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Novel attempt to assess marine mammal dynamics over the past 100 years using sedimentary DNA: An example in finless porpoise

Original title: Novel attempt to assess marine mammal dynamics over the past 100 years using sedimentary DNA: An example in finless porpoise

Marine Pollution Bulletin 2026
Kai Nakane, Michinobu Kuwae, Hideyuki Doi, Mari Ochiai, Tomohiko Isobe, Tatsuya Kunisue, Narumi K. Tsugeki

Summary

Scientists used DNA trapped in seafloor mud to track Japan's finless porpoise population over the past 100 years, discovering it crashed in the 1960s when chemical pollution (like PCBs) was at its peak, then partially recovered as regulations reduced these toxins. This matters because it shows how man-made chemicals can seriously harm marine life over decades, and it offers a clever new way to study pollution's long-term effects on ocean animals—effects that could also signal risks for humans who share the same water and seafood sources.

Study Type Environmental

Marine mammal populations are suspected to have declined over the past century, with the adverse effects of chemical pollutants considered to be one of the major causes. However, field surveys of marine mammal populations are challenging because of technical issues, resulting in limited in situ data and unresolved questions regarding the historical impacts of chemical exposure. Here, we aimed to elucidate the long-term population dynamics of finless porpoise (Neophocaena asiaeorientalis), a sedentary species inhabiting coastal areas. To reconstruct population trends, we analyzed environmental DNA (eDNA) preserved in sediment cores collected from the Beppu Bay, Seto Inland Sea, Japan. eDNA concentrations in the sediment layers were determined using quantitative PCR. Temporal trends showed a distinct increase from the 1940s to the 1950s, followed by rapid decline in the early 1960s and then a recovery around 2000. Further analysis identified a significant negative correlation between the concentrations of sedimentary eDNA (sedDNA) and chemicals such as polychlorinated biphenyls (PCBs) and cadmium. Positive correlations were observed with temperature, prey abundance, and microplastics. Consistent with historical PCB production trends, the PCB concentrations in finless porpoise individuals collected from the Seto Inland Sea during the 1960-1970s were apparently higher than those during the 2000s. These findings suggest that the finless porpoise population in the region experienced a significant decline around 1960 owing to elevated chemical exposure. This study highlights the potential of sedDNA-based approaches to enhance our understanding of anthropogenic disturbances on marine animals over the long term.

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