Atlantic killifish able to adapt to high levels of pollution

environmentmarine lifepollution adaptationatlantic killifishenvironmental genomicsgenetic diversity
A comparison of a normally developed Atlantic killifish embryo (Pic 1) and a PCB-affected embryo (Pic 2): The fish has a deformed heart. Killifish that have evolved tolerance to chemical exposure show limited signs of developmental defects. (c) Bryan Clark/U.S. EPA

Wild Atlantic killifish populations have been found to possess the ability to adapt to toxic pollution, according to a new report published in the Science journal. A collaborative team of researchers from several institutions have discovered that some populations of this fish living in urban estuaries are up to 8,000 times more resistant than others to highly toxic industrial pollutants like dioxins, heavy metals and hydrocarbons. To identify the mechanism behind the adaptation, the genomes of four wild populations of pollution-tolerant killifish were compared with four non-tolerant populations. The genes responsible for the trait were found to be those involved in the aryl hydrocarbon receptor (AHR) signalling pathway, which combined with observations of desensitisation of this pathway in tolerant populations, led the researchers to conclude that the AHR pathway was a key target of natural selection. According to a press release issued by the University of Birmingham: " The team also showed that the potentially negative effects of desensitisation of the AHR pathway were ameliorated through compensatory adaptations in terms of cell cycle regulation and immune system function. This, combined with the diversity of pollutants present in estuaries, results in a relatively complex adaptive genotype in wild populations compared to that of laboratory models. Professor John Colbourne, the University's Chair of Environmental Genomics oversaw the sequencing of the genomes. He said that the report highlighted the complexity of the processes involved in the fish's adaptation, saying that the Atlantic killifish was well-positioned to evolve the necessary adaptations due to their large population sizes and relatively high level of DNA diversity in their populations. He added, " It also demonstrates how the DNA of populations that differ in their susceptibility to pollutants can reveal 'signatures' of the adverse effects of chemicals in the environment. Despite their findings, the research team cautions against using their discovery to justify polluting the natural environment. Lead author Andrew Whitehead, associate professor in the University of California Davis' Department of Environmental Toxicology said, " Unfortunately, most species we care about preserving probably can't adapt to these rapid changes because they don't have the high levels of genetic variation that allow them to evolve quickly. " Read more: The genomic landscape of rapid repeated evolutionary adaptation to toxic pollution in wild fish

A comparison of a normally developed Atlantic killifish embryo (Pic 1) and a PCB-affected embryo (Pic 2): The fish has a deformed heart. Killifish that have evolved tolerance to chemical exposure show limited signs of developmental defects. (c) Bryan Clark/U.S. EPA
Atlantic killifish like this one have evolved to adapt to highly toxic levels of pollution.
(c) Andrew Whitehead/UC Davis

Ez a cikk automatikusan lett lefordítva, és apróbb pontatlanságokat tartalmazhat; kétség esetén kérjük, tekintsd meg az eredeti angol változatot.

Több

Miyagi Diving Service High Bridge
Scuba Diving in Japan: The Story of High Bridge in Onagawa
AI KB

Búvárkodás Japánban: A High Bridge története Onagawában

Fedezze fel a búvárkodást Japánban az onagawai High Bridge történetén keresztül, amely 15 évvel a földrengés után összeköti a búvárokat, az óceánt és a közösséget.

Ma
mike-bergmann-unsplash
Making Better Choices: What Is the Most Sustainable Seafood?
AI KB

Jobb döntések: Mi a legfenntarthatóbb tengeri étel?

Mi a legfenntarthatóbb tengeri étel? Tudja meg, hogyan választhatnak a tenger szerelmesei fenntartható tengeri ételeket, hogyan csökkenthetik a járulékos fogást, és hogyan támogathatják az egészségesebb tengeri ökoszisztémákat.

2 nappal ezelőtt
wei-shang
Mermaid Tails: 10 Stunning Designs in 2026
AI KB

Mermaid Tails: 10 lenyűgöző dizájn 2026-ban

Fedezze fel a 2026-os év 10 lenyűgöző Mermaid farokját, a szövetből készült faroktól a valósághű szilikon változatokig, úszáshoz, Underwater fotózáshoz és az SSI Mermaid képzéshez.

4 nappal ezelőtt
Online Nitrox Certification: The New SSI Enriched Air Nitrox Program
AI KB

Online Nitrox minősítés: az új SSI Enriched Air Nitrox program

Online nitrox minősítést keres? Tudja meg, hogyan működik az SSI Enriched Air Nitrox program, mit tartalmaz a Nitrox 32 és a Nitrox 40, valamint milyen előnyei vannak a nitrox búvárkodásnak.

6 nappal ezelőtt
predrag_vuckovic
Static Apnea Training: 9 Tips to Improve Your Breath Hold
AI KB

Statikus apnoe tréning: 9 tipp a légzésvisszatartás javításához

Javítsa a statikus apnoe-képzést 9 gyakorlati tippel a légzésvisszatartás ellenőrzéséhez, a relaxációhoz, a CO₂-toleranciához, a regenerálódáshoz és a biztonságosabb freediving-gyakorlathoz.

8 nappal ezelőtt