https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/Head
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://www.nanopub.org/nschema#hasAssertion
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/assertion
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://www.nanopub.org/nschema#hasProvenance
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/provenance
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://www.nanopub.org/nschema#hasPublicationInfo
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/pubinfo
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://www.w3.org/1999/02/22-rdf-syntax-ns#type
http://www.nanopub.org/nschema#Nanopublication
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/assertion
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
http://schema.org/endDate
2026-04-15
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
http://www.w3.org/1999/02/22-rdf-syntax-ns#type
https://w3id.org/sciencelive/o/terms/FORRT-Replication-Outcome
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
http://www.w3.org/2000/01/rdf-schema#label
Reproduction confirms SST as primary driver (DATRAS, NE Atlantic)
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
https://w3id.org/sciencelive/o/terms/hasConclusionDescription
Sea surface temperature is the strongest environmental factor shaping which fish species are found together across the NE Atlantic continental shelf. Warmer areas support different fish communities than cooler areas, and this temperature gradient explains more community variation than salinity or depth.
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
https://w3id.org/sciencelive/o/terms/hasConfidenceLevel
https://w3id.org/sciencelive/o/terms/HighConfidence
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
https://w3id.org/sciencelive/o/terms/hasEvidenceDescription
Fish communities were compared across 247 locations spanning the NE Atlantic from Portugal to Scotland (22 trawl surveys, 258 species, 2005-2018). The main gradient in community composition (PCoA Axis 1, 29.2% of variation) was most strongly linked to sea surface temperature (r=-0.757, p<0.001). Temperature, salinity, and depth together explained 87.9% of this gradient.
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
https://w3id.org/sciencelive/o/terms/hasLimitationsDescription
This reproduction includes more species (258 vs 198) and locations (247 vs 193) than the original study due to differences in species filtering. The temperature effect is statistically significant but weaker than originally reported (R²=0.573 vs 0.890), possibly because our broader species set dilutes the signal.
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
https://w3id.org/sciencelive/o/terms/hasOutcomeRepository
https://github.com/annefou/bio-oracle
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
https://w3id.org/sciencelive/o/terms/hasValidationStatus
https://w3id.org/sciencelive/o/terms/Validated
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
https://w3id.org/sciencelive/o/terms/isOutcomeOf
https://w3id.org/sciencelive/np/RAzP6xzTxbXWC9hJDkdp2M5gq4di4cVggPvxRPnBh9-1k/sst-reproduction-datras
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/provenance
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/assertion
http://www.w3.org/ns/prov#wasAttributedTo
https://orcid.org/0000-0002-1784-2920
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/pubinfo
https://orcid.org/0000-0002-1784-2920
http://xmlns.com/foaf/0.1/name
Anne Fouilloux
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://purl.org/dc/terms/created
2026-04-16T16:40:09.809Z
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://purl.org/dc/terms/creator
https://orcid.org/0000-0002-1784-2920
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://purl.org/dc/terms/license
https://creativecommons.org/licenses/by/4.0/
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://purl.org/nanopub/x/introduces
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sst-reproduction-datras-outcome
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://purl.org/nanopub/x/wasCreatedAt
https://platform.sciencelive4all.org
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
http://www.w3.org/2000/01/rdf-schema#label
NP created using Declaring a replication study outcome according to FORRT
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
https://w3id.org/np/o/ntemplate/wasCreatedFromTemplate
https://w3id.org/np/RA2zljn0Nw9SadppOyxZoh-_Rxosslrq-vYG-p9SttnJE
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sig
http://purl.org/nanopub/x/hasAlgorithm
RSA
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sig
http://purl.org/nanopub/x/hasPublicKey
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
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sig
http://purl.org/nanopub/x/hasSignature
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
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sig
http://purl.org/nanopub/x/hasSignatureTarget
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM
https://w3id.org/sciencelive/np/RA7f-x8JBwYZCid2GYcvFzkrGQWyJkVyDXa1pvMH2FgwM/sig
http://purl.org/nanopub/x/signedBy
https://orcid.org/0000-0002-1784-2920