A general framework for predicting the ecological effects of range expansions in marine systems
成果类型:
Article
署名作者:
Beshai, Ryan A.; Sorte, Cascade J. B.
署名单位:
University of California System; University of California Irvine
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2600491123
发表日期:
2026-07-07
页码:
e2600491123
关键词:
range shift
ecological effects
population
predicting
RISK ASSESSMENT
ENVIRONMENTAL-IMPACT CLASSIFICATION
CLIMATE-CHANGE
shifts
alien
invasion
habitat
communities
摘要:
Warming global temperatures are driving species to shift beyond their historical geographic ranges into novel, expanded ranges, where they may have both positive and negative effects on recipient populations. Although no framework currently exists to anticipate these effects, invasion biology theory suggests expanders' effects may be predictable from expanders' historical roles and trophic positions. We conducted a global synthesis of over 1,200 population-level effects of marine range-expanding species reported across 1,075 studies. We hypothesized that, similar to invasive species, expanding species' impacts could be predicted by (H1) their ecological roles in their historical ranges and (H2) their trophic levels. We found that effects in these species' historical ranges reliably predict their impacts in expanded ranges, but that, overall, marine range expanders tend to be more detrimental-or less beneficial-in novel communities. Higher trophic level expanders tend to have stronger effects (both positive and negative) on resident species than lower trophic level expanders. Effect magnitudes were further modulated by the type of interaction (e.g., predation, competition, physical disturbance, etc.), with the strongest effects arising from indirect interactions. Finally, we found that native producers experienced some of the strongest effects when compared to humans, vertebrates, or invertebrates. Together, our results indicate that existing knowledge of species' roles are key to anticipating which climate-driven range expansions are likely to have the largest effects on recipient communities.
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