Related Experiment Video
Updated: Dec 24, 2025

Assessing Intertidal Populations of the Invasive European Green Crab
Published on: September 16, 2020
Habitat provided by native species facilitates higher abundances of an invader in its introduced compared to native
Paul E Gribben1,2, Alistair G B Poore3, Mads S Thomsen4
1Centre for Marine Science and Innovation, School of Biological, Earth and Environmental Science, University of New South Wales, Sydney, NSW, 2052, Australia. p.gribben@unsw.edu.au.
Abstract:
The impacts invasive species have on biodiversity and ecosystem function globally have been linked to the higher abundances they often obtain in their introduced compared to native ranges. Higher abundances of invaders in the introduced range are often explained by a reduction in negative species interactions in that range, although results are equivocal. The role of positive interactions in explaining differences in the abundance of invaders between native and invasive ranges has not been tested. Using biogeographic surveys, we showed that the rocky shore porcelain crab, Petrolisthes elongatus, was ~4 times more abundant in its introduced (Tasmania, Australia) compared to its native (New Zealand) range. The habitat of these crabs in the invaded range (underside of intertidal boulders) was extensively covered with the habitat-forming tubeworm Galeolaria caespitosa. We tested whether the habitat provided by the tubeworm facilitates a higher abundance of the invasive crab by creating mimics of boulders with and without the tubeworm physical structure and measured crab colonisation into these habitats at three sites in both Tasmania and New Zealand. Adding the tubeworm structure increased crab abundance by an average of 85% across all sites in both ranges. Our intercontinental biogeographic survey and experiment demonstrate that native species can facilitate invader abundance and that positive interactions can be important drivers of invasion success.
More Related Videos
Related Concept Videos
Population Growth
Ecological Niches
Symbiosis
Predator-Prey Interactions
Frequency-dependent Selection
Habitat Fragmentation

