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Sous-catégories
Cette catégorie comprend 3 sous-catégories, dont les 3 ci-dessous.
Média dans la catégorie « Media from PLOS Genetics »
Cette catégorie comprend 1 273 fichiers, dont les 200 ci-dessous.
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A genome alignment of eight Yersinia isolates.png 2 756 × 1 745 ; 3,14 Mio
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A-Bow-Tie-Genetic-Architecture-for-Morphogenesis-Suggested-by-a-Genome-Wide-RNAi-Screen-in-pgen.1002010.s010.ogv 2 min 10 s, 1 898 × 1 226 ; 8,63 Mio
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A-Bow-Tie-Genetic-Architecture-for-Morphogenesis-Suggested-by-a-Genome-Wide-RNAi-Screen-in-pgen.1002010.s011.ogv 2 min 10 s, 1 898 × 1 226 ; 10,45 Mio
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A-Drosophila-Model-for-EGFR-Ras-and-PI3K-Dependent-Human-Glioma-pgen.1000374.s016.ogv 1,3 s, 950 × 930 ; 1,97 Mio
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A-Drosophila-Model-for-EGFR-Ras-and-PI3K-Dependent-Human-Glioma-pgen.1000374.s017.ogv 2,4 s, 760 × 970 ; 1,51 Mio
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A-Drosophila-Model-for-EGFR-Ras-and-PI3K-Dependent-Human-Glioma-pgen.1000374.s018.ogv 4,7 s, 1 024 × 1 024 ; 1,58 Mio
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A-Drosophila-Model-for-EGFR-Ras-and-PI3K-Dependent-Human-Glioma-pgen.1000374.s019.ogv 1,8 s, 526 × 606 ; 246 kio
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A-Drosophila-Model-of-High-Sugar-Diet-Induced-Cardiomyopathy-pgen.1003175.s010.ogv 30 s, 320 × 240 ; 1,66 Mio
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A-Drosophila-Model-of-High-Sugar-Diet-Induced-Cardiomyopathy-pgen.1003175.s011.ogv 30 s, 320 × 240 ; 1,24 Mio
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A-Drosophila-Model-of-High-Sugar-Diet-Induced-Cardiomyopathy-pgen.1003175.s012.ogv 30 s, 320 × 240 ; 1,51 Mio
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A-Drosophila-Model-of-High-Sugar-Diet-Induced-Cardiomyopathy-pgen.1003175.s013.ogv 30 s, 320 × 240 ; 986 kio
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A-Drosophila-Model-of-High-Sugar-Diet-Induced-Cardiomyopathy-pgen.1003175.s014.ogv 30 s, 320 × 240 ; 1,23 Mio
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A-Drosophila-Model-of-High-Sugar-Diet-Induced-Cardiomyopathy-pgen.1003175.s015.ogv 30 s, 320 × 240 ; 742 kio
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A-Drosophila-Model-of-High-Sugar-Diet-Induced-Cardiomyopathy-pgen.1003175.s016.ogv 30 s, 320 × 240 ; 2,44 Mio
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A-Drosophila-Model-of-High-Sugar-Diet-Induced-Cardiomyopathy-pgen.1003175.s017.ogv 30 s, 320 × 240 ; 1,94 Mio
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A-Drosophila-Model-of-High-Sugar-Diet-Induced-Cardiomyopathy-pgen.1003175.s018.ogv 30 s, 320 × 240 ; 2,26 Mio
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A-Follicle-Rupture-Assay-Reveals-an-Essential-Role-for-Follicular-Adrenergic-Signaling-in-pgen.1005604.s010.ogv 8,9 s, 804 × 756 ; 1,18 Mio
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A-Genetic-Cascade-of-let-7-ncl-1-fib-1-Modulates-Nucleolar-Size-and-rRNA-Pool-in-Caenorhabditis-pgen.1005580.s009.ogv 2,2 s, 1 844 × 1 036 ; 314 kio
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A-Genetic-Cascade-of-let-7-ncl-1-fib-1-Modulates-Nucleolar-Size-and-rRNA-Pool-in-Caenorhabditis-pgen.1005580.s010.ogv 0,8 s, 1 844 × 1 036 ; 489 kio
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A-Missense-Change-in-the-ATG4D-Gene-Links-Aberrant-Autophagy-to-a-Neurodegenerative-Vacuolar-pgen.1005169.s010.ogv 1 min 15 s, 640 × 360 ; 16,52 Mio
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A-Missense-Mutation-in-the-SERPINH1-Gene-in-Dachshunds-with-Osteogenesis-Imperfecta-pgen.1000579.s007.ogv 29 s, 320 × 240 ; 2,84 Mio
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A-Motor-Function-for-the-DEAD-Box-RNA-Helicase-Gemin3-in-Drosophila-pgen.1000265.s002.ogv 20 s, 800 × 400 ; 967 kio
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A-Motor-Function-for-the-DEAD-Box-RNA-Helicase-Gemin3-in-Drosophila-pgen.1000265.s003.ogv 8,9 s, 800 × 400 ; 397 kio
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A-Novel-Mutant-Allele-of-Pw1Peg3-Does-Not-Affect-Maternal-Behavior-or-Nursing-Behavior-pgen.1006053.s001.ogv 2 min 19 s, 649 × 364 ; 15,26 Mio
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A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s001.ogv 7,3 s, 900 × 470 ; 1,97 Mio
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A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s002.ogv 3,7 s, 432 × 208 ; 74 kio
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A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s003.ogv 2,8 s, 432 × 208 ; 44 kio
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A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s004.ogv 10 s, 658 × 517 ; 3,91 Mio
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A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s005.ogv 8,5 s, 600 × 300 ; 7,4 Mio
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A-Novel-Role-for-MAPKAPK2-in-Morphogenesis-during-Zebrafish-Development-pgen.1000413.s006.ogv 19 s, 400 × 300 ; 135 kio
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A-Ploidy-Sensitive-Mechanism-Regulates-Aperture-Formation-on-the-Arabidopsis-Pollen-Surface-and-pgen.1006060.s007.ogv 15 s, 1 666 × 1 130 ; 2,69 Mio
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A-Role-for-Phosphatidic-Acid-in-the-Formation-of-“Supersized”-Lipid-Droplets-pgen.1002201.s005.ogv 5,4 s, 640 × 480 ; 40 kio
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A-Role-for-Phosphatidic-Acid-in-the-Formation-of-“Supersized”-Lipid-Droplets-pgen.1002201.s006.ogv 5,4 s, 640 × 480 ; 42 kio
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A-Role-for-Phosphatidic-Acid-in-the-Formation-of-“Supersized”-Lipid-Droplets-pgen.1002201.s007.ogv 32 s, 640 × 480 ; 243 kio
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A-Role-for-Phosphatidic-Acid-in-the-Formation-of-“Supersized”-Lipid-Droplets-pgen.1002201.s008.ogv 24 s, 640 × 480 ; 360 kio
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A-SEL1L-Mutation-Links-a-Canine-Progressive-Early-Onset-Cerebellar-Ataxia-to-the-Endoplasmic-pgen.1002759.s007.ogv 1 min 37 s, 640 × 480 ; 19,73 Mio
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A-SEL1L-Mutation-Links-a-Canine-Progressive-Early-Onset-Cerebellar-Ataxia-to-the-Endoplasmic-pgen.1002759.s008.ogv 1 min 56 s, 640 × 480 ; 23,41 Mio
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A-SEL1L-Mutation-Links-a-Canine-Progressive-Early-Onset-Cerebellar-Ataxia-to-the-Endoplasmic-pgen.1002759.s009.ogv 1 min 48 s, 640 × 480 ; 18,26 Mio
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A-Simple-Screen-to-Identify-Promoters-Conferring-High-Levels-of-Phenotypic-Noise-pgen.1000307.s006.ogv 6,9 s, 320 × 240 ; 46 kio
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A-Simple-Screen-to-Identify-Promoters-Conferring-High-Levels-of-Phenotypic-Noise-pgen.1000307.s007.ogv 9,5 s, 320 × 240 ; 114 kio
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Abscission-Is-Regulated-by-the-ESCRT-III-Protein-Shrub-in-Drosophila-Germline-Stem-Cells-pgen.1004653.s004.ogv 5,0 s, 1 024 × 1 024 ; 1,41 Mio
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Abscission-Is-Regulated-by-the-ESCRT-III-Protein-Shrub-in-Drosophila-Germline-Stem-Cells-pgen.1004653.s005.ogv 5,0 s, 1 024 × 1 024 ; 716 kio
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Abscission-Is-Regulated-by-the-ESCRT-III-Protein-Shrub-in-Drosophila-Germline-Stem-Cells-pgen.1004653.s006.ogv 5,0 s, 1 024 × 1 024 ; 929 kio
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Acute-Multiple-Organ-Failure-in-Adult-Mice-Deleted-for-the-Developmental-Regulator-Wt1-pgen.1002404.s012.ogv 29 s, 418 × 480 ; 1,42 Mio
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Acute-Multiple-Organ-Failure-in-Adult-Mice-Deleted-for-the-Developmental-Regulator-Wt1-pgen.1002404.s013.ogv 30 s, 416 × 480 ; 2,06 Mio
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Adaptive-Stress-Response-in-Segmental-Progeria-Resembles-Long-Lived-Dwarfism-and-Calorie-pgen.0020192.sv001.ogv 1 min 54 s, 240 × 180 ; 4,9 Mio
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Alec Jeffreys.png 1 534 × 2 017 ; 3,43 Mio
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Allatostatin-A-Signalling-in-Drosophila-Regulates-Feeding-and-Sleep-and-Is-Modulated-by-PDF-pgen.1006346.s023.ogv 3 min 40 s, 854 × 480 ; 6,47 Mio
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AlpEnigma-Family-Proteins-Cooperate-in-Z-Disc-Formation-and-Myofibril-Assembly-pgen.1003342.s007.ogv 1 min 0 s, 360 × 360 ; 5,06 Mio
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An-EMT–Driven-Alternative-Splicing-Program-Occurs-in-Human-Breast-Cancer-and-Modulates-Cellular-pgen.1002218.s018.ogv 9,7 s, 1 208 × 892 ; 1,95 Mio
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An-Engineering-Approach-to-Extending-Lifespan-in-C.-elegans-pgen.1002780.s010.ogv 30 s, 640 × 480 ; 981 kio
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An-Engineering-Approach-to-Extending-Lifespan-in-C.-elegans-pgen.1002780.s011.ogv 30 s, 640 × 480 ; 1,01 Mio
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An-Engineering-Approach-to-Extending-Lifespan-in-C.-elegans-pgen.1002780.s012.ogv 30 s, 640 × 480 ; 901 kio
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An-Essential-Nonredundant-Role-for-Mycobacterial-DnaK-in-Native-Protein-Folding-pgen.1004516.s017.ogv 11 s, 750 × 500 ; 417 kio
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An-Essential-Nonredundant-Role-for-Mycobacterial-DnaK-in-Native-Protein-Folding-pgen.1004516.s018.ogv 16 s, 500 × 500 ; 293 kio
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An-Essential-Nonredundant-Role-for-Mycobacterial-DnaK-in-Native-Protein-Folding-pgen.1004516.s019.ogv 10 s, 1 050 × 350 ; 177 kio
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An-Essential-Role-for-Katanin-p80-and-Microtubule-Severing-in-Male-Gamete-Production-pgen.1002698.s006.ogv 6,5 s, 1 024 × 1 024 ; 3,56 Mio
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An-Essential-Role-for-Katanin-p80-and-Microtubule-Severing-in-Male-Gamete-Production-pgen.1002698.s007.ogv 4,5 s, 1 024 × 1 024 ; 1,52 Mio
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An-Essential-Role-for-Katanin-p80-and-Microtubule-Severing-in-Male-Gamete-Production-pgen.1002698.s008.ogv 5,0 s, 1 024 × 1 024 ; 106 kio
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An-Essential-Role-for-Katanin-p80-and-Microtubule-Severing-in-Male-Gamete-Production-pgen.1002698.s009.ogv 5,0 s, 1 024 × 1 024 ; 54 kio
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An-Essential-Role-of-the-Arginine-Vasotocin-System-in-Mate-Guarding-Behaviors-in-Triadic-pgen.1005009.s023.ogv 9,5 s, 1 280 × 720 ; 837 kio
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An-Essential-Role-of-the-Arginine-Vasotocin-System-in-Mate-Guarding-Behaviors-in-Triadic-pgen.1005009.s024.ogv 9,2 s, 1 280 × 720 ; 797 kio
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Arabidopsis-COG-Complex-Subunits-COG3-and-COG8-Modulate-Golgi-Morphology-Vesicle-Trafficking-pgen.1006140.s013.ogv 5,3 s, 1 022 × 1 018 ; 392 kio
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Arabidopsis-COG-Complex-Subunits-COG3-and-COG8-Modulate-Golgi-Morphology-Vesicle-Trafficking-pgen.1006140.s014.ogv 8,5 s, 1 002 × 972 ; 862 kio
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Arginylation-Dependent-Neural-Crest-Cell-Migration-Is-Essential-for-Mouse-Development-pgen.1000878.s016.ogv 19 s, 736 × 608 ; 9,69 Mio
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Arginylation-Dependent-Neural-Crest-Cell-Migration-Is-Essential-for-Mouse-Development-pgen.1000878.s017.ogv 33 s, 592 × 496 ; 2,42 Mio
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Arginylation-Dependent-Neural-Crest-Cell-Migration-Is-Essential-for-Mouse-Development-pgen.1000878.s018.ogv 12 s, 277 × 224 ; 2,06 Mio
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Arginylation-Dependent-Neural-Crest-Cell-Migration-Is-Essential-for-Mouse-Development-pgen.1000878.s019.ogv 12 s, 304 × 304 ; 1,96 Mio
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Arginylation-Dependent-Neural-Crest-Cell-Migration-Is-Essential-for-Mouse-Development-pgen.1000878.s020.ogv 9,0 s, 749 × 706 ; 2,83 Mio
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Attenuation-of-Notch-and-Hedgehog-Signaling-Is-Required-for-Fate-Specification-in-the-Spinal-Cord-pgen.1002762.s004.ogv 1 min 1 s, 942 × 570 ; 2,77 Mio
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Aurora-A-Dependent-Control-of-TACC3-Influences-the-Rate-of-Mitotic-Spindle-Assembly-pgen.1005345.s012.ogv 5,8 s, 850 × 850 ; 248 kio
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Aurora-A-Dependent-Control-of-TACC3-Influences-the-Rate-of-Mitotic-Spindle-Assembly-pgen.1005345.s014.ogv 6,6 s, 850 × 850 ; 741 kio
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Bruce Alberts.png 1 335 × 1 849 ; 3,2 Mio
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CA8-Mutations-Cause-a-Novel-Syndrome-Characterized-by-Ataxia-and-Mild-Mental-Retardation-with-pgen.1000487.s001.ogv 1 min 2 s, 320 × 240 ; 3,69 Mio
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