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  • 1
    ISSN: 1365-2958
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Biology , Medicine
    Notes: The analysis of a candidate biosynthetic gene cluster (97 kbp) for the polyether ionophore monensin from Streptomyces cinnamonensis has revealed a modular polyketide synthase composed of eight separate multienzyme subunits housing a total of 12 extension modules, and flanked by numerous other genes for which a plausible function in monensin biosynthesis can be ascribed. Deletion of essentially all these clustered genes specifically abolished monensin production, while overexpression in S. cinnamonensis of the putative pathway-specific regulatory gene monR led to a fivefold increase in monensin production. Experimental support is presented for a recently-proposed mechanism, for oxidative cyclization of a linear polyketide intermediate, involving four enzymes, the products of monBI, monBII, monCI and monCII. In frame deletion of either of the individual genes monCII (encoding a putative cyclase) or monBII (encoding a putative novel isomerase) specifically abolished monensin production. Also, heterologous expression of monCI, encoding a flavin-linked epoxidase, in S. coelicolor was shown to significantly increase the ability of S. coelicolor to epoxidize linalool, a model substrate for the presumed linear polyketide intermediate in monensin biosynthesis.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2024-03-02
    Keywords: 06MT15_2; 108-658A; 117-723; 117-728A; 130-806B; 133-820; 145-882; 146-893A; 160-967C; 160-971A; 161-975; 161-976; 161-977A; 165-1002C; 165-999A; 167-1012; 167-1014; 167-1016; 167-1017B; 167-1018A; 167-1019C; 167-1020; 177-1090; 177-1094; 181-1123; 184-1144A; 184-1145; 202-1239; 90-593_Site; 90-594_Site; A150/180; A180-73; Agulhas Basin; Agulhas Ridge; Alboran Sea; Amazon Fan; AMK-4438; AMK-4442; Angola Basin; ANT-IX/4; ANT-VIII/3; ANT-XI/2; ANT-XXVI/2; APSARA4; Arabian Sea; Arctic Ocean; ARK-II/5; Atlantic Ocean; Australia; Azores; Bermuda Rise; Bicol shelf; BIGSET; BIO; Biology; Brazil Basin; C9001C; CALYPSO; CALYPSO2; Calypso Corer; Calypso Corer II; Calypso Square Core System; Canarias Sea; Caribbean Sea; CASQS; Cayman Rise, Caribbean Sea; CH69-K09; Change-Le_CL01; Chatham Rise; Cocos Ridge; COMPCORE; Composite Core; Congo Fan; Coral Sea; Core; CORE; D117; DRILL; Drilling/drill rig; E45-29; E49-18; East Atlantic; Eastern Basin; Eastern Rio Grande Rise; Eirik Drift; ELT49; ELT49.017-PC; Eltanin; Equatorial Atlantic; Equatorial East Pacific; Event label; EW03; EW9302; EW9302-JPC8; FR1/94-GC3; GC; GeoB10038-4; GeoB1008-3; GeoB1016-3; GeoB1028-5; GeoB1105-4; GeoB1112-4; GeoB1309-2; GeoB1312-2; GeoB1401-4; GeoB1523-1; GeoB1710-3; GeoB1711; GeoB1711-4; GeoB1712-4; GeoB1722-1; GeoB2204-2; GeoB3005-1; GeoB3603-2; GEOSCIENCES, MARMARCORE; Giant piston corer; GIK12392-1; GIK15637-1; GIK17732-1; GIK17954-2; GIK17961-2; GIK23243-1 PS05/431; GIK23323-1; GIK23352-3; GIK23414-5; GL-77; global reconstruction; Glomar Challenger; GPC; Gravity corer; Gravity corer (Kiel type); GS900963; Gulf of California; Hainan_Island-S009; Huon_Peninsula; IMAGES I; IMAGES III - IPHIS; IMAGES IV-IPHIS III; IMAGES VIII - MONA; IMAGES VII - WEPAMA; IMAGES XII - MARCO POLO; IMAGES XI - P.I.C.A.S.S.O.; IMAGES XIV - MARCO POLO 2; Indian Ocean; Japan Trench; Joides Resolution; JPC; Jumbo Piston Core; K708-001; K708-007; KAL; KALMAR II; Kasten corer; KH94-4TSP-2PC; KL; KOL; KS205; Last Interglacial; LATITUDE; Leg108; Leg117; Leg130; Leg133; Leg145; Leg146; Leg160; Leg161; Leg165; Leg167; Leg177; Leg181; Leg184; Leg202; Leg90; Le Suroît; LONGITUDE; LPAZ-21P; M12392-1; M13/2; M15/2; M16/1; M16/2; M17/2; M20/2; M23/3; M23414; M25; M31/3; M31/3-108_GC; M34/1; M35/1; M35027-1; M53; M6/6; M7/4; M7/5; M9/4; Marge Ibérique; Marion Dufresne (1972); Marion Dufresne (1995); MATACORE; Maurice Ewing; MD00; MD012378; MD01-2378; MD012421; MD01-2421; MD01-2444/2443; MD022529; MD02-2529; MD02-2594; MD032616; MD03-2616; MD032664; MD03-2664; MD03-2707; MD052896; MD05-2896; MD052904; MD05-2904; MD062986; MD06-2986; MD06-3052; MD101; MD106; MD111; MD122; MD123; MD126; MD128; MD132; MD147; MD152; MD155; MD65; MD73025-2; MD85668; MD85674; MD88-770; MD90-963; MD952036; MD95-2036; MD952037; MD95-2037; MD952040; MD95-2040; MD952042; MD95-2042; MD972106; MD97-2106; MD972108; MD97-2108; MD972120; MD97-2120; MD972121; MD97-2121; MD972125; MD97-2125; MD972142; MD97-2142; MD972151; MD97-2151; MD982162; MD98-2162; Mediterranean Sea; Meteor (1964); Meteor (1986); Meteor Rise; Method comment; MONITOR MONSUN; Namibia continental slope; Newfoundland margin; NingalooReef; North Atlantic; Northeast Atlantic; North Pacific Ocean; Northwestern Pacific Ocean; Norwegian Sea; Number of points; OSIRIS I; P-013; P71; PABESIA; PALEOCINAT; PC; Piston corer; Piston corer (BGR type); Piston corer (Kiel type); Polarstern; Porto Seamount; PS05; PS1243-1; PS16; PS16/278; PS1754-1; PS18; PS18/232; PS2076-3; PS2489-2; PS28; PS28/256; PS75/034-2; PS75 BIPOMAC; RC08; RC08-145; RC08-39; RC10; RC10-62; RC10-65; RC11; RC1112; RC11-120; RC11-210; RC11-230; RC11-86; RC12; RC12-294; RC12-339; RC13; RC13-110; RC13-115; RC13-205; RC13-228; RC13-229; RC14; RC14-105; RC14-99; RC15; RC15-61; RC17; RC17-69; RC17-98; RC24; RC24-16; Reference/source; Robert Conrad; Sea surface temperature; Sea surface temperature, annual mean; Sea surface temperature, annual mean, standard deviation; Sea Surface Temperatures; SEYMAMA/SHIVA; Shirshov Ridge; Site; SK157/4; SL; SO136; SO136_003GC; SO184/1; SO201/2; SO201-2-85; SO95; Sonne; South Atlantic Ocean; South China Sea; South-East Pacific; Southern Cape Basin; Southern Ocean; South Pacific; South Pacific/CONT RISE; South Pacific/Tasman Sea/PLATEAU; South Pacific Ocean; South Tasman Rise; Southwest Pacific Ocean; SST; SU90-08; SU94-20bK; Super-interglacial; SWAF; TASQWA; Temperature anomaly; Temperature anomaly, standard deviation; TG7; Thermoluminescence, standard deviation; Thomas Washington; Timor Sea; TR126-23; TR126-29; TR163-19; TR163-22; TY93929/P; V12; V12-122; V18; V18-68; V19; V19-29; V19-53; V20; V20-120; V21; V21-146; V22; V22-108; V22-174; V22-182; V22-196; V22-38; V23; V23-82; V25; V25-21; V25-56; V25-59; V27; V27-116; V27-20; V27-60; V27-86; V28; V28-127; V28-14; V28-238; V28-304; V28-345; V28-56; V29; V29-179; V29-29; V30; V30-40; V30-49; V32; V32-126; V32-128; V34; V34-88; Vema; VNTR01; VNTR01-8PC; W8402A; W8402A-14; Walvis Ridge, Southeast Atlantic Ocean; Wecoma; Western Arabian See; Western Basin; Y69-106P; Y69-71P; Y71-06; Y71-06-12; Y71-09; Y71-09-101; Y71-3-2; Y7211; Y7211-1; Y9; Y9_core; YALOC69; Yaquina; Z14-16; Z2108
    Type: Dataset
    Format: text/tab-separated-values, 2262 data points
    Location Call Number Limitation Availability
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  • 3
    Publication Date: 2024-02-29
    Keywords: 145-882; 167-1019C; 167-1020; 177-1090; 177-1094; 181-1123; 90-593_Site; Agulhas Basin; Agulhas Ridge; AMK-4438; AMK-4442; ANT-IX/4; ANT-VIII/3; ANT-XI/2; ANT-XXVI/2; APSARA4; C9001C; CALYPSO; CALYPSO2; Calypso Corer; Calypso Corer II; CH69-K09; Chatham Rise; COMPCORE; Composite Core; Core; CORE; D117; DRILL; Drilling/drill rig; E45-29; E49-18; Eirik Drift; ELT49; ELT49.017-PC; Eltanin; Event label; EW9302; EW9302-JPC8; FR1/94-GC3; GC; GIK23414-5; global reconstruction; Glomar Challenger; Gravity corer; Gravity corer (Kiel type); IMAGES I; IMAGES III - IPHIS; IMAGES XI - P.I.C.A.S.S.O.; Indian Ocean; Joides Resolution; JPC; Jumbo Piston Core; K708-001; K708-007; KALMAR II; KL; Last Interglacial; LATITUDE; Leg145; Leg167; Leg177; Leg181; Leg90; LONGITUDE; M17/2; M23414; Marion Dufresne (1972); Marion Dufresne (1995); MATACORE; Maurice Ewing; MD00; MD032664; MD03-2664; MD062986; MD06-2986; MD101; MD106; MD132; MD152; MD73025-2; MD88-770; MD952040; MD95-2040; MD972106; MD97-2106; MD972108; MD97-2108; MD972120; MD97-2120; Meteor (1986); Meteor Rise; Method comment; MUC; MultiCorer; Newfoundland margin; North Pacific Ocean; Northwestern Pacific Ocean; Norwegian Sea; Number of points; OSIRIS I; P-013; PC; Piston corer; Piston corer (BGR type); Polarstern; Porto Seamount; PS16; PS16/278; PS1754-1; PS18; PS18/232; PS2076-1; PS2489-2; PS28; PS28/256; PS75/034-2; PS75 BIPOMAC; RC08; RC08-39; RC11; RC1112; RC11-120; RC15; RC15-61; Reference/source; Robert Conrad; Sea surface temperature, annual mean; Sea Surface Temperatures; Shirshov Ridge; Site; SL; SO136; SO136_003GC; SO201/2; SO201-2-85; Sonne; South Atlantic Ocean; South Pacific; South Pacific/Tasman Sea/PLATEAU; South Pacific Ocean; South Tasman Rise; Southwest Pacific Ocean; SST; SU90/08; Super-interglacial; Tasman Sea; TASQWA; Temperature, difference; TSP-2PC; V18; V18-68; V20; V20-120; V22; V22-108; V23; V23-82; V27; V27-116; V27-20; V27-60; V27-86; V28; V28-14; V28-56; V29; V29-179; V30; V30-97; Vema; Y7211; Y7211-1; Y9; Y9_core; Yaquina
    Type: Dataset
    Format: text/tab-separated-values, 378 data points
    Location Call Number Limitation Availability
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  • 4
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    PANGAEA
    In:  Supplement to: Turney, Chris S M; Jones, Richard; McKay, Nicholas; Van Sebille, Erik; Thomas, Zoë Amber; Hillenbrand, Claus-Dieter; Fogwill, Chris J (in review): A global mean sea-surface temperature dataset for the Last Interglacial (129–116 kyr) and contribution of thermal expansion to sea-level change. Earth System Science Data Discussions, https://doi.org/10.5194/essd-2019-249
    Publication Date: 2024-02-26
    Description: A valuable analogue for assessing Earth's sensitivity to warming is the Last Interglacial (LIG; 129-116 kyr), when global temperatures and mean sea level were higher than today. We report here a global network of LIG sea-surface temperatures (SST) obtained from various published temperature proxies (e.g. faunal/floral plankton assemblages, Mg/Ca ratios of calcareous organisms, and alkenone UK'37). Each reconstruction is averaged across the LIG (anomalies relative to 1981-2010), corrected for ocean drift and with varying seasonality (189 annual, 99 December-February, and 92 June-August). Because of local δ18O seawater changes, uncertainty in the age models of marine cores, and differences in sampling resolution and/or sedimentation rates, we do not attempt to resolve changes within the LIG. Therefore, and to avoid bias towards individual LIG SSTs based on only a single (and potentially erroneous) measurement or a single interpolated data point, we report temperatures averaged across the entire LIG. The global dataset provides a remarkably coherent pattern of higher SST increases at polar latitudes than in the tropics, with comparable estimates between different SST proxies.
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 5
    Publication Date: 2024-02-29
    Keywords: 06MT15_2; 108-658A; 161-975; 161-976; 162-980; A150/180; A180-73; Agulhas Basin; Alboran Sea; Amazon Fan; AMK-4438; AMK-4442; ANT-IX/4; ANT-VIII/3; Atlantic Ocean; Brazil Basin; CALYPSO; Calypso Corer; Canarias Sea; CH69-K09; Charles Darwin; COMPCORE; Composite Core; D117; DRILL; Drilling/drill rig; E45-29; E49-18; East Atlantic; Eastern Rio Grande Rise; Eirik Drift; ELT49; ELT49.017-PC; Eltanin; Event label; EW9302; EW9302-JPC8; GC; GeoB1309-2; GeoB1312-2; GeoB1523-1; GeoB2204-2; GIK12392-1; GIK15637-1; GIK17954-2; GIK23323-1; GIK23414-5; GL-77; global reconstruction; Gravity corer; Gravity corer (Kiel type); IMAGES I; IMAGES II; IMAGES III - IPHIS; IMAGES XI - P.I.C.A.S.S.O.; Indian Ocean; Joides Resolution; JPC; JPC37; Jumbo Piston Core; K708-001; K708-007; KAL; KAL15; Kasten corer; Kasten corer 15 cm; KL; KOL; Last Interglacial; LATITUDE; Leg108; Leg161; Leg162; Le Suroît; LONGITUDE; M12392-1; M15/2; M16/2; M17/2; M23/3; M23414; M25; M35/1; M35027-1; M53; M7/4; Marion Dufresne (1972); Marion Dufresne (1995); Maurice Ewing; MD00; MD032664; MD03-2664; MD101; MD105; MD106; MD132; MD73025-2; MD952040; MD95-2040; MD962085; MD96-2085; MD972142; MD97-2142; Meteor (1964); Meteor (1986); Meteor Rise; Method comment; MONITOR MONSUN; NA87-25; NEAP; NEAP-18K; Newfoundland margin; North Atlantic; Northeast Atlantic; Norwegian Sea; Number of points; off Orange River; OSIRIS I; P-013; PALEOCINAT; PC; Piston corer; Piston corer (BGR type); Piston corer (Kiel type); Polarstern; Porto Seamount; PS16; PS16/278; PS1754-1; PS18; PS18/232; PS2076-3; RC08; RC08-145; RC08-39; RC10; RC10-65; RC11; RC1112; RC11-120; RC11-210; RC11-230; RC11-86; RC12; RC12-294; RC12-339; RC13; RC13-205; RC13-228; RC13-229; RC14; RC14-99; RC15; RC15-61; RC17; RC17-69; RC17-98; RC24; RC24-16; Reference/source; Robert Conrad; Sea surface temperature, June-August; Sea surface temperature, June-August, standard deviation; Sea Surface Temperatures; Site; SL; SO95; Sonne; South Atlantic Ocean; South China Sea; SST; SU90-03; Super-interglacial; TR126-23; TR126-29; V12; V12-122; V18; V18-68; V19; V19-29; V19-53; V20; V20-120; V21; V21-146; V22; V22-108; V22-174; V22-182; V22-196; V22-38; V23; V23-82; V25; V25-21; V25-56; V25-59; V27; V27-116; V27-20; V27-60; V27-86; V28; V28-127; V28-14; V28-238; V28-304; V28-345; V28-56; V29; V29-179; V29-29; V30; V30-40; V30-49; V32; V32-126; V32-128; V34; V34-88; Vema; Western Basin; Y71-06; Y71-06-12; Y7211; Y7211-1; Yaquina
    Type: Dataset
    Format: text/tab-separated-values, 1104 data points
    Location Call Number Limitation Availability
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  • 6
    Publication Date: 2024-03-02
    Keywords: 06MT15_2; 108-658A; 117-723; 117-728A; 130-806B; 133-820; 145-882; 146-893A; 160-967C; 160-971A; 161-975; 161-976; 161-977A; 165-1002C; 165-999A; 167-1012; 167-1014; 167-1016; 167-1017B; 167-1018A; 167-1019C; 167-1020; 177-1090; 177-1094; 181-1123; 184-1144A; 184-1145; 202-1239; 90-593_Site; 90-594_Site; A150/180; A180-73; Agulhas Basin; Agulhas Ridge; Alboran Sea; Amazon Fan; AMK-4438; AMK-4442; Angola Basin; ANT-IX/4; ANT-VIII/3; ANT-XI/2; ANT-XXVI/2; APSARA4; Arabian Sea; Arctic Ocean; ARK-II/5; Atlantic Ocean; Australia; Azores; Bermuda Rise; Bicol shelf; BIGSET; BIO; Biology; Brazil Basin; C9001C; CALYPSO; CALYPSO2; Calypso Corer; Calypso Corer II; Calypso Square Core System; Canarias Sea; Caribbean Sea; CASQS; Cayman Rise, Caribbean Sea; CH69-K09; Change-Le_CL01; Chatham Rise; Cocos Ridge; COMPCORE; Composite Core; Congo Fan; Coral Sea; Core; CORE; D117; DRILL; Drilling/drill rig; E45-29; E49-18; East Atlantic; Eastern Basin; Eastern Rio Grande Rise; Eirik Drift; ELT49; ELT49.017-PC; Eltanin; Equatorial Atlantic; Equatorial East Pacific; Event label; EW03; EW9302; EW9302-JPC8; FR1/94-GC3; GC; GeoB10038-4; GeoB1008-3; GeoB1016-3; GeoB1028-5; GeoB1105-4; GeoB1112-4; GeoB1309-2; GeoB1312-2; GeoB1401-4; GeoB1523-1; GeoB1710-3; GeoB1711; GeoB1711-4; GeoB1712-4; GeoB1722-1; GeoB2204-2; GeoB3005-1; GeoB3603-2; GEOSCIENCES, MARMARCORE; Giant piston corer; GIK12392-1; GIK15637-1; GIK17732-1; GIK17954-2; GIK17961-2; GIK23243-1 PS05/431; GIK23323-1; GIK23352-3; GIK23414-5; GL-77; global reconstruction; Glomar Challenger; GPC; Gravity corer; Gravity corer (Kiel type); GS900963; Gulf of California; Hainan_Island-S009; Huon_Peninsula; IMAGES I; IMAGES III - IPHIS; IMAGES IV-IPHIS III; IMAGES VIII - MONA; IMAGES VII - WEPAMA; IMAGES XII - MARCO POLO; IMAGES XI - P.I.C.A.S.S.O.; IMAGES XIV - MARCO POLO 2; Indian Ocean; Japan Trench; Joides Resolution; JPC; Jumbo Piston Core; K708-001; K708-007; KAL; KALMAR II; Kasten corer; KH94-4TSP-2PC; KL; KOL; KS205; Last Interglacial; LATITUDE; Leg108; Leg117; Leg130; Leg133; Leg145; Leg146; Leg160; Leg161; Leg165; Leg167; Leg177; Leg181; Leg184; Leg202; Leg90; Le Suroît; LONGITUDE; LPAZ-21P; M12392-1; M13/2; M15/2; M16/1; M16/2; M17/2; M20/2; M23/3; M23414; M25; M31/3; M31/3-108_GC; M34/1; M35/1; M35027-1; M53; M6/6; M7/4; M7/5; M9/4; Marge Ibérique; Marion Dufresne (1972); Marion Dufresne (1995); MATACORE; Maurice Ewing; MD00; MD012378; MD01-2378; MD012421; MD01-2421; MD01-2444/2443; MD022529; MD02-2529; MD02-2594; MD032616; MD03-2616; MD032664; MD03-2664; MD03-2707; MD052896; MD05-2896; MD052904; MD05-2904; MD062986; MD06-2986; MD06-3052; MD101; MD106; MD111; MD122; MD123; MD126; MD128; MD132; MD147; MD152; MD155; MD65; MD73025-2; MD85668; MD85674; MD88-770; MD90-963; MD952036; MD95-2036; MD952037; MD95-2037; MD952040; MD95-2040; MD952042; MD95-2042; MD972106; MD97-2106; MD972108; MD97-2108; MD972120; MD97-2120; MD972121; MD97-2121; MD972125; MD97-2125; MD972142; MD97-2142; MD972151; MD97-2151; MD982162; MD98-2162; Mediterranean Sea; Meteor (1964); Meteor (1986); Meteor Rise; Method comment; MONITOR MONSUN; Namibia continental slope; Newfoundland margin; NingalooReef; North Atlantic; Northeast Atlantic; North Pacific Ocean; Northwestern Pacific Ocean; Norwegian Sea; OSIRIS I; P-013; P71; PABESIA; PALEOCINAT; PC; Piston corer; Piston corer (BGR type); Piston corer (Kiel type); Polarstern; Porto Seamount; PS05; PS1243-1; PS16; PS16/278; PS1754-1; PS18; PS18/232; PS2076-3; PS2489-2; PS28; PS28/256; PS75/034-2; PS75 BIPOMAC; RC08; RC08-145; RC08-39; RC10; RC10-62; RC10-65; RC11; RC1112; RC11-120; RC11-210; RC11-230; RC11-86; RC12; RC12-294; RC12-339; RC13; RC13-110; RC13-115; RC13-205; RC13-228; RC13-229; RC14; RC14-105; RC14-99; RC15; RC15-61; RC17; RC17-69; RC17-98; RC24; RC24-16; Reference/source; Robert Conrad; Sea surface temperature; Sea surface temperature, annual mean; Sea surface temperature, annual mean, standard deviation; Sea Surface Temperatures; SEYMAMA/SHIVA; Shirshov Ridge; Site; SK157/4; SL; SO136; SO136_003GC; SO184/1; SO201/2; SO201-2-85; SO95; Sonne; South Atlantic Ocean; South China Sea; South-East Pacific; Southern Cape Basin; Southern Ocean; South Pacific; South Pacific/CONT RISE; South Pacific/Tasman Sea/PLATEAU; South Pacific Ocean; South Tasman Rise; Southwest Pacific Ocean; SST; SU90-08; SU94-20bK; Super-interglacial; SWAF; TASQWA; Temperature anomaly; Temperature anomaly, standard deviation; TG7; Thermoluminescence, standard deviation; Thomas Washington; Timor Sea; TR126-23; TR126-29; TR163-19; TR163-22; TY93929/P; V12; V12-122; V18; V18-68; V19; V19-29; V19-53; V20; V20-120; V21; V21-146; V22; V22-108; V22-174; V22-182; V22-196; V22-38; V23; V23-82; V25; V25-21; V25-56; V25-59; V27; V27-116; V27-20; V27-60; V27-86; V28; V28-127; V28-14; V28-238; V28-304; V28-345; V28-56; V29; V29-179; V29-29; V30; V30-40; V30-49; V32; V32-126; V32-128; V34; V34-88; Vema; VNTR01; VNTR01-8PC; W8402A; W8402A-14; Walvis Ridge, Southeast Atlantic Ocean; Wecoma; Western Arabian See; Western Basin; Y69-106P; Y69-71P; Y71-06; Y71-06-12; Y71-09; Y71-09-101; Y71-3-2; Y7211; Y7211-1; Y9; Y9_core; YALOC69; Yaquina; Z14-16; Z2108
    Type: Dataset
    Format: text/tab-separated-values, 2073 data points
    Location Call Number Limitation Availability
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  • 7
    Publication Date: 2024-03-02
    Keywords: 06MT15_2; 108-658A; 161-976; 177-1089; 177-1094; A150/180; A180-73; Agulhas Basin; Agulhas Ridge; Alboran Sea; Amazon Fan; AMK-4438; AMK-4442; ANT-IX/4; ANT-VIII/3; ANT-X/5; ANT-XI/2; ANT-XI/4; ANT-XVIII/5a; APSARA2; Atlantic Ridge; Brazil Basin; CALYPSO; Calypso Corer; Canarias Sea; CH69-K09; COMPCORE; Composite Core; Cosmonauts Sea; D117; DRILL; Drilling/drill rig; E45-29; E49-18; East Atlantic; Eastern Rio Grande Rise; Eirik Drift; ELT49; ELT49.017-PC; Eltanin; Event label; EW9302; EW9302-JPC8; GC; GeoB1309-2; GeoB1312-2; GeoB1523-1; GeoB2204-2; GIK12392-1; GIK15637-1; GIK17954-2; GIK23414-5; GL-77; global reconstruction; Gravity corer; Gravity corer (Kiel type); IMAGES I; IMAGES III - IPHIS; IMAGES XI - P.I.C.A.S.S.O.; Indian Ocean; Joides Resolution; JPC; Jumbo Piston Core; K708-001; K708-007; KAL; Kasten corer; KL; KOL; Last Interglacial; LATITUDE; Leg108; Leg161; Leg177; LONGITUDE; M12392-1; M15/2; M16/2; M17/2; M23/3; M23414; M25; M35/1; M35027-1; M53; Marion Dufresne (1972); Marion Dufresne (1995); Maurice Ewing; MD00; MD032664; MD03-2664; MD101; MD106; MD132; MD38; MD73025-2; MD84-527; MD84-551; MD952040; MD95-2040; MD972142; MD97-2142; Meteor (1964); Meteor (1986); Meteor Rise; Method comment; MONITOR MONSUN; Newfoundland margin; Northeast Atlantic; Norwegian Sea; Number of points; OSIRIS I; P-013; PC; Piston corer; Piston corer (BGR type); Piston corer (Kiel type); Polarstern; Porto Seamount; PS16; PS16/271; PS16/278; PS16/311; PS16/345; PS1752-1; PS1754-1; PS1768-8; PS1778-5; PS18; PS18/232; PS18/238; PS18/260; PS2076-3; PS2082-1; PS2102-2; PS22/769; PS22/803; PS22 06AQANTX_5; PS2276-4; PS2305-6; PS2489-2; PS2603-3; PS28; PS28/256; PS30; PS30/140; PS58; PS58/271-1; RC08; RC08-145; RC08-39; RC10; RC10-65; RC11; RC1112; RC11-120; RC11-210; RC11-230; RC11-86; RC12; RC12-294; RC12-339; RC13; RC13-205; RC13-228; RC13-229; RC14; RC14-99; RC15; RC15-61; RC17; RC17-69; RC17-98; RC24; RC24-16; Reference/source; Robert Conrad; Sea surface temperature, December-February; Sea surface temperature, December-February, standard deviation; Sea Surface Temperatures; Shona Ridge; Site; SL; SO95; Sonne; South Atlantic Ocean; South China Sea; Southeast Pacific; South Indian Ocean; SST; Super-interglacial; TR126-23; TR126-29; V12; V12-122; V18; V18-68; V19; V19-29; V19-53; V20; V20-120; V21; V21-146; V22; V22-108; V22-174; V22-182; V22-196; V22-38; V23; V23-82; V25; V25-21; V25-56; V25-59; V27; V27-116; V27-20; V27-60; V27-86; V28; V28-127; V28-14; V28-238; V28-304; V28-345; V28-56; V29; V29-179; V29-29; V30; V30-40; V30-49; V32; V32-126; V32-128; V34; V34-88; Vema; Y71-06; Y71-06-12; Y7211; Y7211-1; Yaquina
    Type: Dataset
    Format: text/tab-separated-values, 1188 data points
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  • 8
    Publication Date: 2019-09-24
    Description: Determining the timing and impact of anthropogenic climate change in data-sparse regions is a considerable challenge. Arguably, nowhere is this more difficult than the Antarctic Peninsula and the subantarctic South Atlantic where observational records are relatively short but where high rates of warming have been experienced since records began. Here we interrogate recently developed monthly-resolved observational datasets from the Falkland Islands and South Georgia, and extend the records back using climate-sensitive peat growth over the past 6000 years. Investigating the subantarctic climate data with ERA-Interim and Twentieth Century Reanalysis, we find that a stepped increase in precipitation across the 1940s is related to a change in synoptic atmospheric circulation: a westward migration of quasi-permanent positive pressure anomalies in the South Atlantic has brought the subantarctic islands under the increased influence of meridional airflow associated with the Amundsen Sea Low. Analysis of three comprehensively multi-dated (using 14C and 137Cs) peat sequences across the two islands demonstrates unprecedented growth rates since the mid-twentieth century relative to the last 6000 years. Comparison to observational and reconstructed sea surface temperatures suggests this change is linked to a warming tropical Pacific Ocean. Our results imply 'modern' South Atlantic atmospheric circulation has not been under this configuration for millennia.
    Type: Article , PeerReviewed
    Format: text
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  • 9
    Publication Date: 2020-02-06
    Description: Occupying about 14 % of the world's surface, the Southern Ocean plays a fundamental role in ocean and atmosphere circulation, carbon cycling and Antarctic ice-sheet dynamics. Unfortunately, high interannual variability and a dearth of instrumental observations before the 1950s limits our understanding of how marine–atmosphere–ice domains interact on multi-decadal timescales and the impact of anthropogenic forcing. Here we integrate climate-sensitive tree growth with ocean and atmospheric observations on southwest Pacific subantarctic islands that lie at the boundary of polar and subtropical climates (52–54° S). Our annually resolved temperature reconstruction captures regional change since the 1870s and demonstrates a significant increase in variability from the 1940s, a phenomenon predating the observational record. Climate reanalysis and modelling show a parallel change in tropical Pacific sea surface temperatures that generate an atmospheric Rossby wave train which propagates across a large part of the Southern Hemisphere during the austral spring and summer. Our results suggest that modern observed high interannual variability was established across the mid-twentieth century, and that the influence of contemporary equatorial Pacific temperatures may now be a permanent feature across the mid- to high latitudes.
    Type: Article , PeerReviewed
    Format: text
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  • 10
    Publication Date: 2024-02-07
    Description: Geological archives record multiple reversals of Earth’s magnetic poles, but the global impacts of these events, if any, remain unclear. Uncertain radiocarbon calibration has limited investigation of the potential effects of the last major magnetic inversion, known as the Laschamps Excursion [41 to 42 thousand years ago (ka)]. We use ancient New Zealand kauri trees (Agathis australis) to develop a detailed record of atmospheric radiocarbon levels across the Laschamps Excursion. We precisely characterize the geomagnetic reversal and perform global chemistry-climate modeling and detailed radiocarbon dating of paleoenvironmental records to investigate impacts. We find that geomagnetic field minima ~42 ka, in combination with Grand Solar Minima, caused substantial changes in atmospheric ozone concentration and circulation, driving synchronous global climate shifts that caused major environmental changes, extinction events, and transformations in the archaeological record.
    Type: Article , PeerReviewed
    Format: text
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