The Conservation and Management of Tunas and Their Relatives: Setting Life History Research Priorities
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{"title"=>"The Conservation and Management of Tunas and Their Relatives: Setting Life History Research Priorities", "type"=>"journal", "authors"=>[{"first_name"=>"Maria José", "last_name"=>"Juan-Jordá", "scopus_author_id"=>"26025252900"}, {"first_name"=>"Iago", "last_name"=>"Mosqueira", "scopus_author_id"=>"22958241400"}, {"first_name"=>"Juan", "last_name"=>"Freire", "scopus_author_id"=>"55746408000"}, {"first_name"=>"Nicholas K.", "last_name"=>"Dulvy", "scopus_author_id"=>"6701844802"}], "year"=>2013, "source"=>"PLoS ONE", "identifiers"=>{"issn"=>"19326203", "pui"=>"369535464", "doi"=>"10.1371/journal.pone.0070405", "sgr"=>"84881339586", "scopus"=>"2-s2.0-84881339586", "isbn"=>"1932-6203", "pmid"=>"23950930"}, "id"=>"68b6051b-0dec-3da3-8196-eb5a99468925", "abstract"=>"Scombrids (tunas, bonitos, Spanish mackerels and mackerels) support important fisheries in tropical, subtropical and temperate waters around the world, being one of the most economically- and socially-important marine species globally. Their sustainable exploitation, management and conservation depend on accurate life history information for the development of quantitative fisheries stock assessments, and in the fishery data-poor situations for the identification of vulnerable species. Here, we assemble life history traits (maximum size, growth, longevity, maturity, fecundity, spawning duration and spawning interval) for the 51 species of scombrids globally. We identify major biological gaps in knowledge and prioritize life history research needs in scombrids based on their biological gaps in knowledge, the importance of their fisheries and their current conservation status according to the International Union for Conservation of Nature Red List. We find that the growth and reproductive biology of tunas and mackerel species have been more extensively studied than for Spanish mackerels and bonitos, although there are notable exceptions in all groups. We also reveal that reproductive biology of species, particular fecundity, is the least studied biological aspect in scombrids. We identify two priority groups, including 32 species of scombrids, and several populations of principal market tunas, for which life history research should be prioritized following the species-specific life history gaps identified in this study in the coming decades. By highlighting the important gaps in biological knowledge and providing a priority setting for life history research in scombrid species this study provides guidance for management and conservation and serves as a guide for biologists and resource managers interested in the biology, ecology, and management of scombrid species.", "link"=>"http://www.mendeley.com/research/conservation-management-tunas-relatives-setting-life-history-research-priorities", "reader_count"=>46, "reader_count_by_academic_status"=>{"Professor > Associate Professor"=>2, "Researcher"=>10, "Student > Doctoral Student"=>1, "Student > Ph. D. Student"=>12, "Student > Postgraduate"=>1, "Other"=>2, "Student > Master"=>12, "Student > Bachelor"=>3, "Professor"=>2, "Unspecified"=>1}, "reader_count_by_user_role"=>{"Professor > Associate Professor"=>2, "Researcher"=>10, "Student > Doctoral Student"=>1, "Student > Ph. D. Student"=>12, "Student > Postgraduate"=>1, "Other"=>2, "Student > Master"=>12, "Student > Bachelor"=>3, "Professor"=>2, "Unspecified"=>1}, "reader_count_by_subject_area"=>{"Unspecified"=>4, "Environmental Science"=>13, "Agricultural and Biological Sciences"=>26, "Physics and Astronomy"=>1, "Earth and Planetary Sciences"=>1, "Economics, Econometrics and Finance"=>1}, "reader_count_by_subdiscipline"=>{"Physics and Astronomy"=>{"Physics and Astronomy"=>1}, "Earth and Planetary Sciences"=>{"Earth and Planetary Sciences"=>1}, "Economics, Econometrics and Finance"=>{"Economics, Econometrics and Finance"=>1}, "Agricultural and Biological Sciences"=>{"Agricultural and Biological Sciences"=>26}, "Unspecified"=>{"Unspecified"=>4}, "Environmental Science"=>{"Environmental Science"=>13}}, "reader_count_by_country"=>{"United States"=>1, "Brazil"=>1, "Denmark"=>1, "American Samoa"=>1, "Italy"=>1, "Australia"=>1, "Spain"=>2}, "group_count"=>1}

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Figshare

  • {"files"=>["https://ndownloader.figshare.com/files/1147798"], "description"=>"<p>We differentiated between life history data-poor and data-rich species (see definition in main text), between species targeted and non-targeted by commercial fisheries (see <a href=\"http://www.plosone.org/article/info:doi/10.1371/journal.pone.0070405#pone.0070405.s006\" target=\"_blank\">Table S1</a>), and between species listed as Threatened, Near Threatened (NT) and Data Deficient (DD) from those listed as Least Concern in the IUCN Red List (See <a href=\"http://www.plosone.org/article/info:doi/10.1371/journal.pone.0070405#pone.0070405.s007\" target=\"_blank\">Table S2</a>). Threatened species are those listed as Critically Endangered, Endangered, and Vulnerable in the IUCN Red List. Enclosed box illustrates scombrid species with the highest priorities for life history research. (*) Highlights the principal market tuna species.</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "diagram", "priorities", "scombrid"], "article_id"=>768094, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g010", "stats"=>{"downloads"=>2, "page_views"=>27, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Venn_Diagram_of_life_history_research_priorities_in_scombrid_species_/768094", "title"=>"Venn Diagram of life history research priorities in scombrid species.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147789"], "description"=>"<p>Number of estimates for each life history trait in the 23 populations of seven principal market tuna species. The area of the grey circles is proportional to the number of estimates available for each trait.</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "tuna"], "article_id"=>768085, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g004", "stats"=>{"downloads"=>0, "page_views"=>7, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Synthesis_of_life_history_information_in_principal_market_tuna_species_/768085", "title"=>"Synthesis of life history information in principal market tuna species.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147802", "https://ndownloader.figshare.com/files/1147811", "https://ndownloader.figshare.com/files/1147812", "https://ndownloader.figshare.com/files/1147814", "https://ndownloader.figshare.com/files/1147817", "https://ndownloader.figshare.com/files/1147819", "https://ndownloader.figshare.com/files/1147827"], "description"=>"<div><p>Scombrids (tunas, bonitos, Spanish mackerels and mackerels) support important fisheries in tropical, subtropical and temperate waters around the world, being one of the most economically- and socially-important marine species globally. Their sustainable exploitation, management and conservation depend on accurate life history information for the development of quantitative fisheries stock assessments, and in the fishery data-poor situations for the identification of vulnerable species. Here, we assemble life history traits (maximum size, growth, longevity, maturity, fecundity, spawning duration and spawning interval) for the 51 species of scombrids globally. We identify major biological gaps in knowledge and prioritize life history research needs in scombrids based on their biological gaps in knowledge, the importance of their fisheries and their current conservation status according to the International Union for Conservation of Nature Red List. We find that the growth and reproductive biology of tunas and mackerel species have been more extensively studied than for Spanish mackerels and bonitos, although there are notable exceptions in all groups. We also reveal that reproductive biology of species, particular fecundity, is the least studied biological aspect in scombrids. We identify two priority groups, including 32 species of scombrids, and several populations of principal market tunas, for which life history research should be prioritized following the species-specific life history gaps identified in this study in the coming decades. By highlighting the important gaps in biological knowledge and providing a priority setting for life history research in scombrid species this study provides guidance for management and conservation and serves as a guide for biologists and resource managers interested in the biology, ecology, and management of scombrid species.</p></div>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "tunas"], "article_id"=>768098, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>["https://dx.doi.org/10.1371/journal.pone.0070405.s001", "https://dx.doi.org/10.1371/journal.pone.0070405.s002", "https://dx.doi.org/10.1371/journal.pone.0070405.s003", "https://dx.doi.org/10.1371/journal.pone.0070405.s004", "https://dx.doi.org/10.1371/journal.pone.0070405.s005", "https://dx.doi.org/10.1371/journal.pone.0070405.s006", "https://dx.doi.org/10.1371/journal.pone.0070405.s007"], "stats"=>{"downloads"=>22, "page_views"=>11, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_The_Conservation_and_Management_of_Tunas_and_Their_Relatives_Setting_Life_History_Research_Priorities_/768098", "title"=>"The Conservation and Management of Tunas and Their Relatives: Setting Life History Research Priorities", "pos_in_sequence"=>0, "defined_type"=>4, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147783"], "description"=>"<p>The subfamily Gasterochismatinae, which has only one species, butterfly kingfish <i>Gasterochisma melampus</i>, is not shown.</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "scombridae", "tribes", "subfamily", "scombrinae"], "article_id"=>768079, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g001", "stats"=>{"downloads"=>10, "page_views"=>309, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Phylogeny_of_the_family_Scombridae_showing_the_four_tribes_of_the_subfamily_Scombrinae_58_/768079", "title"=>"Phylogeny of the family Scombridae showing the four tribes of the subfamily Scombrinae [58].", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147784"], "description"=>"<p>Information includes life history estimates of von Bertalanfy growth parameters, longevity, length and age at 50% maturity, duration of spawning season, average batch fecundity, relative batch fecundity and spawning interval. (A) Number of life history trait estimates in the dataset for all the species combined. (B) Number of scombrid species with at least one life history trait estimate. There are 51 species in the family Scombridae.</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "scombrid"], "article_id"=>768080, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g002", "stats"=>{"downloads"=>0, "page_views"=>1, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Life_history_information_in_scombrid_species_/768080", "title"=>"Life history information in scombrid species.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147796"], "description"=>"<p>(A) Absolute average batch fecundity. (B) Relative average batch fecundity. (C) Duration of spawning season of scombrid species by type of climate (find species climate in <a href=\"http://www.plosone.org/article/info:doi/10.1371/journal.pone.0070405#pone-0070405-t001\" target=\"_blank\">Table 1</a>). In all the figures, the species are plotted in ascending rank order of body size, with the smallest species at the bottom (See <a href=\"http://www.plosone.org/article/info:doi/10.1371/journal.pone.0070405#pone-0070405-t001\" target=\"_blank\">Table 1</a> for maximum body size).</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "fecundity", "estimates", "scombrid"], "article_id"=>768092, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g009", "stats"=>{"downloads"=>1, "page_views"=>7, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Batch_fecundity_estimates_for_scombrid_species_/768092", "title"=>"Batch fecundity estimates for scombrid species.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147793"], "description"=>"<p>Within each taxonomic group, the species are plotted in ascending rank order of body size, with the smallest species at the bottom (See <a href=\"http://www.plosone.org/article/info:doi/10.1371/journal.pone.0070405#pone-0070405-t001\" target=\"_blank\">Table 1</a> for maximum body size).</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "maturity", "estimates", "scombrid"], "article_id"=>768089, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g008", "stats"=>{"downloads"=>0, "page_views"=>1, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Age_at_50_maturity_estimates_and_the_ratio_age_at_50_maturity_maximum_body_size_for_scombrid_species_/768089", "title"=>"Age at 50% maturity estimates and the ratio age at 50% maturity/maximum body size for scombrid species.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147791"], "description"=>"<p>(A) Auximetric plot comparing the growth performance of scombrid species (black circles) with that of fishes in general (grey circles). Fish data extracted from FishBase as August 2012. The growth space for the main four taxonomic groups of scombrids, tunas, bonitos, Spanish mackerels and mackerels, are also illustrated (colored ellipse curves). (B) The growth performance index Ø′ (defined as Ø′ = log<sub>10</sub><i>k</i>+2log<sub>10</sub><i>L<sub>∞</sub></i>) of scombrid fishes compared with the average growth performances in fishes in FishBase (average growth performance is 2.7±0.3, grey band area).</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "performances", "scombrid", "fishes", "illustrating"], "article_id"=>768087, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g006", "stats"=>{"downloads"=>0, "page_views"=>4, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Growth_performances_in_scombrid_species_including_all_fishes_in_FishBase_illustrating_the_high_growth_performances_of_scombrids_/768087", "title"=>"Growth performances in scombrid species including all fishes in FishBase, illustrating the high growth performances of scombrids.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147792"], "description"=>"<p>Within each taxonomic group, the species are plotted in ascending rank order of body size, with the smallest species at the bottom (See <a href=\"http://www.plosone.org/article/info:doi/10.1371/journal.pone.0070405#pone-0070405-t001\" target=\"_blank\">Table 1</a> for maximum body size).</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "maturity", "estimates", "scombrid"], "article_id"=>768088, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g007", "stats"=>{"downloads"=>0, "page_views"=>9, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Length_at_50_maturity_estimates_and_the_ratio_length_at_50_maturity_maximum_body_size_for_scombrid_species_/768088", "title"=>"Length at 50% maturity estimates and the ratio length at 50% maturity/maximum body size for scombrid species.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147790"], "description"=>"<p>Within each taxonomic group, the species are plotted in ascending rank order of body size, with the smallest species at the bottom (See <a href=\"http://www.plosone.org/article/info:doi/10.1371/journal.pone.0070405#pone-0070405-t001\" target=\"_blank\">Table 1</a> for maximum body size).</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "bertalanffy", "asymptotic", "longevity", "estimates", "scombrid"], "article_id"=>768086, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g005", "stats"=>{"downloads"=>1, "page_views"=>12, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Von_Bertalanffy_growth_parameters_growth_rate_k_y_8722_1_and_asymptotic_length_L_8734_cm_and_longevity_estimates_in_scombrid_species_/768086", "title"=>"Von Bertalanffy growth parameters – growth rate <i>k</i> (y<sup>−1</sup>) and asymptotic length <i>L<sub>∞</sub></i> (cm), and longevity estimates in scombrid species.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147787"], "description"=>"<p>Number of estimates for each life history trait within the main four taxonomic groups of scombrids (tunas, bonitos, Spanish mackerels and mackerels). Within each taxonomic group, the species are plotted in ascending rank order of body size, with the smallest species at the bottom (See <a href=\"http://www.plosone.org/article/info:doi/10.1371/journal.pone.0070405#pone-0070405-t001\" target=\"_blank\">Table 1</a> for maximum body size). The Butterfly kingfish (<i>Gasterochisma melampus</i>), the only species in the subfamily Gasterochismatinae, is not included. The only life history trait recorded for this species is maximum length, being 195 cm <a href=\"http://www.plosone.org/article/info:doi/10.1371/journal.pone.0070405#pone.0070405-Kohno1\" target=\"_blank\">[59]</a>. The area of the grey circles is proportional to the number of estimates available for each trait.</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "scombrid"], "article_id"=>768083, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.g003", "stats"=>{"downloads"=>1, "page_views"=>6, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_Synthesis_of_life_history_information_in_scombrid_species_/768083", "title"=>"Synthesis of life history information in scombrid species.", "pos_in_sequence"=>0, "defined_type"=>1, "published_date"=>"2013-08-08 03:54:23"}
  • {"files"=>["https://ndownloader.figshare.com/files/1147799"], "description"=>"*<p>Commonly known as principal market tuna species.</p>", "links"=>[], "tags"=>["ecology", "Ecological environments", "Marine environments", "biodiversity", "Ecological metrics", "Global change ecology", "Macroecology", "Marine ecology", "Species extinction", "Marine biology", "Fisheries science", "Marine conservation", "Zoology", "Ichthyology", "scombrid", "taxonomic", "geographic"], "article_id"=>768095, "categories"=>["Biological Sciences"], "users"=>["Maria José Juan-Jordá", "Iago Mosqueira", "Juan Freire", "Nicholas K. Dulvy"], "doi"=>"https://dx.doi.org/10.1371/journal.pone.0070405.t001", "stats"=>{"downloads"=>2, "page_views"=>7, "likes"=>0}, "figshare_url"=>"https://figshare.com/articles/_List_of_scombrid_species_including_their_taxonomic_classification_maximum_body_size_L_max_climate_environment_and_geographic_distributions_/768095", "title"=>"List of scombrid species including their taxonomic classification, maximum body size (L<sub>max</sub>), climate, environment and geographic distributions.", "pos_in_sequence"=>0, "defined_type"=>3, "published_date"=>"2013-08-08 03:54:23"}

PMC Usage Stats | Further Information

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Relative Metric

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