Measurements

ID experiment control background genotype manipulation diet temperature start mean median max num
369 Figure 3. Lifespan Extension by dTsc2 Overexpression Is Dependent on the Concentration of Yeast Extract in the Diet w1118 +/da-GAL4 9% yeast extract 29.0 12.0 150
363 Figure 3. Lifespan Extension by dTsc2 Overexpression Is Dependent on the Concentration of Yeast Extract in the Diet w1118 +/da-GAL4 0.3% yeast extract 29.0 31.0 139
404 Lifespan assay 3. Lifespan of spe-9(hc88) animals at different temperatures spe-9(hc88) 27.0 5.94 101
411 Lifespan assay 4. Lifespan of spe-9(hc88) animals exposed to RNAi of daf-2, daf-16 and hsf-1 spe-9(hc88) control RNA Interference 9.97 71
407 Lifespan assay 4. Lifespan of spe-9(hc88) animals exposed to RNAi of daf-2, daf-16 and hsf-1 spe-9(hc88) control RNA Interference 10.47 68
96 Table 1. First-order interactors of LAGs in the WLN regulate lifespan in C. elegans. N2 Bristol C38D4.3 RNA Interference
94 Table 1. First-order interactors of LAGs in the WLN regulate lifespan in C. elegans. N2 Bristol F54E7.2 RNA Interference
93 Table 1. First-order interactors of LAGs in the WLN regulate lifespan in C. elegans. N2 Bristol C03C10.3 RNA Interference
92 Table 1. First-order interactors of LAGs in the WLN regulate lifespan in C. elegans. N2 Bristol T09A5.10 RNA Interference
91 Table 1. First-order interactors of LAGs in the WLN regulate lifespan in C. elegans. N2 Bristol F37C12.9 RNA Interference
90 Table 1. First-order interactors of LAGs in the WLN regulate lifespan in C. elegans. N2 Bristol N2 Bristol RNA Interference
410 Lifespan assay 4. Lifespan of spe-9(hc88) animals exposed to RNAi of daf-2, daf-16 and hsf-1 spe-9(hc88) hsf-1 RNA Interference 5.69 70
400 Lifespan assay 3. Lifespan of spe-9(hc88) animals at different temperatures spe-9(hc88) 23.0 7.46 105
402 Lifespan assay 3. Lifespan of spe-9(hc88) animals at different temperatures spe-9(hc88) 15.0 16.58 81
381 Lifespan assay 1. Confirmation of lifespan of spe-9(hc88) animals for library preparations spe-9(hc88) spe-9 23.0 8.65
221 Figure 3. Increased life span of cardiotrophin 1 (CT-1)–null mice. C57BL6 WT 28.0 18
431 Lifespan assay 2. Lifespan of spe-9(hc88) animals exposed to RNAi against alg-1 only during adulthood spe-9(hc88) control(RNAi) 9.32 97
160 Supplemental Figure 2: Replicative lifespan curves of control strains sensitive to the tested stresses rad52 30.0 10.8 33.0 10.0 130
438 Lifespan assay 2. Lifespan of spe-9(hc88) animals exposed to RNAi against alg-1 only during adulthood spe-9(hc88) alg-1(RNAi) 7.89 10.0
212 Figure 4 | Calorie restriction extends lifespan by regulating vacuolar acidity. S288c vma2 Dietary Restriction 2.0 2.0 12.0 52
448 Figure 3. Deletion or Overexpression of Aging-Associated miRNAs Affects Life Span spe-9(hc88) mir-71(n4115) 20.0 9.0 12.0
512 Figure 5. miR-239 and miR-71 Function through the IGF-1/Insulin-like and the DNA Damage Checkpoint Pathways mir-71(n4115) RNA Interference daf-16(RNAi) 20.0 10.0 13.0
510 Figure 5. miR-239 and miR-71 Function through the IGF-1/Insulin-like and the DNA Damage Checkpoint Pathways mir-71(n4115) 20.0 10.0 14.0
65 TABLE 2 Adult life span profiles A. At 29° deep orange 29.0 8.19 14.0 136
514 Figure 5. miR-239 and miR-71 Function through the IGF-1/Insulin-like and the DNA Damage Checkpoint Pathways mir-71(n4115) 20.0 10.0 14.0