AI Article Synopsis

  • Cave animals are valuable for researching adaptive evolution, yet the survival mechanisms of surface species in caves are not well understood.
  • A study on a fish species in a stream-cave system found that it resides and spawns in the cave, marking it as the first cavefish identified in the Dinaric Karst.
  • The research demonstrated that morphological and physiological differences between cave and surface fish were not due to genetic divergence but rather phenotypic plasticity, as lab conditions eliminated these differences, indicating adaptability to cave environments.

Article Abstract

Cave animals are an excellent model system for studying adaptive evolution. At present, however, little is known about the mechanisms that enable surface colonizers to survive in the challenging environment of caves. One possibility is that these species have the necessary genetic background to respond with plastic changes to the pressures of underground habitats. To gain insight into this process, we conducted a comparative study with the fish species , which occurs in a hydrological system consisting of an interconnected stream and a cave. Results showed that resided year-round and spawned in Sušik cave, making it the first known cavefish in the Dinaric Karst. Cave and surface populations differed in morphological and physiological characteristics, as well as in patterns of gene expression without any evidence of genetic divergence. To test whether observed trait differences were plastic or genetic, we placed adult fish from both populations under light/dark or constant dark conditions. Common laboratory conditions erased all morphometric differences between the two morphs, suggesting phenotypic plasticity is driving the divergence of shape and size in wild fish. Lighter pigmentation and increased fat deposition exhibited by cave individuals were also observed in surface fish kept in the dark in the laboratory. Our study also revealed that specialized cave traits were not solely attributed to developmental plasticity, but also arose from adult responses, including acclimatization. Thus, we conclude that can adapt to cave conditions, with phenotypic plasticity playing an important role in the process of cave colonization.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10415781PMC
http://dx.doi.org/10.24272/j.issn.2095-8137.2022.528DOI Listing

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