4.5 Article

A multi-tasking stomach: functional coexistence of acid-peptic digestion and defensive body inflation in three distantly related vertebrate lineages

期刊

BIOLOGY LETTERS
卷 18, 期 2, 页码 -

出版社

ROYAL SOC
DOI: 10.1098/rsbl.2021.0583

关键词

Histrio histrio; Cephaloscyllium ventriosum; Sufflogobius bibarbatus; Brachaluteres jacksonianus; proton pump; gene loss

资金

  1. NSERC
  2. CFI
  3. NSF [1754994]
  4. Ontario Graduate Scholarship

向作者/读者索取更多资源

Puffer and porcupine fishes have the ability to inflate themselves by swallowing seawater to defend against predation, but this mechanism leads to the loss of stomach function. Through studying the stomach phenotype and genotype of four different fish species, it was found that this inflation mechanism is only present in Tetraodontiformes and is not a selective pressure for stomach loss in other gastric inflating fishes.
Puffer and porcupine fishes (families Diodontidae and Tetraodontidae, order Tetradontiformes) are known for their extraordinary ability to triple their body size by swallowing and retaining large amounts of seawater in their accommodating stomachs. This inflation mechanism provides a defence to predation; however, it is associated with the secondary loss of the stomach's digestive function. Ingestion of alkaline seawater during inflation would make acidification inefficient (a potential driver for the loss of gastric digestion), paralleled by the loss of acid-peptic genes. We tested the hypothesis of stomach inflation as a driver for the convergent evolution of stomach loss by investigating the gastric phenotype and genotype of four distantly related stomach inflating gnathostomes: sargassum fish, swellshark, bearded goby and the pygmy leatherjacket. Strikingly, unlike in the puffer/porcupine fishes, we found no evidence for the loss of stomach function in sargassum fish, swellshark and bearded goby. Only the pygmy leatherjacket (Monochanthidae, Tetraodontiformes) lacked the gastric phenotype and genotype. In conclusion, ingestion of seawater for inflation, associated with loss of gastric acid secretion, is restricted to the Tetraodontiformes and is not a selective pressure for gastric loss in other reported gastric inflating fishes.

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