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值得深入研究的内容:食果性鱼类牙齿压痕的力学原理。

Something to sink your teeth into: the mechanics of tooth indentation in frugivorous fishes.

作者信息

Rosen Jack, Cohen Karly, Donatelli Cassandra M, Summers Adam, Crofts Stephanie, Kolmann Matthew

机构信息

Department of Biology, University of Louisville, Louisville, KY, USA.

Friday Harbor Laboratories at University of Washington, Seattle, WA, USA.

出版信息

J R Soc Interface. 2025 Apr;22(225):20240725. doi: 10.1098/rsif.2024.0725. Epub 2025 Apr 16.

DOI:10.1098/rsif.2024.0725
PMID:40235459
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12001085/
Abstract

Frugivorous vertebrates engage in a mutualism with fruiting plants: the former receive a nutrient subsidy, and the latter benefit by having their seeds dispersed far from parent plants. Vertebrate frugivores like primates and bats have particular morphologies suited for gripping fruit and then pulverizing fruit soft tissues; however, variation among frugivores and fruits has made the identification of common frugivore phenotypes difficult. Here, we evaluated the performance of frugivorous fish (pacu and piranha; Serrasalmidae) dentitions when puncturing fruits and seeds and compared specialist frugivorous species to facultative frugivorous and non-herbivorous relatives. We also explored how fruit characteristics affect puncture performance and how the indentation of fruit differs mechanically from harder foods like nuts. Based on expectations from studies on frugivorous bats and primates, we expected that frugivore dentitions would exhibit low force and then high work when engaging fruit tissues. Aligning with our expectation, the specialized frugivorous pacu, , had dental performance that matched this low force, high work prediction. We also document how frugivory in omnivorous piranhas may be driven more by seed predation than a focus on softer fruit tissues like pulp. Overall, this study demonstrates remarkable similarity in the form and function of frugivore dentitions across vertebrates.

摘要

食果性脊椎动物与结果植物存在互利共生关系

前者获得营养补贴,后者则因种子被传播到远离母株的地方而受益。像灵长类动物和蝙蝠这样的脊椎动物食果者具有特殊的形态,适合抓取果实并随后粉碎果实的软组织;然而,食果者和果实之间的差异使得确定常见的食果者表型变得困难。在这里,我们评估了食果性鱼类(淡水白鲳和食人鱼;锯脂鲤科)在穿刺果实和种子时牙齿的性能,并将专门的食果性物种与其兼性食果性和非食草性亲属进行了比较。我们还探讨了果实特征如何影响穿刺性能,以及果实的压痕在机械方面与坚果等较硬食物有何不同。基于对食果性蝙蝠和灵长类动物研究的预期,我们预计食果者的牙齿在接触果实组织时会表现出低力然后高功。与我们的预期一致,专门的食果性淡水白鲳的牙齿性能符合这种低力、高功的预测。我们还记录了杂食性食人鱼的食果行为可能更多地是由种子捕食驱动的,而不是专注于像果肉这样较软的果实组织。总体而言,这项研究表明脊椎动物食果者牙齿的形态和功能具有显著的相似性。