The impact of dietary restriction, intermittent feeding and compensatory growth on reproductive investment and lifespan in a short-lived fish

被引:78
作者
Inness, Claire L. W. [1 ]
Metcalfe, Neil B. [1 ]
机构
[1] Univ Glasgow, Fish Biol Grp, Div Environm & Evolutionary Biol, IBLS, Glasgow G12 8QQ, Lanark, Scotland
关键词
growth; fish; ageing; resource allocation;
D O I
10.1098/rspb.2008.0357
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
While dietary restriction usually increases lifespan, an intermittent feeding regime, where periods of deprivation alternate with times when food is available, has been found to reduce lifespan in some studies but prolong it in others. We suggest that these disparities arise because in some situations lifespan is reduced by the costs of catch-up growth (following the deprivation) and reproductive investment, a factor that has rarely been measured in studies of lifespan. Using three-spined sticklebacks, we show for the first time that while animals subjected to an intermittent feeding regime can grow as large as continuously fed controls that receive the same total amount of food, and can maintain reproductive investment, they have a shorter lifespan. Furthermore, we show that this reduction in lifespan is linked to rapid skeletal growth rate and is due to an increase in the instantaneous risk of mortality rather than in the rate of senescence. By contrast, dietary restriction caused a reduction in reproductive investment in females but no corresponding increase in longevity. This suggests that in short-lived species where reproduction is size dependent, selection pressures may lead to an increase in intrinsic mortality risk when resources are diverted from somatic maintenance to both growth and reproductive investment.
引用
收藏
页码:1703 / 1708
页数:6
相关论文
共 33 条
[21]   Compensation for a bad start: grow now, pay later? [J].
Metcalfe, NB ;
Monaghan, P .
TRENDS IN ECOLOGY & EVOLUTION, 2001, 16 (05) :254-260
[22]   Life-history strategies and protein metabolism in overwintering juvenile Atlantic salmon: growth is enhanced in early migrants through lower protein turnover [J].
Morgan, IJ ;
McCarthy, ID ;
Metcalfe, NB .
JOURNAL OF FISH BIOLOGY, 2000, 56 (03) :637-647
[23]   Lifespan - Catch-up growth and obesity in male mice [J].
Ozanne, SE ;
Hales, CN .
NATURE, 2004, 427 (6973) :411-412
[24]   Poor fetal growth followed by rapid postnatal catch-up growth leads to premature death [J].
Ozanne, SE ;
Hales, CN .
MECHANISMS OF AGEING AND DEVELOPMENT, 2005, 126 (08) :852-854
[25]   Dietary restriction, mortality trajectories, risk and damage [J].
Partridge, L ;
Pletcher, SD ;
Mair, W .
MECHANISMS OF AGEING AND DEVELOPMENT, 2005, 126 (01) :35-41
[26]   Carotenoids, oxidative stress and female mating preference for longer lived males [J].
Pike, Thomas W. ;
Blount, Jonathan D. ;
Bjerkeng, Bjorn ;
Lindstrom, Jan ;
Metcalfe, Neil B. .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2007, 274 (1618) :1591-1596
[27]   Counting the calories: The role of specific nutrients in extension of life span by food restriction [J].
Piper, MDW ;
Mair, W ;
Partridge, L .
JOURNALS OF GERONTOLOGY SERIES A-BIOLOGICAL SCIENCES AND MEDICAL SCIENCES, 2005, 60 (05) :549-555
[28]   Empirical evidence of a trade-off between reproductive effort and expectation of future reproduction in female three-spined sticklebacks [J].
Poizat, G ;
Rosecchi, E ;
Crivelli, AJ .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 1999, 266 (1428) :1543-1548
[29]   Calorie restriction and aging: A life-history analysis [J].
Shanley, DP ;
Kirkwood, TBL .
EVOLUTION, 2000, 54 (03) :740-750
[30]   Toward a unified theory of caloric restriction and longevity regulation [J].
Sinclair, DA .
MECHANISMS OF AGEING AND DEVELOPMENT, 2005, 126 (09) :987-1002