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- Title
Non-native species colonization of highly diverse, wave swept outer coast habitats in Central California.
- Authors
Zabin, Chela J.; Marraffini, Michelle; Lonhart, Steve I.; McCann, Linda; Ceballos, Lina; King, Chad; Watanabe, James; Pearse, John S.; Ruiz, Gregory M.
- Abstract
More non-native species (NNS) are reported from harbors, estuaries and protected embayments than in wave-exposed, open-coast habitats. In California (USA), hundreds of NNS have become established in international ports, and dozens are known from smaller estuaries. In contrast, only 22 NNS are reported from the state’s 1350 km of open coast. As a result, the perception that open-coast habitats are not vulnerable to invasions has persisted. Management and monitoring focuses on ports and estuaries; the last major monitoring effort on the open coast occurred in 2004. Much of the species-rich Central California coast is now part of a network of marine protected areas (MPAs). We surveyed 12 wave-swept rocky intertidal and eight subtidal sites (from 37°53′40N 122°42′30W to 36°31′16N 121°56′22W) for NNS. At least one NNS was detected at half of the sites surveyed, but most were not widespread or abundant. One exception, a bryozoan in the <italic>Watersipora</italic> spp. complex, known primarily from ports and estuaries, was found at multiple sites, and was abundant at some. Another non-native, the alga <italic>Caulacanthus ustulatus</italic>, was abundant at a single site. MPAs were just as likely as sites outside of MPAs to have NNS. For subtidal sites, proximity to a harbor was correlated with the abundance of non-natives. Our findings suggest that our study area is still relatively uninvaded, but the success of <italic>Watersipora</italic> within some of these highly diverse rocky shore sites underscores the potential vulnerability of high-value open-coast systems to invasions.
- Subjects
CALIFORNIA; INTRODUCED species; HABITATS; ENVIRONMENTAL monitoring; SPECIES diversity
- Publication
Marine Biology, 2018, Vol 165, Issue 2, p0
- ISSN
0025-3162
- Publication type
Article
- DOI
10.1007/s00227-018-3284-4