AI Article Synopsis

  • Reverse evolution can occur through plasticity in trait expression, as demonstrated by the parasitic wasp Leptopilina heterotoma, which can switch fat synthesis on or off depending on environmental conditions.
  • Researchers found that this wasp activates fat production in low-fat environments and shuts it down in high-fat environments, indicating that fat synthesis hasn’t truly been lost but can be toggled based on need.
  • Genetic analysis of related parasitoid species and simulations suggests that many of them might also exhibit plasticity in fat synthesis, implying that apparent losses of traits may actually be reversible adaptations to varying environments.

Article Abstract

Numerous cases of evolutionary trait loss and regain have been reported over the years. Here, we argue that such reverse evolution can also become apparent when trait expression is plastic in response to the environment. We tested this idea for the loss and regain of fat synthesis in parasitic wasps. We first show experimentally that the wasp Leptopilina heterotoma switches lipogenesis on in a fat-poor environment, and completely off in a fat-rich environment. Plasticity suggests that this species did not regain fat synthesis, but that it can be switched off in some environmental settings. We then compared DNA sequence variation and protein domains of several more distantly related parasitoid species thought to have lost lipogenesis, and found no evidence for non-functionality of key lipogenesis genes. This suggests that other parasitoids may also show plasticity of fat synthesis. Last, we used individual-based simulations to show that a switch for plastic expression can remain functional in the genome for thousands of generations, even if it is only used sporadically. The evolution of plasticity could thus also explain other examples of apparent reverse evolution.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8032832PMC
http://dx.doi.org/10.1038/s41598-021-86736-8DOI Listing

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