Frugivore Traits Predict Plant–Frugivore Interactions Using Generalized Joint Attribute Modeling

IF 2.3 2区 生物学 Q2 ECOLOGY Ecology and Evolution Pub Date : 2025-01-16 DOI:10.1002/ece3.70772
Laurel R. Yohe, Leith B. Leiser-Miller, Zofia A. Kaliszewska, Susan R. Whitehead, Sharlene E. Santana, Liliana M. Dávalos
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Abstract

Under an adaptive hypothesis, the reciprocal influence between mutualistic plants and frugivores is expected to result in suites of matching frugivore and plant traits that structure fruit consumption. Recent work has suggested fruit traits can represent adaptations to broad groups of functionally similar frugivores, but the role of frugivore traits and within-species variation in structuring fruit consumption is less understood. To address these knowledge gaps, we assess the presence of reciprocal trait matching for the mutualistic ecological network comprising of Carollia bats that feed on and disperse Piper seeds. We used generalized joint attribute modeling (GJAM), a Bayesian modeling approach that simultaneously accounts for multiple sources of variance across trait types. In support of frugivore adaptation to their dietary composition and suggesting niche partitioning among Carollia bats, we find differential consumption of a suite of Piper species influenced by bat traits such as body size; however, the Piper morphological traits considered had no effect on bat consumption. Slow evolutionary rates, dispersal by other vertebrates, and unexamined fruit traits, such as Piper chemical bouquets, may explain the lack of association between bat Piper consumption and fruit morphological traits. We have identified a potential asymmetric influence of frugivore traits on plant–frugivore interactions, providing a template for future trait analyses of plant–animal networks. As intraspecific trait variation is rarely included in studies on trait matching, this paper contributes to closing that important knowledge gap.

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利用广义联合属性模型预测植物与Frugivore的相互作用。
在适应性假设下,共生植物和食果动物之间的相互影响预计会导致一系列匹配的食果动物和植物性状,这些性状构成了水果消费。最近的研究表明,水果性状可以代表对功能相似的食果动物的广泛群体的适应,但食果动物性状和种内变异在结构水果消费中的作用尚不清楚。为了解决这些知识差距,我们评估了互惠生态网络中互惠性状匹配的存在,该网络由以Piper种子为食并传播Piper种子的Carollia蝙蝠组成。我们使用了广义联合属性建模(GJAM),这是一种贝叶斯建模方法,可以同时考虑跨性状类型的多个方差来源。为了支持果食性动物对其饮食组成的适应性,并表明卡罗莱亚蝙蝠之间存在生态位分配,我们发现一组Piper物种的不同食用量受到蝙蝠特征(如体型)的影响;然而,所考虑的Piper形态特征对蝙蝠的消费没有影响。缓慢的进化速度,其他脊椎动物的传播,以及未经检验的水果特征,如胡椒的化学花束,可能解释了蝙蝠食用胡椒和水果形态特征之间缺乏联系。我们已经确定了食果动物性状对植物-食果动物相互作用的潜在不对称影响,为未来植物-动物网络的性状分析提供了模板。由于种内性状变异很少被纳入性状匹配的研究,本文有助于缩小这一重要的知识差距。
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来源期刊
CiteScore
4.40
自引率
3.80%
发文量
1027
审稿时长
3-6 weeks
期刊介绍: Ecology and Evolution is the peer reviewed journal for rapid dissemination of research in all areas of ecology, evolution and conservation science. The journal gives priority to quality research reports, theoretical or empirical, that develop our understanding of organisms and their diversity, interactions between them, and the natural environment. Ecology and Evolution gives prompt and equal consideration to papers reporting theoretical, experimental, applied and descriptive work in terrestrial and aquatic environments. The journal will consider submissions across taxa in areas including but not limited to micro and macro ecological and evolutionary processes, characteristics of and interactions between individuals, populations, communities and the environment, physiological responses to environmental change, population genetics and phylogenetics, relatedness and kin selection, life histories, systematics and taxonomy, conservation genetics, extinction, speciation, adaption, behaviour, biodiversity, species abundance, macroecology, population and ecosystem dynamics, and conservation policy.
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