Overcoming Shifting Baselines: Paleo-Behaviour Reveals Industrial Revolution as Tipping Point
- Julian Lilkendey(corresponding author),
- ,
- Matthew Campbell,
- Jingjing Zhang,
- Harrison Raby,
- Malcolm Reid
- Auckland University of Technology,
- ,
- University of Auckland,
- CFG Heritage Ltd.,
- The New Zealand Institute for Plant and Food Research Limited,
- University of Otago
Open access
Abstract
Human activities have significantly altered coastal ecosystems worldwide. The phenomenon of shifting baselines syndrome (SBS) complicates our understanding of these changes, masking the true scale of human impacts. This study investigates the long-term ecological effects of anthropogenic activities on New Zealand's coastal ecosystems over 800 years using fish otolith microchemical profiling and dynamic time warping across an entire stock unit. Results reveal a shift in snapper (Chrysophrys auratus; Sparidae) habitat-use behaviour, transitioning from low-salinity estuarine environments to higher-salinity habitats, correlating with ongoing land-use changes. This shift coincided with New Zealand's localised Industrial Revolution, which served as a tipping point for widespread ecosystem transformation. By comparing current coastal fish movement profiles with historical baselines, we provide evidence to address SBS and guide conservation strategies. Re-establishing pre-industrial habitat-use behaviours in snapper will indicate successful habitat restoration, promoting overall ecosystem connectivity and resilience. Our findings enable more effective habitat restoration measures and sustainable management practices, informing policies for maintaining coastal biodiversity and ecosystem function.
Sustainable Development Goals
- SDG 6 Clean Water and Sanitation
- SDG 9 Industry, Innovation, and Infrastructure
- SDG 14 Life Below Water
- SDG 15 Life on Land
- SDG 17 Partnerships for the Goals
Bibliographic Information
Output type
Original language
EnglishArticle number
e70038Pages from-to (Number of pages)
Pages e70038Journal (Volume, Issue Number)
Global Change Biology (Volume 31, Issue 1)Publication milestones
- Published - 01/2025
Publication status
ISSN
1354-1013Publication IDs
- Scopus: 85216219938
- PubMed: 39865509
- PubMedCentral: PMC11771676
