Are we there yet? Management baselines and biodiversity indicators for the protection and restoration of subtidal bivalve shellfish habitats

Biodiversity loss and degradation of natural habitats is increasing at an unprecedented rate. Of all marine habitats, biogenic reefs created by once-widespread shellfish, are now one of the most imperilled, and globally scarce. Conservation managers seek to protect and restore these habitats, but su...

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Published inThe Science of the total environment Vol. 863; p. 161001
Main Authors Fariñas-Franco, Jose M., Cook, Robert L., Gell, Fiona R., Harries, Dan B., Hirst, Natalie, Kent, Flora, MacPherson, Rebecca, Moore, Colin, Mair, James M., Porter, Joanne S., Sanderson, William G.
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 10.03.2023
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Abstract Biodiversity loss and degradation of natural habitats is increasing at an unprecedented rate. Of all marine habitats, biogenic reefs created by once-widespread shellfish, are now one of the most imperilled, and globally scarce. Conservation managers seek to protect and restore these habitats, but suitable baselines and indicators are required, and detailed scientific accounts are rare and inconsistent. In the present study the biodiversity of a model subtidal habitat, formed by the keystone horse mussel Modiolus modiolus (L.), was analysed across its Northeast Atlantic biogeographical range. Consistent samples of ‘clumped’ mussels were collected at 16 locations, covering a wide range of environmental conditions. Analysis of the associated macroscopic biota showed high biodiversity across all sites, cumulatively hosting 924 marine macroinvertebrate and algal taxa. There was a rapid increase in macroinvertebrate biodiversity (H′) and community evenness (J) between 2 and 10 mussels per clump, reaching an asymptote at mussel densities of 10 per clump. Diversity declined at more northern latitudes, with depth and in coarser substrata with the fastest tidal flows. Diversity metrics corrected for species abundance were generally high across the habitats sampled, with significant latitudinal variability caused by current, depth and substrate type. Faunal community composition varied significantly between most sites and was difficult to assign to a ‘typical’ M. modiolus assemblage, being significantly influenced by regional environmental conditions, including the presence of algal turfs. Within the context of the rapid global increase in protection and restoration of bivalve shellfish habitats, site and density-specific values of diversity are probably the best targets for conservation management and upon which to base monitoring programmes. [Display omitted] •Modiolus modiolus reefs are hotspots of biodiversity across their biogeographical range.•Large biodiversity dataset were collected at 16 reefs in the Eastern Atlantic.•Very high biodiversity was recorded at low numbers of M. modiolus as the keystone species.•Latitudinal and environmental biodiversity gradients were observed.•Shellfish reef conservation baselines of biodiversity need to be site-specific.
AbstractList Biodiversity loss and degradation of natural habitats is increasing at an unprecedented rate. Of all marine habitats, biogenic reefs created by once-widespread shellfish, are now one of the most imperilled, and globally scarce. Conservation managers seek to protect and restore these habitats, but suitable baselines and indicators are required, and detailed scientific accounts are rare and inconsistent. In the present study the biodiversity of a model subtidal habitat, formed by the keystone horse mussel Modiolus modiolus (L.), was analysed across its Northeast Atlantic biogeographical range. Consistent samples of 'clumped' mussels were collected at 16 locations, covering a wide range of environmental conditions. Analysis of the associated macroscopic biota showed high biodiversity across all sites, cumulatively hosting 924 marine macroinvertebrate and algal taxa. There was a rapid increase in macroinvertebrate biodiversity (H') and community evenness (J) between 2 and 10 mussels per clump, reaching an asymptote at mussel densities of 10 per clump. Diversity declined at more northern latitudes, with depth and in coarser substrata with the fastest tidal flows. Diversity metrics corrected for species abundance were generally high across the habitats sampled, with significant latitudinal variability caused by current, depth and substrate type. Faunal community composition varied significantly between most sites and was difficult to assign to a 'typical' M. modiolus assemblage, being significantly influenced by regional environmental conditions, including the presence of algal turfs. Within the context of the rapid global increase in protection and restoration of bivalve shellfish habitats, site and density-specific values of diversity are probably the best targets for conservation management and upon which to base monitoring programmes.
Biodiversity loss and degradation of natural habitats is increasing at an unprecedented rate. Of all marine habitats, biogenic reefs created by once-widespread shellfish, are now one of the most imperilled, and globally scarce. Conservation managers seek to protect and restore these habitats, but suitable baselines and indicators are required, and detailed scientific accounts are rare and inconsistent. In the present study the biodiversity of a model subtidal habitat, formed by the keystone horse mussel Modiolus modiolus (L.), was analysed across its Northeast Atlantic biogeographical range. Consistent samples of ‘clumped’ mussels were collected at 16 locations, covering a wide range of environmental conditions. Analysis of the associated macroscopic biota showed high biodiversity across all sites, cumulatively hosting 924 marine macroinvertebrate and algal taxa. There was a rapid increase in macroinvertebrate biodiversity (H′) and community evenness (J) between 2 and 10 mussels per clump, reaching an asymptote at mussel densities of 10 per clump. Diversity declined at more northern latitudes, with depth and in coarser substrata with the fastest tidal flows. Diversity metrics corrected for species abundance were generally high across the habitats sampled, with significant latitudinal variability caused by current, depth and substrate type. Faunal community composition varied significantly between most sites and was difficult to assign to a ‘typical’ M. modiolus assemblage, being significantly influenced by regional environmental conditions, including the presence of algal turfs. Within the context of the rapid global increase in protection and restoration of bivalve shellfish habitats, site and density-specific values of diversity are probably the best targets for conservation management and upon which to base monitoring programmes. [Display omitted] •Modiolus modiolus reefs are hotspots of biodiversity across their biogeographical range.•Large biodiversity dataset were collected at 16 reefs in the Eastern Atlantic.•Very high biodiversity was recorded at low numbers of M. modiolus as the keystone species.•Latitudinal and environmental biodiversity gradients were observed.•Shellfish reef conservation baselines of biodiversity need to be site-specific.
ArticleNumber 161001
Author Hirst, Natalie
Kent, Flora
Moore, Colin
Sanderson, William G.
Fariñas-Franco, Jose M.
MacPherson, Rebecca
Mair, James M.
Gell, Fiona R.
Harries, Dan B.
Porter, Joanne S.
Cook, Robert L.
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  organization: Institute of Life and Earth Sciences, Heriot-Watt University, Edinburgh, Scotland EH14 4AS, UK
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Keywords Ecological indicators
Biodiversity
Diversity indices
Biogenic reefs
Benthic habitats
Language English
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Snippet Biodiversity loss and degradation of natural habitats is increasing at an unprecedented rate. Of all marine habitats, biogenic reefs created by once-widespread...
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elsevier
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Publisher
StartPage 161001
SubjectTerms Animals
Benthic habitats
Biodiversity
Biogenic reefs
Diversity indices
Ecological indicators
Ecosystem
Mytilidae
Plants
Seafood
Shellfish
Title Are we there yet? Management baselines and biodiversity indicators for the protection and restoration of subtidal bivalve shellfish habitats
URI https://dx.doi.org/10.1016/j.scitotenv.2022.161001
https://www.ncbi.nlm.nih.gov/pubmed/36539096
Volume 863
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