, Aplicações Fundamentais e Investigação Operacional, Faculdade de Ciências, Universidade de Lisboa, Lisboa, Portugal.
Proc Biol Sci. 2021 Jul 14;288(1954):20211156. doi: 10.1098/rspb.2021.1156. Epub 2021 Jul 7.
Animals use varied acoustic signals that play critical roles in their lives. Understanding the function of these signals may inform about key life-history processes relevant for conservation. In the case of fin whales (), that produce different call types associated with different behaviours, several hypotheses have emerged regarding call function, but the topic still remains in its infancy. Here, we investigate the potential function of two fin whale vocalizations, the song-forming 20-Hz call and the 40-Hz call, by examining their production in relation to season, year and prey biomass. Our results showed that the production of 20-Hz calls was strongly influenced by season, with a clear peak during the breeding months, and secondarily by year, likely due to changes in whale abundance. These results support the reproductive function of the 20-Hz song used as an acoustic display. Conversely, season and year had no effect on variation in 40-Hz calling rates, but prey biomass did. This is the first study linking 40-Hz call activity to prey biomass, supporting the previously suggested food-associated function of this call. Understanding the functions of animal signals can help identifying functional habitats and predict the negative effects of human activities with important implications for conservation.
动物使用各种声学信号,这些信号在它们的生活中起着至关重要的作用。了解这些信号的功能可以为与保护相关的关键生活史过程提供信息。在长须鲸()的情况下,它们会产生与不同行为相关的不同叫声类型,关于叫声功能已经出现了几种假设,但这个话题仍然处于起步阶段。在这里,我们通过检查与季节、年份和猎物生物量的关系,研究了两种长须鲸发声的潜在功能,即形成 20-Hz 叫声的歌声和 40-Hz 叫声。我们的结果表明,20-Hz 叫声的产生强烈受季节影响,在繁殖月份有明显的高峰,其次受年份影响,这可能是由于鲸鱼数量的变化。这些结果支持了 20-Hz 歌声作为声学展示的繁殖功能。相反,季节和年份对 40-Hz 叫声率的变化没有影响,但猎物生物量有影响。这是首次将 40-Hz 叫声活动与猎物生物量联系起来的研究,支持了先前关于这种叫声与食物有关的功能的建议。了解动物信号的功能可以帮助识别功能栖息地,并预测人类活动的负面影响,这对保护具有重要意义。