Literature DB >> 12882355

Age-specific metabolic rates and mortality rates in the genus Drosophila.

Daniel E L Promislow1, Tamara S Haselkorn.   

Abstract

Early theories of aging suggested that organisms with relatively high metabolic rates would live shorter lives. Despite widespread tests of this 'rate of living' theory of aging, there is little empirical evidence to support the idea. A more fine-grained approach that examined age-related changes in metabolic rate over the life span could provide valuable insight into the relationship between metabolic rate and aging. Here we compare age-related metabolic rate (measured as CO2 production per hour) and age-related mortality rate among five species in the genus Drosophila. We find no evidence that longer-lived species have lower metabolic rates. In all five species, there is no clear evidence of an age-related metabolic decline. Metabolic rates are strikingly constant throughout the life course, with the exception of females of D. hydei, in which metabolic rates show an increase over the first third of the life span and then decline. We argue that some physiological traits may have been shaped by such strong selection over evolutionary time that they are relatively resistant to the decline in the force of selection that occurs within the life time of a single individual. We suggest that comparisons of specific traits that do not show signs of aging with those traits that do decline with age could provide insight into the aging process.

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Year:  2002        PMID: 12882355     DOI: 10.1046/j.1474-9728.2002.00009.x

Source DB:  PubMed          Journal:  Aging Cell        ISSN: 1474-9718            Impact factor:   9.304


  16 in total

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5.  Costs of breeding and their effects on the direction of sexual selection.

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Review 6.  Longevity and ageing: appraising the evolutionary consequences of growing old.

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8.  Nuclear-mitochondrial epistasis and drosophila aging: introgression of Drosophila simulans mtDNA modifies longevity in D. melanogaster nuclear backgrounds.

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Journal:  Genetics       Date:  2005-10-11       Impact factor: 4.562

9.  Sexes suffer from suboptimal lifespan because of genetic conflict in a seed beetle.

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Journal:  Proc Biol Sci       Date:  2012-08-22       Impact factor: 5.349

10.  Sex differences in the genetic architecture of lifespan in a seed beetle: extreme inbreeding extends male lifespan.

Authors:  Trine Bilde; Alexei A Maklakov; Katrine Meisner; Lucia la Guardia; Urban Friberg
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