US-Canada Monitoring Network Reveals Biodiversity Patterns in Data-poor Marine Cobble-Boulder Habitats of the Coastal Northwest Atlantic

Richard Wahle1, Heather Hunt2, John Tremblay3, Michel Comeau4, Angelica Silva3 and R�my Rochette2, (1)University of Maine, ME, United States, (2)University of New Brunswick, St. John, NB, Canada, (3)Fisheries and Oceans Canada, Bedford, NS, Canada, (4)Fisheries and Oceans Canada, Moncton, NB, Canada
Abstract:
In the Northeast US and Atlantic Canada a regional collaborative of marine resource agencies, academics, and fishing industry participants monitor more than 100 coastal sites with subtidal cobble-boulder habitat, a prime nursery of commercially important lobsters and crabs. The survey’s prime motivation is to quantify annual recruitment of early juvenile stages of these crustaceans. Quantifying faunal abundance in subtidal cobble-boulder habitats is logistically challenging, defying trawl, core and camera. Until recently surveys of cobble habitats were solely conducted by divers using airlift suction samplers in natural cobble beds. In 2005 we developed standardized cobble-filled collectors that considerably expand the survey’s reach to greater depths and offshore areas. In addition to their value in monitoring commercial crustaceans, these vessel-deployed collectors have proven to be especially useful in biodiversity studies. Here we describe patterns of species richness and abundance of decapod crustaceans and small demersal fishes colonizing ~800 cobble-filled collectors deployed yearly in 2008 and 2009 at near-shore sites across the steep thermal and biogeographic gradient from Rhode Island, USA to Newfoundland, Canada to 76 m depth. At least 17 decapod and 24 fish genera were represented, including cryptic fish taxa not readily detected with other sampling gear. Species richness at shallow sites (5-10 m) was greatest in the south, but did not follow a simple latitudinal cline; rather, it correlated strongly with the complex geography of summer bottom temperature, thereby setting a baseline for climate change studies. Given the world-wide prevalence of this coastal habitat, broader monitoring will reveal new insights on biodiversity patterns and ecosystem services it provides. We seek wider collaboration with the scientific community and stakeholders toward a broader understanding of this poorly studied marine habitat.