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  • Blackwell Publishing Ltd  (436)
  • PANGAEA  (414)
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  • 1
    Electronic Resource
    Electronic Resource
    Oxford, UK : Blackwell Publishing Ltd
    FEMS microbiology letters 173 (1999), S. 0 
    ISSN: 1574-6968
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Biology
    Notes: A molecular cloning strategy has been designed to isolate the gene that encodes the small cytoplasmic RNA (scRNA) component of bacterial signal recognition particles. Using this strategy a putative Listeria monocytogenes scRNA λgt11 recombinant clone was isolated. A previously described complementation assay developed to genetically select functional homologues of 4.5S RNA and scRNA of bacteria confirmed that the λgt11 recombinant clone isolated encoded for the scRNA from L. monocytogenes. A secondary structure for this scRNA is proposed and a phylogenetic comparison of the 276 base L. monocytogenes scRNA with previously characterised Gram-positive bacterial scRNAs is also presented.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Oxford, UK : Blackwell Publishing Ltd
    R & D management 4 (1974), S. 0 
    ISSN: 1467-9310
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Economics
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Oxford, UK : Blackwell Publishing Ltd
    R & D management 4 (1973), S. 0 
    ISSN: 1467-9310
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Economics
    Type of Medium: Electronic Resource
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  • 4
    Publication Date: 2023-03-09
    Keywords: Bottle, Niskin; Date/Time of event; DEPTH, water; Event label; Flow cytometry; Global Ocean Ecosystem Dynamics; GLOBEC; Latitude of event; Longitude of event; NEP-LTOP-CR10-2001-9; NEP-LTOP-CR10-2003-7; NEP-LTOP-CR11-2002-4; NEP-LTOP-CR11-2002-7; NEP-LTOP-CR11-2002-9; NEP-LTOP-CR11-2003-7; NEP-LTOP-CR11-2003-9; NEP-LTOP-CR1-2001-3; NEP-LTOP-CR1-2001-9; NEP-LTOP-CR1-2002-4; NEP-LTOP-CR1-2002-7; NEP-LTOP-CR1-2002-9; NEP-LTOP-CR1-2003-4; NEP-LTOP-CR1-2003-7; NEP-LTOP-CR1-2003-9; NEP-LTOP-CR2-2002-9; NEP-LTOP-CR2-2003-4; NEP-LTOP-CR2-2003-7; NEP-LTOP-CR2-2003-9; NEP-LTOP-CR3-2001-3; NEP-LTOP-CR3-2001-9; NEP-LTOP-CR3-2002-4; NEP-LTOP-CR3-2002-7; NEP-LTOP-CR3-2002-9; NEP-LTOP-CR3-2003-4; NEP-LTOP-CR3-2003-7; NEP-LTOP-CR3-2003-9; NEP-LTOP-CR4-2001-3; NEP-LTOP-CR4-2001-9; NEP-LTOP-CR4-2002-4; NEP-LTOP-CR4-2002-7; NEP-LTOP-CR4-2002-9; NEP-LTOP-CR4-2003-4; NEP-LTOP-CR4-2003-7; NEP-LTOP-CR4-2003-9; NEP-LTOP-CR5-2001-9; NEP-LTOP-CR5-2002-4; NEP-LTOP-CR5-2002-7; NEP-LTOP-CR5-2002-9; NEP-LTOP-CR5-2003-4; NEP-LTOP-CR5-2003-7; NEP-LTOP-CR5-2003-9; NEP-LTOP-CR6-2003-7; NEP-LTOP-CR6-2003-9; NEP-LTOP-CR7-2001-3; NEP-LTOP-CR7-2001-9; NEP-LTOP-CR7-2002-4; NEP-LTOP-CR7-2002-7; NEP-LTOP-CR7-2002-9; NEP-LTOP-CR7-2003-4; NEP-LTOP-CR7-2003-7; NEP-LTOP-CR7-2003-9; NEP-LTOP-CR8-2003-7; NEP-LTOP-CR8-2003-9; NEP-LTOP-CR9-2002-4; NEP-LTOP-CR9-2003-9; NEP-LTOP-CR9a-2001-3; NEP-LTOP-CR9A-2001-9; NEP-LTOP-CR9a-2002-7; NEP-LTOP-CR9a-2002-9; NEP-LTOP-CR9a-2003-4; NEP-LTOP-CR9a-2003-7; NEP-LTOP-FM1-2002-7; NEP-LTOP-FM1-2002-9; NEP-LTOP-FM1-2003-4; NEP-LTOP-FM1-2003-7; NEP-LTOP-FM1-2003-9; NEP-LTOP-FM1a-2003-9; NEP-LTOP-FM3-2001-3; NEP-LTOP-FM3-2001-9; NEP-LTOP-FM3-2002-4; NEP-LTOP-FM3-2002-7; NEP-LTOP-FM3-2002-9; NEP-LTOP-FM3-2003-4; NEP-LTOP-FM3-2003-7; NEP-LTOP-FM3-2003-9; NEP-LTOP-FM4-2001-3; NEP-LTOP-FM4-2001-9; NEP-LTOP-FM4-2002-4; NEP-LTOP-FM4-2002-7; NEP-LTOP-FM4-2002-9; NEP-LTOP-FM4-2003-4; NEP-LTOP-FM4-2003-7; NEP-LTOP-FM4-2003-9; NEP-LTOP-FM5-2001-9; NEP-LTOP-FM5-2002-4; NEP-LTOP-FM5-2002-7; NEP-LTOP-FM5-2002-9; NEP-LTOP-FM5-2003-4; NEP-LTOP-FM5-2003-7; NEP-LTOP-FM5-2003-9; NEP-LTOP-FM6-2002-9; NEP-LTOP-FM6-2003-7; NEP-LTOP-FM6-2003-9; NEP-LTOP-FM7-2001-3; NEP-LTOP-FM7-2001-9; NEP-LTOP-FM7-2002-4; NEP-LTOP-FM7-2002-7; NEP-LTOP-FM7-2002-9; NEP-LTOP-FM7-2003-4; NEP-LTOP-FM7-2003-7; NEP-LTOP-FM7-2003-9; NEP-LTOP-FM8-2001-9; NEP-LTOP-FM8-2002-4; NEP-LTOP-FM8-2002-7; NEP-LTOP-FM8-2002-9; NEP-LTOP-FM8-2003-4; NEP-LTOP-FM8-2003-7; NEP-LTOP-FM8-2003-9; NEP-LTOP-FM9-2001-9; NEP-LTOP-FM9-2002-4; NEP-LTOP-FM9-2002-7; NEP-LTOP-FM9-2002-9; NEP-LTOP-FM9-2003-4; NEP-LTOP-FM9-2003-7; NEP-LTOP-FM9-2003-9; NEP-LTOP-HH1-2001-9; NEP-LTOP-HH1-2002-4; NEP-LTOP-HH1-2002-7; NEP-LTOP-HH1-2002-9; NEP-LTOP-HH1-2003-4; NEP-LTOP-HH1-2003-7; NEP-LTOP-HH1-2003-9; NEP-LTOP-HH15-2003-4; NEP-LTOP-HH2-2001-9; NEP-LTOP-HH2-2002-4; NEP-LTOP-HH2-2002-9; NEP-LTOP-HH2-2003-4; NEP-LTOP-HH2-2003-7; NEP-LTOP-HH2-2003-9; NEP-LTOP-HH3-2001-9; NEP-LTOP-HH3-2002-4; NEP-LTOP-HH3-2002-9; NEP-LTOP-HH3-2003-4; NEP-LTOP-HH3-2003-7; NEP-LTOP-HH3-2003-9; NEP-LTOP-HH4-2001-9; NEP-LTOP-HH4-2002-4; NEP-LTOP-HH4-2002-9; NEP-LTOP-HH4-2003-4; NEP-LTOP-HH4-2003-7; NEP-LTOP-HH4-2003-9; NEP-LTOP-HH5-2001-9; NEP-LTOP-HH5-2002-4; NEP-LTOP-HH5-2002-9; NEP-LTOP-HH5-2003-4; NEP-LTOP-HH5-2003-7; NEP-LTOP-HH5-2003-9; NEP-LTOP-HH7-2001-9; NEP-LTOP-HH7-2002-4; NEP-LTOP-HH7-2002-9; NEP-LTOP-HH7-2003-7; NEP-LTOP-HH7-2003-9; NEP-LTOP-HH9-2002-4; NEP-LTOP-HH9-2002-9; NEP-LTOP-HH9-2003-9; NEP-LTOP-NH03-2002-2; NEP-LTOP-NH05-2002-2; NEP-LTOP-NH10-2002-12; NEP-LTOP-NH10-2002-2; NEP-LTOP-NH10-2002-7; NEP-LTOP-NH10-2002-9; NEP-LTOP-NH10-2003-2; NEP-LTOP-NH10-2003-4; NEP-LTOP-NH10-2003-7; NEP-LTOP-NH10-2003-9; NEP-LTOP-NH1-2002-12; NEP-LTOP-NH1-2002-7; NEP-LTOP-NH1-2003-4; NEP-LTOP-NH1-2003-7; NEP-LTOP-NH1-2003-9; NEP-LTOP-NH15-2001-11; NEP-LTOP-NH15-2001-3; NEP-LTOP-NH15-2001-7; NEP-LTOP-NH15-2001-9; NEP-LTOP-NH15-2002-12; NEP-LTOP-NH15-2002-2; NEP-LTOP-NH15-2002-4; NEP-LTOP-NH15-2002-7; NEP-LTOP-NH15-2002-9; NEP-LTOP-NH15-2003-2; NEP-LTOP-NH15-2003-4; NEP-LTOP-NH15-2003-7; NEP-LTOP-NH15-2003-9; NEP-LTOP-NH20-2002-2; NEP-LTOP-NH20-2002-9; NEP-LTOP-NH20-2003-7; NEP-LTOP-NH25-2001-11; NEP-LTOP-NH25-2001-3; NEP-LTOP-NH25-2001-7; NEP-LTOP-NH25-2001-9; NEP-LTOP-NH25-2002-12; NEP-LTOP-NH25-2002-2; NEP-LTOP-NH25-2002-4; NEP-LTOP-NH25-2002-7; NEP-LTOP-NH25-2002-9; NEP-LTOP-NH25-2003-2; NEP-LTOP-NH25-2003-4; NEP-LTOP-NH25-2003-7; NEP-LTOP-NH25-2003-9; NEP-LTOP-NH3-2002-12; NEP-LTOP-NH3-2002-4; NEP-LTOP-NH3-2002-7; NEP-LTOP-NH3-2002-9; NEP-LTOP-NH3-2003-2; NEP-LTOP-NH3-2003-4; NEP-LTOP-NH3-2003-7; NEP-LTOP-NH3-2003-9; NEP-LTOP-NH35-2001-11; NEP-LTOP-NH35-2001-3; NEP-LTOP-NH35-2001-7; NEP-LTOP-NH35-2001-9; NEP-LTOP-NH35-2002-12; NEP-LTOP-NH35-2002-2; NEP-LTOP-NH35-2002-4; NEP-LTOP-NH35-2002-7; NEP-LTOP-NH35-2002-9; NEP-LTOP-NH35-2003-2; NEP-LTOP-NH35-2003-4; NEP-LTOP-NH35-2003-7; NEP-LTOP-NH35-2003-9; NEP-LTOP-NH45-2001-3; NEP-LTOP-NH45-2001-7; NEP-LTOP-NH45-2001-9; NEP-LTOP-NH45-2002-12; NEP-LTOP-NH45-2002-2; NEP-LTOP-NH45-2002-4; NEP-LTOP-NH45-2002-7; NEP-LTOP-NH45-2002-9; NEP-LTOP-NH45-2003-2; NEP-LTOP-NH45-2003-4; NEP-LTOP-NH45-2003-7; NEP-LTOP-NH45-2003-9; NEP-LTOP-NH5-2001-11; NEP-LTOP-NH5-2001-3; NEP-LTOP-NH5-2001-7; NEP-LTOP-NH5-2001-9; NEP-LTOP-NH5-2002-12; NEP-LTOP-NH5-2002-4; NEP-LTOP-NH5-2002-7; NEP-LTOP-NH5-2002-9; NEP-LTOP-NH5-2003-2; NEP-LTOP-NH5-2003-4; NEP-LTOP-NH5-2003-7; NEP-LTOP-NH5-2003-9; NEP-LTOP-NH55-2002-4; NEP-LTOP-NH55-2003-2; NEP-LTOP-NH55-2003-9; NEP-LTOP-NH65-2001-3; NEP-LTOP-NH65-2001-7; NEP-LTOP-NH65-2001-9; NEP-LTOP-NH65-2002-12; NEP-LTOP-NH65-2002-2; NEP-LTOP-NH65-2002-4; NEP-LTOP-NH65-2002-7; NEP-LTOP-NH65-2002-9; NEP-LTOP-NH65-2003-2; NEP-LTOP-NH65-2003-4; NEP-LTOP-NH65-2003-7; NEP-LTOP-NH65-2003-9; NEP-LTOP-NH85-2001-3; NEP-LTOP-NH85-2001-7; NEP-LTOP-NH85-2001-9; NEP-LTOP-NH85-2002-12; NEP-LTOP-NH85-2002-4; NEP-LTOP-NH85-2002-7; NEP-LTOP-NH85-2002-9; NEP-LTOP-NH85-2003-2; NEP-LTOP-NH85-2003-4; NEP-LTOP-NH85-2003-7; NEP-LTOP-NH85-2003-9; NEP-LTOP-RR1-2001-9; NEP-LTOP-RR1-2002-4; NEP-LTOP-RR1-2002-7; NEP-LTOP-RR1-2003-4; NEP-LTOP-RR2-2001-3; NEP-LTOP-RR2-2001-9; NEP-LTOP-RR2-2002-4; NEP-LTOP-RR2-2002-7; NEP-LTOP-RR2-2003-4; NEP-LTOP-RR3-2001-3; NEP-LTOP-RR3-2001-9; NEP-LTOP-RR3-2002-4; NEP-LTOP-RR3-2002-7; NEP-LTOP-RR3-2003-4; NEP-LTOP-RR4-2001-9; NEP-LTOP-RR4-2002-4; NEP-LTOP-RR4-2002-7; NEP-LTOP-RR4-2003-4; NEP-LTOP-RR6-2001-9; NEP-LTOP-RR6-2002-4; NEP-LTOP-RR6-2002-7; NEP-LTOP-RR6-2003-4; NEP-LTOP-RR7-2001-9; NEP-LTOP-RR7-2002-4; NEP-LTOP-RR7-2002-7; NEP-LTOP-RR7-2003-4; NIS; Northeast Pacific; Prokaryotes
    Type: Dataset
    Format: text/tab-separated-values, 1725 data points
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  • 5
    Publication Date: 2023-03-16
    Keywords: Carbon, inorganic, dissolved; DEPTH, sediment/rock; GC; Gravity corer; GT03; GT03-28GC; Gunnar Thorson; K9; Kattegat-N; Methane Flux Control in Ocean Margin Sediments; METROL
    Type: Dataset
    Format: text/tab-separated-values, 5 data points
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  • 6
    Publication Date: 2023-03-16
    Keywords: Carbon, inorganic, dissolved; DEPTH, sediment/rock; GT03; GT03-58VC; Gunnar Thorson; K15; Laesoe Rende-N; Methane Flux Control in Ocean Margin Sediments; METROL; VC; Vibro corer
    Type: Dataset
    Format: text/tab-separated-values, 24 data points
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  • 7
    Publication Date: 2023-03-16
    Keywords: DEPTH, sediment/rock; GC; Gravity corer; GT03; GT03-26GC; Gunnar Thorson; K9; Kattegat-N; Methane, bicarbonate methanogenesis, production rate; Methane Flux Control in Ocean Margin Sediments; METROL; see reference(s)
    Type: Dataset
    Format: text/tab-separated-values, 34 data points
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  • 8
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    Unknown
    PANGAEA
    In:  Supplement to: Weaver, Barry L; Tarney, John; Saunders, Andrew D (1985): Geochemistry and mineralogy of basalts recovered from the Central North Atlantic. In: Bougault, H; Cande, SC; et al. (eds.), Initial Reports of the Deep Sea Drilling Project, Washington (U.S. Govt. Printing Office), 82, 395-419, https://doi.org/10.2973/dsdp.proc.82.119.1985
    Publication Date: 2023-05-12
    Description: DSDP Leg 82 drilled nine sites to the southwest of the Azores Islands on the west flank of the Mid-Atlantic Ridge (MAR) in an attempt to determine the temporal and spatial evolution of the Azores "hot-spot" activity. The chemistry of the basalts recovered during Leg 82 is extremely varied: in Holes 558 and 561, both enriched (E-type: CeN/YbN = 1.5 to 2.7; Zr/Nb = 4.5 to 9.6) and depleted (or normal-N-type: CeN/YbN = 0.6 to 0.8; Zr/Nb 〉 20) mid-ocean ridge basalts (MORB) occur as intercalated lava flows. To the north of the Hayes Fracture Zone, there is little apparent systematic relationship between basalt chemistry and geographic position. However, to the south of the Hayes Fracture Zone, the chemical character of the basalts (N-type MORB) is more uniform. The coexistence of both E-type and N-type MORB in one hole may be explicable in terms of either complex melting/ fractionation processes during basalt genesis or chemically heterogeneous mantle sources. Significant variation in the ratios of strongly incompatible trace elements (e.g., La/Ta; Th/Ta) in the basalts of Holes 558 and 561 are not easily explicable by processes such as dynamic partial melting or open system crystal fractionation. Rather, the trace element data require that the basalts are ultimately derived from at least two chemically distinct mantle sources. The results from Leg 82 are equivocal in terms of the evolution of the Azores "hot spot," but would appear not to be compatible with a simple model of E-type MORB magmatism associated with upwelling mantle "blobs." Models that invoke a locally chemically heterogeneous mantle are best able to account for the small-scale variation in basalt chemistry.
    Keywords: Deep Sea Drilling Project; DSDP
    Type: Dataset
    Format: application/zip, 13 datasets
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  • 9
    Publication Date: 2023-02-24
    Keywords: 31DSCG95_12_00143; 31DSCGC95_12; Acoustic Doppler Current Profiler; ADCP; Current velocity, east-west; Current velocity, north-south; DATE/TIME; DEPTH, water; Discoverer; LATITUDE; LONGITUDE; Shipboard Acoustic Doppler Current Profiling (SADCP); Ship velocity, absolute east-west, standard deviation; Ship velocity, absolute east-west components means; Ship velocity, absolute north-south components mean; Ship velocity, absolute north-south standard deviation; Temperature, technical; Temperature, technical, standard deviation; WOCE; World Ocean Circulation Experiment
    Type: Dataset
    Format: text/tab-separated-values, 38963 data points
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  • 10
    Publication Date: 2023-03-16
    Keywords: DEPTH, sediment/rock; GT03; GT03-58VC; Gunnar Thorson; K15; Laesoe Rende-N; Methane, bicarbonate methanogenesis, production rate; Methane Flux Control in Ocean Margin Sediments; METROL; see reference(s); VC; Vibro corer
    Type: Dataset
    Format: text/tab-separated-values, 66 data points
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