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  • 2020-2023  (1)
  • 2020-2022  (3)
  • 2021  (4)
  • 2021  (4)
  • 1
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    In:  http://aquaticcommons.org/id/eprint/8700 | 403 | 2012-06-07 14:51:15 | 8700 | United States National Marine Fisheries Service
    Publication Date: 2021-06-25
    Description: The broad distribution of Pacific sardine (Sardinops sagax)along the Pacif ic coast of North America makes it difficult for fisheries managers to identify regionalstocks of this dominant small pelagic species. An investigation of morphometric characteristics of otoliths ofPacific sardine across most of their range revealed regional differences in populations. In a survey of over 2000 otoliths, all ages (with an emphasis on age-1 recruits) were compared. Principal components analysis, multivariate analysis of variance, and a novel method derived from regression and residuals calculations, termedperimeter-weight profiles (PWPs), revealed otolith similarities and differences. The results of the differentapproaches to statistical comparisons did not always agree. Sardine otoliths from Mexican waters were generallylighter and more lobate than those from U.S. and Canadian populations. Age-1 otoliths from northern California in 2006–07 tended to be heavier and smoother than those from other areas, including year-class cohorts from southern California. Comparisons of age-groups and year-classes of northern California otoliths with the use of the PWP models indicated signif icant trends in year-to-year patterns. In conjunction with other established indices of populationstructure, otolith PWPs are a useful tool for identifying local and regional stocks of Pacific sardine and may helpdistinguish populations of other fish species as well.
    Keywords: Biology ; Ecology ; Fisheries
    Repository Name: AquaDocs
    Type: article , TRUE
    Format: application/pdf
    Format: application/pdf
    Format: 402-415
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  • 2
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    In:  http://aquaticcommons.org/id/eprint/12092 | 9601 | 2013-10-29 19:52:00 | 12092 | Gulf and Caribbean Fisheries Institute
    Publication Date: 2021-07-01
    Keywords: Fisheries ; GCFI
    Repository Name: AquaDocs
    Type: conference_item
    Format: application/pdf
    Format: application/pdf
    Format: 56-63
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  • 3
    Publication Date: 2021-07-01
    Description: Vibrio species play a crucial role in maintaining the carbon and nitrogen balance between the oceans and the land through their ability to employ chitin as a sole source of energy. This study describes the structural basis for the action of the GH20 β‐N‐acetylglucosaminidase (VhGlcNAcase) in chitin metabolism by Vibrio campbellii (formerly V. harveyi) strain ATCC BAA‐1116. Crystal structures of wild‐type VhGlcNAcase in the absence and presence of the sugar ligand, and of the unliganded D437A mutant, were determined. VhGlcNAcase contains three distinct domains: an N‐terminal carbohydrate‐binding domain linked to a small α+β domain and a C‐terminal (β/α)8 catalytic domain. The active site of VhGlcNAcase has a narrow, shallow pocket that is suitable for accommodating a small chitooligosaccharide. VhGlcNAcase is a monomeric enzyme of 74 kDa, but its crystal structures show two molecules of enzyme per asymmetric unit, in which Gln16 at the dimeric interface of the first molecule partially blocks the entrance to the active site of the neighboring molecule. The GlcNAc unit observed in subsite −1 makes exclusive hydrogen bonds to the conserved residues Arg274, Tyr530, Asp532 and Glu584, while Trp487, Trp546, Trp582 and Trp505 form a hydrophobic wall around the −1 GlcNAc. The catalytic mutants D437A/N and E438A/Q exhibited a drastic loss of GlcNAcase activity, confirming the catalytic role of the acidic pair (Asp437–Glu438).
    Description: Crystal structures of a GH20 β‐N‐acetylglucosaminidase from V. campbellii reveal substrate specificity in chitin utilization.
    Keywords: 577.14 ; GH20 β‐N‐acetylglucosaminidase ; chitin recycling ; Vibrio spp ; marine bacteria
    Type: article
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  • 4
    Publication Date: 2022-01-19
    Description: Mit der Nationalen Forschungsdateninfrastruktur (NFDI) verfolgen Bund und Länder das Ziel, Datenbestände aus der Forschung für das deutsche Wissenschaftssystem nach den FAIR-Prinzipien systematisch zu erschließen, damit diese für Dritte besser zugänglich gemacht werden. Die NFDI wird als Netzwerk von Konsortien über einen Zeitraum von drei Jahren ab 2020 in drei aufeinanderfolgenden Förderphasen aufgebaut. Eine wichtige Rolle spielt dabei auch die Abdeckung disziplinübergreifender Querschnittsthemen. Zur Förderung des Dialogs zur NFDI in der Helmholtz-Gemeinschaft veranstaltete das Helmholtz Open Science Office am 4. Mai 2021 ein digitales Helmholtz Open Science Forum unter dem Motto „Helmholtz in der Nationalen Forschungsdateninfrastruktur (NFDI)“. Als Impuls für die weitere Diskussion lud das Helmholtz Open Science Office alle interessierten Mitarbeitenden der Helmholtz-Gemeinschaft zu diesem virtuellen Helmholtz Open Science Forum ein. Neben einer Einführung durch das NFDI-Direktorat stellten Vorträge die Bandbreite der NFDI-Beteiligung in Helmholtz dar (z. B. Praxisberichte bereits bewilligter Konsortien sowie Vorträge zum Umgang mit der NFDI aus Perspektive eines Zentrums, eines Forschungsbereichs und einer Plattform des Inkubators “Information & Data Science”); auch wurde das Zusammenspiel von NFDI und European Open Science Cloud (EOSC) vom Büro Brüssel der Gemeinschaft beleuchtet. Im Kern stand die Identifikation und Diskussion zu Helmholtz-spezifischen Aspekten bei der Realisierung der NFDI.
    Language: German
    Type: info:eu-repo/semantics/report
    Format: application/pdf
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