4.6 Article

Unexpected Diversity of Feeding Modes among Chisel-Mouthed Ethiopian Labeobarbus (Cyprinidae)

期刊

WATER
卷 13, 期 17, 页码 -

出版社

MDPI
DOI: 10.3390/w13172345

关键词

adaptive radiation; ecological speciation; fishes; Africa; trophic resource partitioning; stable isotopes

资金

  1. Russian Science Foundation [19-14-00218]
  2. Russian Science Foundation [19-14-00218] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

This study reveals that scraper ecomorphs within the genus Labeobarbus exhibit different feeding modes, including periphyton-eating, herbivory-detritivory, and insectivory. The parallel divergence of sympatric ecomorphs with distinct feeding modes was identified in two geographically isolated basins. Significant differences in delta 15N values among sympatric scraper ecomorphs indicate the utilization of periphyton as a protein-rich food source by fishes.
Trophic resource partitioning is one of the main drivers of adaptive radiation. The evolutionary diversification of large African barbs, the genus Labeobarbus, seems to be related to mouth polymorphism. The chisel-mouthed or scraping phenotype has repeatedly evolved within Labeobarbus. At least five ecomorphs with a scraping mouth morphology were detected in the waters of the Ethiopian Highlands and can be provisionally classified into two groups: (i) Varicorhinus-like, and (ii) Smiling-like. Previously, all Labeobarbus with a scraping-mouth morphology were considered to be periphyton feeders. Using data on morphology, diet and stable isotope ratios (C and N), we addressed the question: does a scraping-mouth morphology predict feeding on periphyton? Our study revealed that five scraper ecomorphs exhibited three main feeding modes: (i) periphyton-eating, (ii) herbivory-detritivory, and (iii) insectivory. Two cases of the parallel divergence of sympatric ecomorphs with distinct feeding modes (herbivory-detritivory vs. insectivory) were revealed in two geographically isolated basins. A significant difference in delta 15N values was detected among sympatric scraper ecomorphs. A periphytonophagous scraper was rich in delta 15N values that are comparable with those in sympatric piscivorous fish. This data sheds light on the possibility of the utilization of periphyton as a protein-rich food by fishes.

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