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  • 11_Midwater_trawl; 24_Bongo_net; 26_Midwater_trawl; 29_Midwater_trawl; 33_Midwater_trawl; 38_Midwater_trawl; 43_Midwater_trawl; 58_Midwater_trawl; 7_Dip_net; 7_Midwater_trawl; BA03_CanTrawl250; BA04_CanTrawl250; BONGO; Bongo net; Calculated; Carbon/Phosphorus ratio; CPE1_Dip_net; CS02_CanTrawl250; CS09_CanTrawl250; CS13_CanTrawl250; CS15_CanTrawl250; CS18_CanTrawl250; Ctenophore; DATE/TIME; DEPTH, water; Duration; Edwards Modulyo Freeze Dryer (Oakville, Ontario, CA); EP02_CanTrawl250; Event label; Gear; H02_CanTrawl250; Hand net; Heteropod; HN; Hope_Island_Dip_net; I_Midwater_trawl; IBC01_CanTrawl250; IBC03_CanTrawl250; IBC10_CanTrawl250; Identification; IVI10_CanTrawl250; IVI15_CanTrawl250; Jellyfish; JF03_CanTrawl250; Latitude of event; Life stage; LJS07_CanTrawl250; Location; Longitude of event; Measured using callipers; Methods of Seawater Analysis, Third Edition (Grasshoff et al., 1999); Midwater trawl; Month; MSN; Multiple opening/closing net; MWT; Nitrogen/Phosphorus ratio; Northeast Pacific; P12_Multinet_Medi; P26_Ring_net; Parameter; Phosphorus, total; QCSD01_CanTrawl250; QCSD02_CanTrawl250; QCSD04_CanTrawl250; QCST02_CanTrawl250; QCST05_CanTrawl250; QCST07_CanTrawl250; QCST11_CanTrawl250; QCST12_CanTrawl250; QCST19_CanTrawl250; RI01_CanTrawl250; RI05_CanTrawl250; Ring net; RN; Salish Sea; Salp; Sample type; Size; Sooke_Bay_Dip_net; Species; Station label; stoichiometry; Subarctic Northeast Pacific; T01_CanTrawl250; T02_CanTrawl250; T04_CanTrawl250; T06_CanTrawl250; T07_Dip_net; Tissue, dry mass; Vessel; VI_north_tip_Dip_net; VI02_CanTrawl250; VI03_CanTrawl250; VI04_CanTrawl250; VI07_CanTrawl250; VI08_CanTrawl250; VI09_CanTrawl250; VI12_CanTrawl250; VI14_CanTrawl250; VI22_CanTrawl250; VI25_Bongo_net; Weighted; Wet mass; Year of observation  (1)
  • Appraisal  (1)
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  • 1
    Publication Date: 2024-04-25
    Description: Climate change and anthropogenic disturbances, among other factors, can change the seawater stoichiometry (C/N/P) and consequently elemental ratios of phytoplankton. This change in prey stoichiometry may not be tolerated by all grazer/predator species. Gelatinous and soft-bodied zooplankton (GZ) are suggested to be more resilient to such changes. We sampled GZ species (12 taxa in total) in the Northeast Pacific off British Columbia (Canada), determined their phosphorus (P) content and elemental ratios (C/P, N/P), and analysed intraspecific variability associated with size and ontogeny. P was determined as orthophosphate after acidic oxidative hydrolysis with 5 % H2SO4 according to Grasshoff et al. (1999). Carbon (C) and nitrogen (N) data were taken from Lüskow et al. (2021). P % DW (dry weight) decreased with size for Aequorea sp., Aurelia labiata, Cyanea capillata, and Salpa aspera (species with sufficient sample sizes). P % DW differed significantly for two development stages of the salp S. aspera. C/P and N/P were mostly size- and stage-independent. C/P values of GZ were generally higher than values of crustacean zooplankton.
    Keywords: 11_Midwater_trawl; 24_Bongo_net; 26_Midwater_trawl; 29_Midwater_trawl; 33_Midwater_trawl; 38_Midwater_trawl; 43_Midwater_trawl; 58_Midwater_trawl; 7_Dip_net; 7_Midwater_trawl; BA03_CanTrawl250; BA04_CanTrawl250; BONGO; Bongo net; Calculated; Carbon/Phosphorus ratio; CPE1_Dip_net; CS02_CanTrawl250; CS09_CanTrawl250; CS13_CanTrawl250; CS15_CanTrawl250; CS18_CanTrawl250; Ctenophore; DATE/TIME; DEPTH, water; Duration; Edwards Modulyo Freeze Dryer (Oakville, Ontario, CA); EP02_CanTrawl250; Event label; Gear; H02_CanTrawl250; Hand net; Heteropod; HN; Hope_Island_Dip_net; I_Midwater_trawl; IBC01_CanTrawl250; IBC03_CanTrawl250; IBC10_CanTrawl250; Identification; IVI10_CanTrawl250; IVI15_CanTrawl250; Jellyfish; JF03_CanTrawl250; Latitude of event; Life stage; LJS07_CanTrawl250; Location; Longitude of event; Measured using callipers; Methods of Seawater Analysis, Third Edition (Grasshoff et al., 1999); Midwater trawl; Month; MSN; Multiple opening/closing net; MWT; Nitrogen/Phosphorus ratio; Northeast Pacific; P12_Multinet_Medi; P26_Ring_net; Parameter; Phosphorus, total; QCSD01_CanTrawl250; QCSD02_CanTrawl250; QCSD04_CanTrawl250; QCST02_CanTrawl250; QCST05_CanTrawl250; QCST07_CanTrawl250; QCST11_CanTrawl250; QCST12_CanTrawl250; QCST19_CanTrawl250; RI01_CanTrawl250; RI05_CanTrawl250; Ring net; RN; Salish Sea; Salp; Sample type; Size; Sooke_Bay_Dip_net; Species; Station label; stoichiometry; Subarctic Northeast Pacific; T01_CanTrawl250; T02_CanTrawl250; T04_CanTrawl250; T06_CanTrawl250; T07_Dip_net; Tissue, dry mass; Vessel; VI_north_tip_Dip_net; VI02_CanTrawl250; VI03_CanTrawl250; VI04_CanTrawl250; VI07_CanTrawl250; VI08_CanTrawl250; VI09_CanTrawl250; VI12_CanTrawl250; VI14_CanTrawl250; VI22_CanTrawl250; VI25_Bongo_net; Weighted; Wet mass; Year of observation
    Type: Dataset
    Format: text/tab-separated-values, 1583 data points
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2022-05-25
    Description: Author Posting. © The Author(s), 2014. This is the author's version of the work. It is posted here for personal use, not for redistribution. The definitive version was published in Fish and Fisheries 17 (2016): 1183–1193, doi:10.1111/faf.12110.
    Description: Global change is occurring now, often with consequences far beyond those anticipated. Although there is a wide range of assessment approaches available to address specific aspects of global change, there is currently no framework to identify what governance responses have worked and where, what has facilitated change, and what preventative options are possible. To respond to this need, we present an integrated assessment framework that builds on knowledge learned from past experience of responses to global change, to enable decision makers, researchers, managers and local stakeholders to: (1) make decisions efficiently; (2) triage and improve their responses; and (3) evaluate where to most effectively allocate resources to reduce vulnerability and enhance resilience of coastal peoples. This integrated assessment framework, IMBER-ADApT is intended to enable and enhance decision making through the development a typology of case studies providing lessons on how the natural, social and governance systems respond to the challenges of global change. The typology is developed from a database of case studies detailing the systems affected by change, responses to change and, critically, an appraisal of these responses, generating knowledge-based solutions that can be applied to other comparable situations. Fisheries, which suffer from multiple pressures, are the current focus of the proposed framework, but it could be applied to a wide range of global change issues. IMBER-ADApT has the potential to contribute to timely, cost-effective policy and governing decision making and responses. It offers cross-scale learning to help ameliorate, and eventually prevent, loss of livelihoods, food sources and habitat.
    Keywords: Appraisal ; Fisheries ; Global change ; IMBER-ADApT ; Interactive governance ; Response ; Systems approach
    Repository Name: Woods Hole Open Access Server
    Type: Preprint
    Location Call Number Expected Availability
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